US20050064073A1 - Multicomponent food product and methods of making and using the same - Google Patents

Multicomponent food product and methods of making and using the same Download PDF

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Publication number
US20050064073A1
US20050064073A1 US10/940,947 US94094704A US2005064073A1 US 20050064073 A1 US20050064073 A1 US 20050064073A1 US 94094704 A US94094704 A US 94094704A US 2005064073 A1 US2005064073 A1 US 2005064073A1
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Prior art keywords
component
ingredients
food product
pet
lipid
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US10/940,947
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Laura Paluch
Dan Beyer
John Thamm
Michael Wilson
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Individual
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Classifications

    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K10/00Animal feeding-stuffs
    • A23K10/30Animal feeding-stuffs from material of plant origin, e.g. roots, seeds or hay; from material of fungal origin, e.g. mushrooms
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • A23K20/142Amino acids; Derivatives thereof
    • A23K20/147Polymeric derivatives, e.g. peptides or proteins
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K20/00Accessory food factors for animal feeding-stuffs
    • A23K20/10Organic substances
    • A23K20/158Fatty acids; Fats; Products containing oils or fats
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K40/00Shaping or working-up of animal feeding-stuffs
    • A23K40/20Shaping or working-up of animal feeding-stuffs by moulding, e.g. making cakes or briquettes
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K40/00Shaping or working-up of animal feeding-stuffs
    • A23K40/25Shaping or working-up of animal feeding-stuffs by extrusion
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K40/00Shaping or working-up of animal feeding-stuffs
    • A23K40/30Shaping or working-up of animal feeding-stuffs by encapsulating; by coating
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23KFODDER
    • A23K50/00Feeding-stuffs specially adapted for particular animals
    • A23K50/40Feeding-stuffs specially adapted for particular animals for carnivorous animals, e.g. cats or dogs
    • A23K50/42Dry feed
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23PSHAPING OR WORKING OF FOODSTUFFS, NOT FULLY COVERED BY A SINGLE OTHER SUBCLASS
    • A23P20/00Coating of foodstuffs; Coatings therefor; Making laminated, multi-layered, stuffed or hollow foodstuffs
    • A23P20/20Making of laminated, multi-layered, stuffed or hollow foodstuffs, e.g. by wrapping in preformed edible dough sheets or in edible food containers
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23PSHAPING OR WORKING OF FOODSTUFFS, NOT FULLY COVERED BY A SINGLE OTHER SUBCLASS
    • A23P30/00Shaping or working of foodstuffs characterised by the process or apparatus
    • A23P30/20Extruding
    • A23P30/25Co-extrusion of different foodstuffs
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S426/00Food or edible material: processes, compositions, and products
    • Y10S426/805Pet food for dog, cat, bird, or fish

Definitions

  • This invention relates to food products and, more particularly, to multicomponent dry pet or animal food products that significantly improve palatability.
  • Semi-moist edible products are known in the art. Such products, for example, include those made by adding a water based soft component to a dry component.
  • the water based component is typically stabilized using a variety of gelling agents, sugars, salts, glycols, and/or by using heat.
  • U.S. Pat. No. 4,190,679 describes a dual-textured pet food containing a soft moist meaty portion containing 5-25% moisture with a water activity of 0.5-0.90.
  • U.S. Pat. No. 3,916,029 describes a center filled pet food having a semi-moist inner matrix in an outer pastry shell. The inner matrix has a moisture content of 15-40% by weight and a water activity below about 0.85. Antimycotic agents are required to prevent mold growth.
  • U.S. Pat. No. 3,922,353 relates to a center filled product which has a meat based filling having a water activity greater than about 0.90 and a water content greater than about 50% by weight. Pressure cooking, acidification and antimycotics are required.
  • No. 4,006,266 relates to a two-component pet food having a soft component made of water, sugar, proteninanceous adhesive, animal protein source, vegetable protein source, fat, and a plasticizing agent.
  • the soft component has between 11-14% moisture and a water activity of 0.60-0.75, and is subjected to elevated temperatures of 215-180° F.
  • the above U.S. patents are herein incorporated by reference in their entirety.
  • U.S. Pat. No. 4,508,741 describes a pet food having a doubly coated core.
  • the core is made primarily of a farinaceous material.
  • U.S. Pat. No. 4,847,098 describes a dual textured food article having a relatively hard phase in contact with a relatively soft phase.
  • the soft phase is a low fat content, water-in-oil emulsion made of a dispersed aqueous or syrup phase, at least one emulsifier, and a minor continuous oil phase.
  • Ingredients for the soft portion include water, various grain and meat solids, propylene glycol, and high fructose corn syrup to help control water activity.
  • U.S. Pat. No. 4,795,655 is a dual portion pet food in which an inner portion is softer than the outer hard dry portion. The soft portion contains egg solids, flour, meal, sugar and 30-40 wt % water. The finished product is baked to ensure stability.
  • U.S. Pat. No. 4,364,925 is a dual textured dog chew designed to provide a long life bone that is molded into various shapes and may include baking to promote chewing. In this patent, cellulosic, collagen and protein fibers are combined with a cowhide derived binder to form a hard composition. The soft composition is not well defined. The above U.S. patents are herein incorporated by reference in their entirety.
  • U.S. Pat. No. 5,695,797 describes a coextruded pet food product in which the outer casing has a moisture content of between 20% and 40% and the filling represents between 30% and 40% of the total volume.
  • the product requires a preservative such as phosphoric acid, an additive to lessen the action of the water, an anti-mould ingredient, and an antioxidant because the product of U.S. Pat. No. 5,695,797 has a high moisture content.
  • the above U.S. patent is herein incorporated by reference in its entirety.
  • U.S. Pat. No. 4,273,788 describes a bulk mixture of hard and soft pet foods.
  • the hard food is in the form of chunks and the soft food is in the form of slender strands.
  • the soft strands are described as being semi-moist.
  • Water is added to the soft composition prior to extrusion.
  • the extruded composition is subject to an elevated temperature of approximately 215-280° F., thereby lowering the moisture content to about 11-14%.
  • the above U.S. patent is herein incorporated by reference in its entirety.
  • U.S. Pat. No. 4,574,690 describes an apparatus and process for producing a co-extruded food product having a filling food material surrounded by a molded food material.
  • U.S. Patent. No. 5,194,283 describes a composite cheese product having a covered core.
  • the core is relatively softer than the outer covering layer.
  • Both the outer layer and inner core are cheeses and thus are both high fat compositions.
  • the inner core is made softer than the outer layer by increasing the fat content of the inner curd core.
  • U.S. Pat. No. 5,643,623 and International Patent Publication No. WO 96/39869 describe a health food product containing a lipid based core used to deliver blends of anti-oxidants such as alpha-carotene, zeta-carotene, phytofluene, phytoene, vitamin C, vitamin E, or curcumin.
  • the antioxidants are fat soluble and are incorporated into the lipid based core.
  • the prior art products are not able to function as a delivery system for various nutritional, functional, or pharmaceutical additive ingredients because the prior art requires significant heat processes and/or acidic conditions would alter or destroy such additive.
  • the present invention does not utilize such harsh conditions.
  • moisture must be controlled in the prior art in order to prevent the deterioration of the inherent nutritional ingredients from spoilage.
  • more elaborate packaging materials and techniques, that are required for moisture control by the prior art are not required by the present invention.
  • a palatable edible product that functions as a delivery system for various nutritional, functional or pharmaceutical ingredients.
  • Conventional products typically cannot deliver these ingredients because conventional products require significant heat processes and/or acidic conditions for stability. Such harsh conditions alter or destroy the delicate nutritional, functional, or pharmaceutical ingredients.
  • the present invention provides a shelf-stable multicomponent food product having improved palatability and methods of making and using the same.
  • the shelf-stable multicomponent pet or animal food product of the present invention can function as a delivery system for process unstable or sensitive ingredients.
  • the delivery system is a dual texture food product having a first component containing a mixture of lipid and solid ingredients forming a cream textured matrix, in which the first component is formed without an aqueous phase and a total moisture content less than about 15 wt %.
  • the first component includes a process unstable or sensitive ingredient.
  • a second component contains at least one ingredient comprising a carbohydrate, fat, protein or combination thereof, the second component has a total moisture content less than about 20 wt %.
  • the second component completely surrounds the cream-textured matrix of the first component whereby maintaining the viability of the process unstable or sensitive ingredient.
  • the food product delivery system is formed by the co-extrusion of the first component within the second component to form one dual component extrudate.
  • the present invention provides a dual component pet or animal food product from an edible inner component and an edible outer component.
  • the inner component is a mixture of lipids and solids which forms a soft cream-like matrix. Since this soft matrix is formed without needing any added water, it has minimal water content and very low water activity levels. Consequently, the soft lipid composition does not require rigorous sterilization techniques or antimicrobial/antimycotic agents for stabilization. Nor does the soft lipid composition require any moisture control ingredients.
  • the outer component is cereal based and is preferably harder than the inner portion. The outer component can have an aligned “fibrous” texture created via extrusion process.
  • the combination of the two components and textures provides an advantageous increase in palatability over the same compositional ingredients made into a mono-component product.
  • the present invention provides a significant improvement in palatability by having a softer lipid based center surrounded by harder shell material.
  • the present invention allows the use of simple packaging techniques because, by the lipid inner matrix being surrounded by the cereal based shell, the lipid material is surprisingly protected from wicking through the shell. Accordingly, there is no wicking of lipids onto the packaging material for the dual component product of the present invention. Typically, high lipid content dry pet or animal foods wick onto packaging material thereby causing undesirable grease stains.
  • the fact that the lipids are concentrated in the inner matrix and are surrounded by an outer shell component allows for the inner matrix to have a higher lipid content without wicking, than an unprotected lipid material of the prior art.
  • the present invention provides a food component having a desirably high lipid concentration, yet still using simple packaging techniques, without any need for the specialized and costly packaging techniques usually associated with high lipid content products.
  • FIG. 1 is a perspective view of a pat or animal food product of the present invention
  • FIG. 2 is a schematic perspective view of a pet or animal food product of the present invention
  • FIG. 3 is a schematic sectional view, along section lines AA of FIG. 2, of a pet or animal food product of the present invention.
  • FIG. 4 is a graphical representation of the relationship between consumption and time comparing the palatability of a dual texture embodiment of the present invention with the palatability of two mono-texture products wherein the vertical axis represents consumption (grams) and the horizontal axis represents time (minutes).
  • the invention provides a shelf-stable dual texture multicomponent pet or animal food product containing a softer lipid based portion contained within a shell or harder matrix material portion having significantly improved palatability, as compared to mono-textured pet or animal food products.
  • the present invention provides increased palatability yet the food is nutritionally complete according to American Feed Controls Officials (AFCO) standards.
  • AFCO American Feed Controls Officials
  • One aspect of the invention provides a dual texture edible product having a lipid-containing softer portion and a cereal based harder portion.
  • the softer component is preferably a mixture of lipids and solids which forms a soft cream textured matrix. Since this soft matrix has minimal water content and very low water activity levels, it does not require harsh sterilization techniques for preservation, additional ingredients for moisture control, or antimicrobial/antimycotic agents for stabilization. Ambient shelflife studies indicate that the product of the present invention is stable, while still maintaining superior feeding performance, even after one year.
  • the cereal based component is preferably harder than the lipid-containing component.
  • the cereal based component forms a shell that surrounds the soft component which is in the form of an inner portion.
  • a pet or animal food product 10 includes an outer portion 12 surrounding an inner portion 11 .
  • an extruded shell product includes an inner cream material pumped into a shell extruder die plate and distributed evenly within extruded ropes. The filled extruded ropes are then crimped and cut to form a shape known in the food and pet or animal food industry as “pillow” shapes.
  • the extrusion product can utilize, without requiring the use of water, any convenient extrusion process and apparatus such as, for example, those presently utilized that until now, required the use of water to form semi-moist pet or animal food products.
  • the extruded shell material can include up to 25% water added to the meal ingredient, prior to extrusion, to improve the extrusion process.
  • the soft inner portion that is coextruded in the center of the extruded rope does not contain any added water.
  • the amount of water added to the outer shell material does not require extreme heat for the water's removal because of the geometry of the extruded product.
  • the water in this invention is only in the shell which is relatively thin compared to the overall thickness of the product. As a result, the water has a shorter pathlength to the surface, and can be driven off with relatively cooler temperatures and for shorter heating times. This is compared to the relatively longer path length for water in the prior art product that has water throughout the product, requiring hotter temperatures and longer heating times.
  • the ingredients of the present invention are not subjected to deleteriously extreme heat conditions.
  • a pet or animal food product 60 has an outer portion 62 that surrounds an inner portion 61 .
  • the outer portion 62 may have an aligned “fibrous” texture 69 created by an extrusion process.
  • the food products illustrated in the Figures can be in any convenient size and shape, including individual bite-sized pieces and other conventional confectionery food product sizes in shapes such as a square, rectangular, round, oval, spherical, elliptical or donut shape. It would be apparent to one in the art to determine the appropriate size and shape for any particular animal application.
  • the softer inner portion or component 61 is a lipid based composition having a low total moisture content less than about 25 wt %, advantageously less than about 20 wt %, more advantageously less than about 15 wt % moisture, even more advantageously less than about 12 wt %, still more advantageously less than 10 wt %, even still more preferably less than 8 wt %, and most preferably less than 6 wt %.
  • the softer inner portion or component 61 includes lipids such as, for example, long or medium chain saturated or unsaturated, non-di, or tri-acylglycerols.
  • Other ingredients such as, for example, carbohydrates, fats, proteins, and combinations thereof can be included.
  • Additional ingredients can be, for example, nutritive, non-nutritive compounds, or combinations thereof.
  • nutritive compounds that can be included in the softer inner portion or component include mineral supplements, B vitamins, and mixtures thereof.
  • Non-nutritive compounds can include, for example, herbal compounds, plant-based extracts or mixtures thereof.
  • the inner portion or component can include one or more antioxidant ingredients which may be nutritive or non-nutritive.
  • Examples of nutritive antioxidants can include provitamin A carotenes, vitamin C, vitamin E, and mixtures thereof.
  • provitamin A carotenes include all trans and cis beta-carotenes, all trans and cis alpha-carotenes, and all trans and cis gamma-carotenes.
  • Examples of non-nutritive antioxidants can include non-provitamin A carotenes, anti-inflammatory agents, and mixtures thereof.
  • non-provitamin A carotenes are zeta-carotene, trans lycopene, cis lycopenes, phytofluene, phytoene, and curcumin.
  • anti-inflammatory agents can include a fatty acid, a turmeric extract such as curcumin, and mixtures thereof.
  • the softer inner portion or component has a water activity, a w less than about 0.65, more advantageous that a w be less than about 0.50, still more advantageous that a w be less than about 0.40, and most advantageous that a w be less than about 0.35.
  • the lipid content of the softer inner portion or component be greater than about 10% by weight, more advantageous that the lipid content be greater than about 15% by weight, still more advantageous that the lipid content be greater than about 20% by weight, and most advantageous that the lipid content be greater than about 30% by weight.
  • the inner portion or component prefferably comprises about 40-90 wt % solids and about 10-60 wt % lipids; more advantageous for the inner portion or component to comprise about 50-80 wt % solids and about 20-50% lipids; and still more advantageous for the inner portion or component to comprise about 55-65 wt % solids and about 45-35 wt % lipids, with the sum of the wt % of solids and lipids, in all cases, not to exceed 100 wt %. It is most preferred for the inner portion or component to comprise about 60 wt % solids and 40 wt % lipids.
  • the softer inner portion or component can include an additive such as nutritional compounds, functional compounds, pharmaceutical compounds, and mixtures thereof.
  • additives can be effective to enhance pet skin or coat properties, improve breath odor, enhance the immune response functions, combat parasites, combat microbes or the additives can be an anti-inflammatory or antioxidant.
  • a combination of such additives can include an anti-inflammant, and antioxidant, an anti-parasite, a breath freshener, a skin coat enhancer, or a mixture thereof.
  • the softer inner portion or component is in the proportion of about 5 to about 50 wt % of the total product.
  • the harder outer portion or component is a composition having a low total moisture content that is less than about 25 wt %.
  • the harder outer portion or component is a composition that preferably can include carbohydrates, fats, proteins, and combinations thereof.
  • An aspect of the invention provides a shelf-stable dual texture food product that functions as a delivery system for various functional, nutritional, and/or pharmaceutical ingredients.
  • the soft component serves as a delivery system for functional ingredients, especially those that are sensitive to heat, light, and oxygen. Since the soft component is totally encapsulated by the shell/matrix portion, the functional ingredients are substantially protected from heat, light and oxygen.
  • one aspect of the invention provides a shelf-stable multicomponent pet or animal food product in which various functional, nutritional, and pharmaceutical ingredients can be added and protected in the center inner matrix from heat, light, and oxygen.
  • some functional ingredients may exhibit an undesirable odor or color when mixed throughout a product. Full encapsulation substantially overcomes such problems. Additionally, the functional ingredients, which are generally fat soluble, by being contained in the lipid-based material are more easily absorbed in the digestive tract. Accordingly, they are more effectively administered.
  • Another aspect of the invention provides a product whereby the lipid inner matrix is surrounded by the cereal based shell which protects the lipid material from wicking, thereby allowing the use of simple packaging techniques.
  • the present invention provides a functional delivery system for skin and coat enhancement.
  • the functional ingredient in sunflower or safflower oil, linoleic acid can be mixed into the lipid based center filling material at targeted levels of 4-8 g/400 Kcal. It is difficult to add this much sunflower or safflower oil to convention dry pet or animal foods because the added linoleic acid alters the extrusion parameters, which thereby causes undesirable changes in texture, increased manufacturing costs, and increased packaging material costs in order to minimize or prevent wicking of the oil.
  • Other ingredients such as, for example, sulfur amino acids can be added as part of the solids in the lipid matrix portion. Since these amino acids are heat sensitive, incorporation into the center filling, rather than passing through the elevated temperatures of conventional extruder processing, prevents degradation.
  • Another aspect of the present invention provides a functional delivery system for anti-inflammatory agents.
  • curcumin can be added to the center filling material. Since this ingredient is bright yellow in color, addition of this ingredient to the outer shell makes the product an undesirable color. Addition of this ingredient in the center filling material hides the bright yellow color.
  • Anti-inflammatory pharmaceutical ingredients may also be incorporated into the center filled material to control inflammation.
  • Yet another aspect of the present invention provides a functional delivery system for breath improvement agents.
  • Ingredients such as rosemary, clove, and parsley seed oils can be added to the center filling material. Since these ingredients have strong flavors and aromas, mixing into a center filling material dampens the flavor and aroma of these functional ingredients and also allows for their increased stability.
  • the present invention also provides a functional delivery system for enhanced immune response agents.
  • evening primrose oil or echinacea can be added to the center filling material, thereby preventing their degradation and enhancing their stability.
  • antioxidant agents there are various ingredients that can function as antioxidants including, for example, (i) vitamin E which is lipid soluble, thus easily and advantageously incorporated into the lipid matrix portion, and (ii) carotenoids which are a bright orange color and are heat, light and oxygen labile. These agents are thus advantageously incorporated into the center lipid matrix portion surrounded by an outer shell material.
  • the present invention further provides a functional delivery system for parasite control agents.
  • Pharmaceutical ingredients are currently incorporated into tablets. Such tablets are often difficult to administer. There is an increasing desire by consumers for incorporating these ingredients in a pet or animal food product for ease of administration.
  • pharmaceutical ingredients such as those effective against heartworm, intestinal worms, fleas, and/or ticks could be incorporated into the center lipid matrix portion of the present invention for easy administration.
  • Yet another aspect of the present invention provides a functional delivery system for antibiotics and/or prebiotics and/or probiotics for the maintenance of gastrointestinal health functions.
  • Various antibiotics may be incorporated into the center lipid matrix portion.
  • Prebiotics such as inulin or frutooligosaccharide (FOS) can be incorporated as part of the solids mix blended with the lipids.
  • Probiotics such as lyophilized lactobacillus or bifidobacterium can be added to the lipid which have higher survival rates than when incorporated into conventional pet or animal food products. This is because the harsh sterilization process of conventional or animal food manufacturing is not required in the present invention.
  • the lyophilized cells can thus remain dormant in the lipid matrix of the present invention and remain protected until the cells reach the GI tract where they can advantageously proliferate.
  • the dual texture animal food product of the present invention can be of any convenient size suitable for a particular pet-type application.
  • One of ordinary skill in the art knows what appropriate sizes are for particular pet-types such as, for example, kittens, cats, old cats, small dogs, medium size dogs, large dogs, and old dogs.
  • a dual texture animal food product of the present invention has a largest dimension less than about 20 mm and a second largest dimension less than about 15 mm. In another example, the largest dimension ranges from about 8 to about 10 mm and the second largest dimension ranges from about 8 to about 10 mm. Another has a largest dimension ranging from about 10 to about 12 mm and a second largest dimension ranging from about 14 to about 16 mm. Another has a largest dimension less than about 30 mm and a second largest dimension less than about 30 mm.
  • the dual texture animal food product of the present invention in another example, is in the shape of a substantially rectilinear box having a first dimension ranging from about 7 to about 15 mm, a second dimension ranging from about 7 to about 15 mm and a third dimension ranging from about 3 to about 10 mm.
  • the box shape has a first dimension ranging from about 15 mm to about 30 mm, a second dimension ranging from about 15 to about 30 mm and a third dimension ranging from about 5 mm to about 15 mm.
  • the dual texture animal food product of the present invention can be formed as having any convenient individual weight appropriate to the particular pet-type application. For example, in an example for cats, the products weighs from about 0.1 to about 10 grams per piece.
  • the present invention also includes mixing different weight pieces for one pet food application as well as uniform weight pieces.
  • safe digest conditions are also well known, such as maintaining a pH between about 1.0 to about 5.0.
  • the harder, shell ingredients are blended uniformly in the presence of a magnet before milling, a de-stoner is used during milling, and the milled product is tested with a metal detector to remove any potential damaging and unhealthy metal pieces.
  • the mill and sifter should be capable of producing, for a feline directed product, for example, a mean particle size from about 200 ⁇ , to about 300 ⁇ . Other animals would require different particle sizes, as is well known in the field.
  • the sifter can be any convenient sifter such as, for example, an oscillating/vibrating bed sifter.
  • the safe handling of the softer core ingredients such as, for example, tallow, lard, digest, meat mix, and vegetable oil are also well known to one of ordinary skill in the pet or animal food industry.
  • the storage conditions are well known such as, for example, keeping the tanks at a temperature between 45° C. to about 75° C.
  • the tallow generally is preferably delivered from a bulk delivery system tempered to about 55° C. to about 65° C.
  • the tallow is preferably filtered through a U.S. Standard No. 18 Mesh filter (1,000 micron maximum opening). Such procedures for tallow are well known in the industry in order to produce a suitable healthful pet or animal food product.
  • the dry meal component of the inner cream matrix be added to the mixer first, followed by the tallow and other fat and oil ingredients during a batch operation process.
  • a continuous process can be used whereby the dry components of the inner cream matrix are simultaneously mixed with liquid tallow to form the cream.
  • an emulsifier can be added to the tallow prior to mixing. Airborne particulates, dust, and splashing should be minimized as is known in the art in order to produce a suitable healthful pet or animal food product.
  • the cream material should be added and mixed until the dry ingredients are well mixed and coated with the fat and oil ingredients so that no dry material is observed.
  • the absolute viscosity is preferably below about 25,000 cP in the temperature range of about 32° C. to about 50° C.
  • the cream tanks advantageously should be swept-surfaced and agitated, maintaining the product at a temperature of from about 40° C. to about 50° C.
  • the agitators advantageously should be sized to prevent air entrapment from vortex formation.
  • the speed of mixing advantageously should be controlled to prevent air entrapment from vortex formation.
  • General procedures should be followed to prevent contamination from Salmonella and other microorganisms. Such procedures include, for example, maintaining sealed systems at positive pressure with filtered and UV treated air.
  • any convenient method can be used to form the cream, to form the outer shell material, to load the materials into an extruder, and to co-extrude the outer and inner materials. Such methods are well known to one of ordinary skill in the art in using the compositions of the present invention to produce the product of the present invention.
  • an extruder configured with a co-extrusion die configuration in a twin screw extruder was used.
  • the product streams to the extruder included mixed meal, potable water, steam injection, pumpable meat inclusion, optionally tallow, and a corn oil extrusion-aid additive to form the shell.
  • a preconditioner was used to prepare the meal for extrusion.
  • the water was easily driven off by vaporization at the extrusion head or by low temperature drying at about 175° F. to about 250° F. (about 80° C. to about 116° C.) for about 20 minutes.
  • the drying can be performed in two stages, about 10 minutes at about 175-220° F. (80-100° C.) followed by about 10 minutes at about 175-250° F. (80-116° C.).
  • the inner lipid based portion has good heat insulating properties. Thereby, protecting the included ingredients from deterioration by the mild drying conditions.
  • the extruded rope containing the softer lipid interior material surrounded by the harder outer shell material can be divided into convenient sized pieces that are closed at the ends so that the softer lipid interior material is completely encased by the harder outer material.
  • the dividing can be by any convenient process such as, for example, by using a crimper. Such crimpers are well known in the art.
  • Condensation onto the product stream should be avoided, and the process equipment should be chemically or steam sanitized. Other sanitary measures well known to one in the art should be followed in order to provide a healthy pet or animal food product.
  • Feeding performance is usually expressed in grams, representing the average intake per cat per feeding. If the feeding performance is performed over a period of days, the grams represent the average intake per cat per day. Feeding preference is usually expressed in percent, representing the average percentage of animals that preferred one food over others. The test procedures for determining feeding performance and feeding preferences are well known to one of ordinary skill in the art.
  • Chix refers to a common commodity for pet foods. It is a ground meal made from clean parts of carcasses of slaughtered chicken and is manufactured by many suppliers known to one in the industry.
  • Example 1A was a dual textured pet or animal food product of the present invention made with a shell composed of the ingredients shown in Table 1 and filled with the ingredients shown in Table 2: TABLE 1 Ingredient Wt. % Chix w. BHA 29.00 Corn whole, #2 Yellow 39.18 Rice Brewers 17.00 Soybean Meal 44% 13.00 Salt, iodized 0.40 Vitamins and Minerals 0.80 Antioxidant 0.02 Iron Oxide Colorant 0.60
  • Example 1B was made similar to Example 1A but with the optional meat inclusion of beef, beef/liver blends and salmon.
  • the meat inclusion was added to the shell at 5 wt % of the total product.
  • Comparative Example 1 was made by mixing all the ingredients, in the same amounts used to make Example 1, into one mono-textured pet or animal food product. Comparative Example 2 was just the shell ingredients. Referring to FIG. 4, the feeding performance for Example 1A is shown by a feeding curve 71 . The feeding performance of the prior art Comparative Example 1 is shown by a feeding curve 72 for a mono-textured food product which contained in total the same ingredients as that used in Example 1A. The feeding performance of just the shell component of the present invention, Comparative Example 2, is shown by a feeding curve 73 .
  • Example 1A and Comparative Example 1 were subjected to a Shelf-Life/Feeding Performance test.
  • Example 1A showed feeding performances of 88 g intake after 14 weeks of shelf-storage, 75 g intake after 32 weeks of storage, and 78 g intake after 59 weeks of storage.
  • the data show the enhanced feeding performance for the dual texture Example 1A of the present invention when compared to a monocomponent product containing all the same ingredients (Comparative Example 1) or when compared to the outer shell only (Comparative Example 2). Not only was the present invention more palatable, but the present invention kept its increased palatability through a storage period of over a year.
  • a dual textured pet or animal food product of the present invention was made with a shell composed of the ingredients shown in Table 3 and filled with the ingredients shown in Table 4: TABLE 3 Ingredient Wt. % Chix w. BHA 34.00 Corn whole, #2 Yellow 36.18 Rice Brewers 15.00 Soybean Meal 44% 13.00 Salt, iodized 0.40 EXP-04 0.80 PET-OX (BHA/BHT) 0.02 Iron Oxide (Brown) 0.40
  • the filled shell comprised 62.000 wt % batch meal, 8.000% meats, and 30.000% filling.
  • Example 2 showed enhanced feeding performances of 96 g after 6 weeks, 71 g after 26 weeks, and 88 g after 57 weeks.
  • Example 2B was also made with the optional meat inclusion, similar to Example 1B.
  • feline preference feedings demonstrated a greater than 8 to 10 times rate of preference of the present invention over other dry products, including dry products containing high levels of lipids.
  • a salmon flavored example of the present invention was compared to a similarly salmon flavored comparison mono-textured example.
  • the feeding preference of the present invention was 90.1% while the comparison example had a feeding preference of 9.9%
  • the present invention showed a feeding preference of 80.6% as compared to 19.4% for the comparison example.
  • a 15 minute paired preference test showed, with 99% confidence, that the present invention example was preferred by 70.1% while the comparison example was preferred by 29.9% of the cats.
  • the feeding performance was 41.8 g for the present invention example, compared to 17.7 g for the comparison example.
  • the increased palatability resulting from the lipid based inner matrix provides a delivery system, as shown by the following examples, for a variety of nutritional, functional, and pharmaceutical ingredients—especially those that are (i) lipid soluble, (ii) are susceptible to degradation by heat, light or oxygen or (iii) otherwise difficult to administer because of taste, color or odor.
  • Example 3 is made by producing the inner filling with the ingredients shown in Table 5 below: TABLE 5 Ingredient Wt. % Beef tallow 38.9 Animal and/or non-animal 30 protein solids Carbohydrate-based solids such 30 as wheat flour Emulsifier 1 Antioxidant 0.1-5
  • Example 4 is made by producing the inner filling with the ingredients shown in Table 6 below: TABLE 6 Ingredient Wt. % Beef tallow 33.9-38-89 Animal and/or non-animal 30 protein solids Wheat flour 30 Emulsifier 1 Antioxidant 0.1 Essential fatty acids such as n3 0.1-5% and/or n6 series
  • Example 5 is made by producing the inner filling with the ingredients shown in Table 7 below: TABLE 7 Ingredient Wt. % Beef tallow 33.9-38.89 Animal and/or non-animal 30 protein solids Wheat flour 30 Emulsifier 1 Antioxidant 0.1 n-3 series essential fatty acids .01-5% and/or curcumin
  • Example 6 is made by producing the inner filling with the ingredients shown in Table 8 below: TABLE 8 Ingredient Wt. % Beef tallow 34.9-38.89 Animal and/or non-animal 30 protein solids Wheat flour 30 Emulsifier 1 Antioxidant 0.1 Vitamin E/Curcumin/Carotenes 0.01-4%
  • Example 7 is made by producing the inner filling with the ingredients shown in Table 9 below: TABLE 9 Ingredient Wt. % Beef tallow 36.9-38.89 Animal and/or non-animal 30 protein solids Wheat flour 30 Emulsifier 1 Antioxidant 0.1 Rosemary, clove, eucalyptus 0.01-2.0% and/or parsley seed oils
  • Example 8 is made by producing the inner filling with the ingredients shown in Table 10 below: TABLE 10 Ingredient Wt. % Beef tallow 33.9-38.89 Animal and/or non-animal 30 protein solids Wheat flour 30 Emulsifier 1 Antioxidant 0.1 Flax seed, evening primrose, 0.01-5% brewers yeast and/or kelp
  • Example 9 is made by producing the inner filling with the ingredients shown in Table 11 below: TABLE 11 Ingredient Wt. % Beef tallow 33.9-38.89 Animal and/or non-animal 30 protein solids Wheat flour 30 Emulsifier 1 Antioxidant 0.1 Parasite control ingredients such .01-5% as a dewormer or anti-flea agent
  • Example 10 is made by producing the inner filling with the ingredients shown in TABLE 12 Ingredient Wt. % Chicken meal 35.2% Corn 35% Rice 14% Soybean meal 13% Salt 0.4% Vitamins/minerals/antioxidants/ 2.4% colors
  • Example 11 is made by producing the inner filling with the ingredients shown in Table 13 below: TABLE 13 Ingredient Wt. % Chicken meal 15 Rice 25.3 Corn 25 Wheat 13.3 Corn gluten meal 12 Salt 0.9 Milk protein 1 Yeast 2 Egg 0.8 Vitamins/minerals/ 4.7 antioxidants/ colors
  • the present invention provides a delivery system for ingredients that are process unstable or sensitive.
  • Process unstable ingredients for example, are those that become inactive due to the high heat, or acid levels present in most food processing techniques.
  • Sensitive ingredients for example, are those that are sensitive to light or oxygen. These unstable or sensitive ingredients can include functional, nutritional, pharmaceutical, prebiotic and probiotic ingredients.
  • Probiotic micro-organisms are micro-organisms that beneficially affect a host by improving its intestinal microbial balance and as such as very heat sensitive. Typically probiotic micro-organisms will only remain viable at lower temperatures and in mixtures that have a low water activity.
  • probiotic micro-organisms examples include yeasts, such Saccharomyces, Debaromyces, Candida, Pichia and Torulopsis , moulds such as Aspergillus, Rhizopus, Mucor , and Penicillium and Torulopsis and bacteria such as the genera Bifidobacterium, Bacteroides, Clostridium, Fusobacterium, Melissococcus, Propionibacterium, Streptococcus, Enterococcus, Lactococcus, Staphylococcus, Peptostrepococcus, Bacillus, Pediococcus, Micrococcus, Leuconostoc, Weissella, Aerococcus, Oenococcus and Lactobacillus .
  • yeasts such Saccharomyces, Debaromyces, Candida, Pichia and Torulopsis
  • moulds such as Aspergillus, Rhizopus, Mucor , and Penicillium and Torulopsis
  • bacteria such as the
  • probiotic micro-organisms are: Saccharomyces cereviseae, Bacillus coagulans, Bacillus licheniformis, Bacillus subtilis, Bifidobacterium bifidum, Bifidobacterium infantis, Bifidobacterium longum, Enterococcus faecium, Enterococcus faecalis, Lactobacillus acidophilus, Lactobacillus alimentarius, Lactobacillus casei subsp. casei, Lactobacillus casei Shirota, Lactobacillus curvatus, Lactobacillus delbruckii subsp.
  • lactis Lactobacillus farciminus, Lactobacillus gasseri, Lactobacillus helveticus, Lactobacillus johnsonii, Lactobacillus reuteri, Lactobacillus rhamnosus ( Lactobacillus GG), Lactobacillus sake, Lactococcus lactis, Micrococcus varians, Pediococcus acidilactici, Pediococcus pentosaceus, Pediococcus acidilactici, Pediococcus halophilus, Streptococcus faecalis, Streptococcus thermophilus, Staphylococcus carnosus , and Staphylococcus xylosus.
  • Vitamin C ascorbic acid
  • Vitamin C is a very unstable vitamin. It is unstable in both neutral and alkaline conditions and oxidizes readily upon exposure to air or oxygen, light and heat. The maximum cooking loss is 100%.
  • Food Chemistry by Owen Fennema Marcel Decker 1996, pg. 533.
  • lycopene is in a class of carotenoids that characteristically gives color to many vegetables. Lycopene is found in a highest concentration in tomatoes and tomato products. Carotenoids are easily isomerized by heat, acid or light. Once isomerized, they lose their biological antioxidant properties. Food Chemistry by Owen Fennema. Marcel Decker 1996, pg. 678.
  • Example 12 two different batches of animal food product were produced in which Vitamin C powder (non-encapsulated) was added to the dry meal powders and blended, The amount of Vitamin C powder added was an amount sufficient to provide approximately 500 to 520 mg/kg of Vitamin C in the finished food product.
  • the dry powders/dry ingredients plus Vitamin C was blended with tallow form a cream.
  • the blended cream was pumped to the head of the extruder die and then co-extruded with the shell material.
  • the co-extruded ropes were crimped into pillow or pocket shapes and dried in a dryer.
  • the dried animal food product was then coated with tallow and digest material.
  • the Vitamin C enriched animal food product retained an average of 93.7% of the added Vitamin C, as determined by HPLC (high performance liquid chromatography).
  • HPLC high performance liquid chromatography
  • the duel component animal food product of the present invention retained 93.7% of the added Vitamin C after processing, which is significantly greater than the 0% retention of Vitamin C found in a moncomponent pet food produced by an extrusion process.
  • Example 13 two different batches of animal food product were produced in which an encapsulated product containing 5% lycopene was added to the dry meal powders and blended,
  • the lycopene was supplied form ROCHE as an encapsulated product because encapsulation protects the lycopene from isomerization due to light and heat.
  • ROCHE has found that about 80% of the lycopene is lost through the extrusion process.
  • the amount of lycopene added was an amount sufficient to provide approximately 105 to 115 ⁇ g/g of lycopene in the finished food product.
  • the dry powders/dry ingredients plus lycopene was blended with tallow form a cream.
  • the blended cream was pumped to the head of the extruder die and then co-extruded with the shell material.
  • the co-extruded ropes were crimped into pillow or pocket shapes and dried in a dryer.
  • the dried animal food product was then coated with tallow and digest material.
  • the lycopene enriched animal food product retained an average of 68% of the added lycopene determined by HPLC (high performance liquid chromatography). The results are shown in the table below in which the actual lycopene is non isomerized or trans lycopene. TABLE 15 Batch No. Target Lycopene Actual trans lycopene No. 1 105-115 ⁇ g/g 71.6 ⁇ g/g No. 2 105-115 ⁇ g/g 78.0 ⁇ g/g Average lycopene 74.8 ⁇ g/g
  • the duel component animal food product of the present invention retained 68% of the added lycopene after processing, which is significantly greater than the 20% retention of lycopene found in a moncomponent pet food produced by an extrusion process.
  • Example 14 two different batches of animal food product, Formulation A and B, were produced in which three different probiotic micro-organisms were added to the dual component animal product. One kibble mixture was dried and the other was not subject to drying. Suitable probiotic micro-organisms are well known to those skilled in the art.
  • the micro-organisms used in Example 14 were Bacillus coagulans, Enterococcus faecium and Streptococcus thermophilus which were supplied by Chr. Hansen's Biosystems, 9015 West Maple, Milwaukee, Wis. 53214.
  • the probiotic micro-organisms are preferably in powdered, dried form; especially in spore form if the micro-organism forms spores.
  • the probiotic micro-organism can also be encapsulated to further increase the probability of survival.
  • the amount of Bacillus coagulans, Enterococcus faecium and Streptococcus thermophilus added to the cream mixture portion of the dual component animal food was twelve million CFU's/gram, this resulting in a target of 100,000 CFU's/liter of intestinal fluid per organism.
  • the blended cream was pumped to the head of the extruder die and then co-extruded with the shell material.
  • the co-extruded ropes were crimped into pillow or pocket shapes and dried in a dryer.
  • the dried animal food product was then coated with tallow and digest material.
  • the amount of probiotic micro-organisms retained in the animal food product was determined by viable plate counts (VPC) and reported as CFU/g with standard deviations included.
  • VPC viable plate counts
  • the proximate weight percent of elements for the lipid center matrix of Examples 3-11 would be 36 wt % protein, 6 wt % ash, 42 wt % fat, 10 wt % carbohydrate, and 6 wt % moisture.
  • the proximate weight percent for the raw batch meal used in the outer shell prior to extrusion is about 13 wt % protein, 7 wt % ash, 6 wt % fat, 4 wt % fiber, 40 wt % carbohydrate, and 10 wt % moisture.
  • Fresh meat can be optionally added to the batch meal prior to extrusion.
  • the protein/carbohydrate ratio would be adjusted to accommodate the meat addition, but the meat would nonetheless raise the fat content.
  • the final product would have a moisture content less than about 12 wt % and a water activity below 0.6.

Abstract

A dual texture pet or animal food product having inner and outer components. The soft inner component contains a mixture of lipid and solid ingredients and has a water activity, aw, less than about 0.65 and a total moisture content less than about 15 wt %. The outer component is a cereal based shell containing at least one ingredient comprising a carbohydrate, fat, protein or combination thereof, the shell component having a total moisture content less than about 20 wt %. The shell component completely surrounds the soft inner component and is formed by the co-extrusion of the soft inner component within the shell component to form one dual component pet or animal food product.

Description

  • This application is a continuation of co-pending application Ser. No. 09/945,994 which is a continuation of U.S. Pat. No. 6,312,746 issued Nov. 6, 2001, which is a continuation of U.S. Pat. No. 6,254,910 issued Jul. 3, 2001, which is a continuation-in-part of U.S. Pat. No. 6,117,477 issued Sep. 12, 2000.
  • FIELD OF THE INVENTION
  • This invention relates to food products and, more particularly, to multicomponent dry pet or animal food products that significantly improve palatability.
  • BACKGROUND OF THE INVENTION
  • Semi-moist edible products are known in the art. Such products, for example, include those made by adding a water based soft component to a dry component. The water based component is typically stabilized using a variety of gelling agents, sugars, salts, glycols, and/or by using heat.
  • U.S. Pat. No. 4,190,679 describes a dual-textured pet food containing a soft moist meaty portion containing 5-25% moisture with a water activity of 0.5-0.90. U.S. Pat. No. 3,916,029 describes a center filled pet food having a semi-moist inner matrix in an outer pastry shell. The inner matrix has a moisture content of 15-40% by weight and a water activity below about 0.85. Antimycotic agents are required to prevent mold growth. U.S. Pat. No. 3,922,353 relates to a center filled product which has a meat based filling having a water activity greater than about 0.90 and a water content greater than about 50% by weight. Pressure cooking, acidification and antimycotics are required. U.S. Pat. No. 4,006,266 relates to a two-component pet food having a soft component made of water, sugar, proteninanceous adhesive, animal protein source, vegetable protein source, fat, and a plasticizing agent. The soft component has between 11-14% moisture and a water activity of 0.60-0.75, and is subjected to elevated temperatures of 215-180° F. The above U.S. patents are herein incorporated by reference in their entirety.
  • U.S. Pat. No. 4,508,741 describes a pet food having a doubly coated core. The core is made primarily of a farinaceous material. U.S. Pat. No. 4,847,098 describes a dual textured food article having a relatively hard phase in contact with a relatively soft phase. The soft phase is a low fat content, water-in-oil emulsion made of a dispersed aqueous or syrup phase, at least one emulsifier, and a minor continuous oil phase. Ingredients for the soft portion include water, various grain and meat solids, propylene glycol, and high fructose corn syrup to help control water activity. U.S. Pat. No. 4,900,572 describes a dual textured pet food that is made by co-extrusion. The soft textured inner component is subjected to heat and pressure and has water added for expansion. U.S. Pat. No. 4,795,655 is a dual portion pet food in which an inner portion is softer than the outer hard dry portion. The soft portion contains egg solids, flour, meal, sugar and 30-40 wt % water. The finished product is baked to ensure stability. U.S. Pat. No. 4,364,925 is a dual textured dog chew designed to provide a long life bone that is molded into various shapes and may include baking to promote chewing. In this patent, cellulosic, collagen and protein fibers are combined with a cowhide derived binder to form a hard composition. The soft composition is not well defined. The above U.S. patents are herein incorporated by reference in their entirety.
  • U.S. Pat. No. 5,695,797 describes a coextruded pet food product in which the outer casing has a moisture content of between 20% and 40% and the filling represents between 30% and 40% of the total volume. The product requires a preservative such as phosphoric acid, an additive to lessen the action of the water, an anti-mould ingredient, and an antioxidant because the product of U.S. Pat. No. 5,695,797 has a high moisture content. The above U.S. patent is herein incorporated by reference in its entirety.
  • U.S. Pat. Nos. 5,641,529 and 5,449,281 describe various equipment for preparing shaped co-extruded products and three-dimensional shapes. The above U.S. patents are herein incorporated by reference in their entirety.
  • U.S. Pat. No. 4,273,788 describes a bulk mixture of hard and soft pet foods. The hard food is in the form of chunks and the soft food is in the form of slender strands. The soft strands are described as being semi-moist. Water is added to the soft composition prior to extrusion. The extruded composition is subject to an elevated temperature of approximately 215-280° F., thereby lowering the moisture content to about 11-14%. The above U.S. patent is herein incorporated by reference in its entirety. U.S. Pat. No. 4,574,690 describes an apparatus and process for producing a co-extruded food product having a filling food material surrounded by a molded food material. U.S. Pat. No. 4,025,260 describes a food extrusion capable of producing a curled food particle having a meat filling covered with dough. U.S. Pat. No. 5,208,059 describes an apparatus and a method to produce dual textured food pieces. The food pieces have cavities filled with a heated, pumpable food material. The above U.S. patents are herein incorporated by reference in their entirety.
  • U.S. Patent. No. 5,194,283 describes a composite cheese product having a covered core. The core is relatively softer than the outer covering layer. Both the outer layer and inner core are cheeses and thus are both high fat compositions. The inner core is made softer than the outer layer by increasing the fat content of the inner curd core. This U.S. patent is incorporated by reference in its entirety.
  • U.S. Pat. No. 5,643,623 and International Patent Publication No. WO 96/39869 describe a health food product containing a lipid based core used to deliver blends of anti-oxidants such as alpha-carotene, zeta-carotene, phytofluene, phytoene, vitamin C, vitamin E, or curcumin. The antioxidants are fat soluble and are incorporated into the lipid based core. The above U.S. Patent and International patent publication are incorporated herein in their entirety.
  • The prior art products are not able to function as a delivery system for various nutritional, functional, or pharmaceutical additive ingredients because the prior art requires significant heat processes and/or acidic conditions would alter or destroy such additive. The present invention, however, does not utilize such harsh conditions. Furthermore, moisture must be controlled in the prior art in order to prevent the deterioration of the inherent nutritional ingredients from spoilage. However, as discussed above, more elaborate packaging materials and techniques, that are required for moisture control by the prior art, are not required by the present invention.
  • It is desirable to provide a palatable edible product without the use of water. As described above, conventional products use water to increase the palatability of dry pet or animal foods thereby creating semi-moist pet or animal food products. It would be highly advantageous to improve shelf-stability and other characteristics by avoiding the use of high levels of water in pet or animal food products.
  • Further, it would be desirable to provide a palatable edible product that functions as a delivery system for various nutritional, functional or pharmaceutical ingredients. Conventional products typically cannot deliver these ingredients because conventional products require significant heat processes and/or acidic conditions for stability. Such harsh conditions alter or destroy the delicate nutritional, functional, or pharmaceutical ingredients.
  • SUMMARY OF THE INVENTION
  • The present invention provides a shelf-stable multicomponent food product having improved palatability and methods of making and using the same. The shelf-stable multicomponent pet or animal food product of the present invention can function as a delivery system for process unstable or sensitive ingredients. The delivery system is a dual texture food product having a first component containing a mixture of lipid and solid ingredients forming a cream textured matrix, in which the first component is formed without an aqueous phase and a total moisture content less than about 15 wt %. The first component includes a process unstable or sensitive ingredient. A second component contains at least one ingredient comprising a carbohydrate, fat, protein or combination thereof, the second component has a total moisture content less than about 20 wt %. The second component completely surrounds the cream-textured matrix of the first component whereby maintaining the viability of the process unstable or sensitive ingredient. The food product delivery system is formed by the co-extrusion of the first component within the second component to form one dual component extrudate.
  • The present invention provides a dual component pet or animal food product from an edible inner component and an edible outer component. The inner component is a mixture of lipids and solids which forms a soft cream-like matrix. Since this soft matrix is formed without needing any added water, it has minimal water content and very low water activity levels. Consequently, the soft lipid composition does not require rigorous sterilization techniques or antimicrobial/antimycotic agents for stabilization. Nor does the soft lipid composition require any moisture control ingredients. The outer component is cereal based and is preferably harder than the inner portion. The outer component can have an aligned “fibrous” texture created via extrusion process.
  • The combination of the two components and textures provides an advantageous increase in palatability over the same compositional ingredients made into a mono-component product. Thus, surprisingly, the present invention provides a significant improvement in palatability by having a softer lipid based center surrounded by harder shell material.
  • Furthermore, the present invention allows the use of simple packaging techniques because, by the lipid inner matrix being surrounded by the cereal based shell, the lipid material is surprisingly protected from wicking through the shell. Accordingly, there is no wicking of lipids onto the packaging material for the dual component product of the present invention. Typically, high lipid content dry pet or animal foods wick onto packaging material thereby causing undesirable grease stains. The fact that the lipids are concentrated in the inner matrix and are surrounded by an outer shell component allows for the inner matrix to have a higher lipid content without wicking, than an unprotected lipid material of the prior art. Thus, the present invention provides a food component having a desirably high lipid concentration, yet still using simple packaging techniques, without any need for the specialized and costly packaging techniques usually associated with high lipid content products.
  • Additional objects, advantages and features of the various aspects of the present invention will become apparent from the following description of its preferred embodiments, such description being given in conjunction with the accompanying drawings.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • The invention will become more apparent when the detailed description of the exemplary embodiments is considered in conjunction with the appended drawings in which:
  • FIG. 1 is a perspective view of a pat or animal food product of the present invention;
  • FIG. 2 is a schematic perspective view of a pet or animal food product of the present invention;
  • FIG. 3 is a schematic sectional view, along section lines AA of FIG. 2, of a pet or animal food product of the present invention; and
  • FIG. 4 is a graphical representation of the relationship between consumption and time comparing the palatability of a dual texture embodiment of the present invention with the palatability of two mono-texture products wherein the vertical axis represents consumption (grams) and the horizontal axis represents time (minutes).
  • DETAILED DESCRIPTION OF THE INVENTION
  • The invention provides a shelf-stable dual texture multicomponent pet or animal food product containing a softer lipid based portion contained within a shell or harder matrix material portion having significantly improved palatability, as compared to mono-textured pet or animal food products. The present invention provides increased palatability yet the food is nutritionally complete according to American Feed Controls Officials (AFCO) standards.
  • One aspect of the invention provides a dual texture edible product having a lipid-containing softer portion and a cereal based harder portion. The softer component is preferably a mixture of lipids and solids which forms a soft cream textured matrix. Since this soft matrix has minimal water content and very low water activity levels, it does not require harsh sterilization techniques for preservation, additional ingredients for moisture control, or antimicrobial/antimycotic agents for stabilization. Ambient shelflife studies indicate that the product of the present invention is stable, while still maintaining superior feeding performance, even after one year. The cereal based component is preferably harder than the lipid-containing component.
  • According to one embodiment, the cereal based component forms a shell that surrounds the soft component which is in the form of an inner portion. Referring to FIG. 1, a pet or animal food product 10 includes an outer portion 12 surrounding an inner portion 11.
  • In one preferred embodiment of the invention, an extruded shell product includes an inner cream material pumped into a shell extruder die plate and distributed evenly within extruded ropes. The filled extruded ropes are then crimped and cut to form a shape known in the food and pet or animal food industry as “pillow” shapes. The extrusion product can utilize, without requiring the use of water, any convenient extrusion process and apparatus such as, for example, those presently utilized that until now, required the use of water to form semi-moist pet or animal food products.
  • In other examples, the extruded shell material can include up to 25% water added to the meal ingredient, prior to extrusion, to improve the extrusion process. However, the soft inner portion that is coextruded in the center of the extruded rope does not contain any added water. The amount of water added to the outer shell material does not require extreme heat for the water's removal because of the geometry of the extruded product. The water in this invention is only in the shell which is relatively thin compared to the overall thickness of the product. As a result, the water has a shorter pathlength to the surface, and can be driven off with relatively cooler temperatures and for shorter heating times. This is compared to the relatively longer path length for water in the prior art product that has water throughout the product, requiring hotter temperatures and longer heating times. Thus, the ingredients of the present invention are not subjected to deleteriously extreme heat conditions.
  • Referring to FIGS. 2 and 3, a pet or animal food product 60 has an outer portion 62 that surrounds an inner portion 61. The outer portion 62 may have an aligned “fibrous” texture 69 created by an extrusion process. It should be appreciated that the food products illustrated in the Figures can be in any convenient size and shape, including individual bite-sized pieces and other conventional confectionery food product sizes in shapes such as a square, rectangular, round, oval, spherical, elliptical or donut shape. It would be apparent to one in the art to determine the appropriate size and shape for any particular animal application.
  • The softer inner portion or component 61 is a lipid based composition having a low total moisture content less than about 25 wt %, advantageously less than about 20 wt %, more advantageously less than about 15 wt % moisture, even more advantageously less than about 12 wt %, still more advantageously less than 10 wt %, even still more preferably less than 8 wt %, and most preferably less than 6 wt %.
  • The softer inner portion or component 61 includes lipids such as, for example, long or medium chain saturated or unsaturated, non-di, or tri-acylglycerols. Other ingredients such as, for example, carbohydrates, fats, proteins, and combinations thereof can be included. Additional ingredients can be, for example, nutritive, non-nutritive compounds, or combinations thereof. Examples of nutritive compounds that can be included in the softer inner portion or component include mineral supplements, B vitamins, and mixtures thereof. Non-nutritive compounds can include, for example, herbal compounds, plant-based extracts or mixtures thereof. Further, the inner portion or component can include one or more antioxidant ingredients which may be nutritive or non-nutritive. Examples of nutritive antioxidants can include provitamin A carotenes, vitamin C, vitamin E, and mixtures thereof. Examples of provitamin A carotenes include all trans and cis beta-carotenes, all trans and cis alpha-carotenes, and all trans and cis gamma-carotenes. Examples of non-nutritive antioxidants can include non-provitamin A carotenes, anti-inflammatory agents, and mixtures thereof. Examples of non-provitamin A carotenes are zeta-carotene, trans lycopene, cis lycopenes, phytofluene, phytoene, and curcumin. Examples of anti-inflammatory agents can include a fatty acid, a turmeric extract such as curcumin, and mixtures thereof.
  • It is preferable that the softer inner portion or component has a water activity, aw less than about 0.65, more advantageous that aw be less than about 0.50, still more advantageous that aw be less than about 0.40, and most advantageous that aw be less than about 0.35.
  • It is preferable for the lipid content of the softer inner portion or component be greater than about 10% by weight, more advantageous that the lipid content be greater than about 15% by weight, still more advantageous that the lipid content be greater than about 20% by weight, and most advantageous that the lipid content be greater than about 30% by weight.
  • It is preferable for the inner portion or component to comprise about 40-90 wt % solids and about 10-60 wt % lipids; more advantageous for the inner portion or component to comprise about 50-80 wt % solids and about 20-50% lipids; and still more advantageous for the inner portion or component to comprise about 55-65 wt % solids and about 45-35 wt % lipids, with the sum of the wt % of solids and lipids, in all cases, not to exceed 100 wt %. It is most preferred for the inner portion or component to comprise about 60 wt % solids and 40 wt % lipids. The softer inner portion or component can include an additive such as nutritional compounds, functional compounds, pharmaceutical compounds, and mixtures thereof. Such additives can be effective to enhance pet skin or coat properties, improve breath odor, enhance the immune response functions, combat parasites, combat microbes or the additives can be an anti-inflammatory or antioxidant. For example a combination of such additives can include an anti-inflammant, and antioxidant, an anti-parasite, a breath freshener, a skin coat enhancer, or a mixture thereof.
  • The softer inner portion or component is in the proportion of about 5 to about 50 wt % of the total product. The harder outer portion or component is a composition having a low total moisture content that is less than about 25 wt %. The harder outer portion or component is a composition that preferably can include carbohydrates, fats, proteins, and combinations thereof.
  • An aspect of the invention provides a shelf-stable dual texture food product that functions as a delivery system for various functional, nutritional, and/or pharmaceutical ingredients. Preferably, the soft component serves as a delivery system for functional ingredients, especially those that are sensitive to heat, light, and oxygen. Since the soft component is totally encapsulated by the shell/matrix portion, the functional ingredients are substantially protected from heat, light and oxygen. Thus, one aspect of the invention provides a shelf-stable multicomponent pet or animal food product in which various functional, nutritional, and pharmaceutical ingredients can be added and protected in the center inner matrix from heat, light, and oxygen. Furthermore, some functional ingredients may exhibit an undesirable odor or color when mixed throughout a product. Full encapsulation substantially overcomes such problems. Additionally, the functional ingredients, which are generally fat soluble, by being contained in the lipid-based material are more easily absorbed in the digestive tract. Accordingly, they are more effectively administered.
  • Another aspect of the invention provides a product whereby the lipid inner matrix is surrounded by the cereal based shell which protects the lipid material from wicking, thereby allowing the use of simple packaging techniques.
  • The present invention provides a functional delivery system for skin and coat enhancement. For example, the functional ingredient in sunflower or safflower oil, linoleic acid, can be mixed into the lipid based center filling material at targeted levels of 4-8 g/400 Kcal. It is difficult to add this much sunflower or safflower oil to convention dry pet or animal foods because the added linoleic acid alters the extrusion parameters, which thereby causes undesirable changes in texture, increased manufacturing costs, and increased packaging material costs in order to minimize or prevent wicking of the oil. By contract, it is simple to incorporate linoleic acid into the lipid matrix portion of the present invention. Other ingredients such as, for example, sulfur amino acids can be added as part of the solids in the lipid matrix portion. Since these amino acids are heat sensitive, incorporation into the center filling, rather than passing through the elevated temperatures of conventional extruder processing, prevents degradation.
  • Another aspect of the present invention provides a functional delivery system for anti-inflammatory agents. For example, curcumin, can be added to the center filling material. Since this ingredient is bright yellow in color, addition of this ingredient to the outer shell makes the product an undesirable color. Addition of this ingredient in the center filling material hides the bright yellow color. Anti-inflammatory pharmaceutical ingredients may also be incorporated into the center filled material to control inflammation.
  • Yet another aspect of the present invention provides a functional delivery system for breath improvement agents. Ingredients such as rosemary, clove, and parsley seed oils can be added to the center filling material. Since these ingredients have strong flavors and aromas, mixing into a center filling material dampens the flavor and aroma of these functional ingredients and also allows for their increased stability.
  • The present invention also provides a functional delivery system for enhanced immune response agents. For example, evening primrose oil or echinacea can be added to the center filling material, thereby preventing their degradation and enhancing their stability.
  • Another aspect of the present invention provides a functional delivery system for antioxidant agents. There are various ingredients that can function as antioxidants including, for example, (i) vitamin E which is lipid soluble, thus easily and advantageously incorporated into the lipid matrix portion, and (ii) carotenoids which are a bright orange color and are heat, light and oxygen labile. These agents are thus advantageously incorporated into the center lipid matrix portion surrounded by an outer shell material.
  • The present invention further provides a functional delivery system for parasite control agents. Pharmaceutical ingredients are currently incorporated into tablets. Such tablets are often difficult to administer. There is an increasing desire by consumers for incorporating these ingredients in a pet or animal food product for ease of administration. For example, pharmaceutical ingredients such as those effective against heartworm, intestinal worms, fleas, and/or ticks could be incorporated into the center lipid matrix portion of the present invention for easy administration.
  • Yet another aspect of the present invention provides a functional delivery system for antibiotics and/or prebiotics and/or probiotics for the maintenance of gastrointestinal health functions. Various antibiotics may be incorporated into the center lipid matrix portion. Prebiotics such as inulin or frutooligosaccharide (FOS) can be incorporated as part of the solids mix blended with the lipids. Probiotics, such as lyophilized lactobacillus or bifidobacterium can be added to the lipid which have higher survival rates than when incorporated into conventional pet or animal food products. This is because the harsh sterilization process of conventional or animal food manufacturing is not required in the present invention. The lyophilized cells can thus remain dormant in the lipid matrix of the present invention and remain protected until the cells reach the GI tract where they can advantageously proliferate.
  • The dual texture animal food product of the present invention can be of any convenient size suitable for a particular pet-type application. One of ordinary skill in the art knows what appropriate sizes are for particular pet-types such as, for example, kittens, cats, old cats, small dogs, medium size dogs, large dogs, and old dogs.
  • In one example, a dual texture animal food product of the present invention has a largest dimension less than about 20 mm and a second largest dimension less than about 15 mm. In another example, the largest dimension ranges from about 8 to about 10 mm and the second largest dimension ranges from about 8 to about 10 mm. Another has a largest dimension ranging from about 10 to about 12 mm and a second largest dimension ranging from about 14 to about 16 mm. Another has a largest dimension less than about 30 mm and a second largest dimension less than about 30 mm.
  • The dual texture animal food product of the present invention, in another example, is in the shape of a substantially rectilinear box having a first dimension ranging from about 7 to about 15 mm, a second dimension ranging from about 7 to about 15 mm and a third dimension ranging from about 3 to about 10 mm. In another example, the box shape has a first dimension ranging from about 15 mm to about 30 mm, a second dimension ranging from about 15 to about 30 mm and a third dimension ranging from about 5 mm to about 15 mm.
  • The dual texture animal food product of the present invention can be formed as having any convenient individual weight appropriate to the particular pet-type application. For example, in an example for cats, the products weighs from about 0.1 to about 10 grams per piece. The present invention also includes mixing different weight pieces for one pet food application as well as uniform weight pieces.
  • EXAMPLES
  • The following examples are illustrative of some of the products, and methods of making dual-textured products, falling within the scope of the present invention. Numerous changes and modification can be made with respect to the invention by one of ordinary skill in the art without undue experimentation.
  • In general, the specific processes, such as mixing, grinding, cooking, heating, extruding, or shell formation, used to make the pet or animal food products of the present invention are well known in the industry. Further, such safety procedures as are required to produce a suitable pet or animal food product are also well known in the art and are followed in practicing the present invention.
  • When using a digest, safe digest conditions are also well known, such as maintaining a pH between about 1.0 to about 5.0. In general, the harder, shell ingredients are blended uniformly in the presence of a magnet before milling, a de-stoner is used during milling, and the milled product is tested with a metal detector to remove any potential damaging and unhealthy metal pieces. The mill and sifter should be capable of producing, for a feline directed product, for example, a mean particle size from about 200μ, to about 300μ. Other animals would require different particle sizes, as is well known in the field. The sifter can be any convenient sifter such as, for example, an oscillating/vibrating bed sifter.
  • The safe handling of the softer core ingredients such as, for example, tallow, lard, digest, meat mix, and vegetable oil are also well known to one of ordinary skill in the pet or animal food industry. The storage conditions are well known such as, for example, keeping the tanks at a temperature between 45° C. to about 75° C. The tallow generally is preferably delivered from a bulk delivery system tempered to about 55° C. to about 65° C. The tallow is preferably filtered through a U.S. Standard No. 18 Mesh filter (1,000 micron maximum opening). Such procedures for tallow are well known in the industry in order to produce a suitable healthful pet or animal food product.
  • In general, it is recommended that the dry meal component of the inner cream matrix be added to the mixer first, followed by the tallow and other fat and oil ingredients during a batch operation process. Optionally, a continuous process can be used whereby the dry components of the inner cream matrix are simultaneously mixed with liquid tallow to form the cream. Additionally, an emulsifier can be added to the tallow prior to mixing. Airborne particulates, dust, and splashing should be minimized as is known in the art in order to produce a suitable healthful pet or animal food product. The cream material should be added and mixed until the dry ingredients are well mixed and coated with the fat and oil ingredients so that no dry material is observed. The absolute viscosity is preferably below about 25,000 cP in the temperature range of about 32° C. to about 50° C.
  • The cream tanks advantageously should be swept-surfaced and agitated, maintaining the product at a temperature of from about 40° C. to about 50° C. The agitators advantageously should be sized to prevent air entrapment from vortex formation. The speed of mixing advantageously should be controlled to prevent air entrapment from vortex formation. General procedures should be followed to prevent contamination from Salmonella and other microorganisms. Such procedures include, for example, maintaining sealed systems at positive pressure with filtered and UV treated air.
  • Any convenient method can be used to form the cream, to form the outer shell material, to load the materials into an extruder, and to co-extrude the outer and inner materials. Such methods are well known to one of ordinary skill in the art in using the compositions of the present invention to produce the product of the present invention.
  • It would be apparent to one of ordinary skill in the art the proper rheological properties necessary for the particular conventional extruder being used. The use of mills, screens, filters, temperature control devices, safety equipment, controllers, etc. are well known in the art. It would be apparent to one of ordinary skill in the art that the soft composition of the inner component of the present invention does not require addition of water for processing. The inner component of the present invention, however, should be kept at a temperature sufficiently low so that the mixture is sufficiently stiff, in order to allow its effective processing in conventional extrusion equipment.
  • It would be apparent to one in the art to prevent particles from damaging the equipment, or from being a hazard to the consumer, by removing such particles by any convenient method such as, for example, by filtering, screening, magnetic exclusion, and sedimentation.
  • Although any conventional extruder can be used, in one example, an extruder configured with a co-extrusion die configuration in a twin screw extruder was used. In one configuration, the product streams to the extruder included mixed meal, potable water, steam injection, pumpable meat inclusion, optionally tallow, and a corn oil extrusion-aid additive to form the shell. A preconditioner was used to prepare the meal for extrusion. In this case, although a small amount of water was added to the shell ingredients to aid in processing, the water was easily driven off by vaporization at the extrusion head or by low temperature drying at about 175° F. to about 250° F. (about 80° C. to about 116° C.) for about 20 minutes. The drying can be performed in two stages, about 10 minutes at about 175-220° F. (80-100° C.) followed by about 10 minutes at about 175-250° F. (80-116° C.). The inner lipid based portion has good heat insulating properties. Thereby, protecting the included ingredients from deterioration by the mild drying conditions.
  • The extruded rope containing the softer lipid interior material surrounded by the harder outer shell material can be divided into convenient sized pieces that are closed at the ends so that the softer lipid interior material is completely encased by the harder outer material. The dividing can be by any convenient process such as, for example, by using a crimper. Such crimpers are well known in the art.
  • Condensation onto the product stream should be avoided, and the process equipment should be chemically or steam sanitized. Other sanitary measures well known to one in the art should be followed in order to provide a healthy pet or animal food product.
  • Feeding performance is usually expressed in grams, representing the average intake per cat per feeding. If the feeding performance is performed over a period of days, the grams represent the average intake per cat per day. Feeding preference is usually expressed in percent, representing the average percentage of animals that preferred one food over others. The test procedures for determining feeding performance and feeding preferences are well known to one of ordinary skill in the art.
  • In the examples below, the term “Chix” refers to a common commodity for pet foods. It is a ground meal made from clean parts of carcasses of slaughtered chicken and is manufactured by many suppliers known to one in the industry.
  • Examples 1A, 1B, Comparative Example 1, and Comparative Example 2
  • Example 1A was a dual textured pet or animal food product of the present invention made with a shell composed of the ingredients shown in Table 1 and filled with the ingredients shown in Table 2:
    TABLE 1
    Ingredient Wt. %
    Chix w. BHA 29.00
    Corn whole, #2 Yellow 39.18
    Rice Brewers 17.00
    Soybean Meal 44% 13.00
    Salt, iodized 0.40
    Vitamins and Minerals 0.80
    Antioxidant 0.02
    Iron Oxide Colorant 0.60
  • TABLE 2
    Ingredient Wt. %
    Wheat Flour 10.00
    Hydrolyzed Meat Protein 47.00
    Tallow Beef Inedible 39.00
    Natural Colorant 3.00
    Lecithin 1.00
  • Example 1B was made similar to Example 1A but with the optional meat inclusion of beef, beef/liver blends and salmon. The meat inclusion was added to the shell at 5 wt % of the total product.
  • Comparative Example 1 was made by mixing all the ingredients, in the same amounts used to make Example 1, into one mono-textured pet or animal food product. Comparative Example 2 was just the shell ingredients. Referring to FIG. 4, the feeding performance for Example 1A is shown by a feeding curve 71. The feeding performance of the prior art Comparative Example 1 is shown by a feeding curve 72 for a mono-textured food product which contained in total the same ingredients as that used in Example 1A. The feeding performance of just the shell component of the present invention, Comparative Example 2, is shown by a feeding curve 73.
  • Example 1A and Comparative Example 1 were subjected to a Shelf-Life/Feeding Performance test. Example 1A showed feeding performances of 88 g intake after 14 weeks of shelf-storage, 75 g intake after 32 weeks of storage, and 78 g intake after 59 weeks of storage.
  • The data show the enhanced feeding performance for the dual texture Example 1A of the present invention when compared to a monocomponent product containing all the same ingredients (Comparative Example 1) or when compared to the outer shell only (Comparative Example 2). Not only was the present invention more palatable, but the present invention kept its increased palatability through a storage period of over a year.
  • Example 2 and 2B
  • A dual textured pet or animal food product of the present invention was made with a shell composed of the ingredients shown in Table 3 and filled with the ingredients shown in Table 4:
    TABLE 3
    Ingredient Wt. %
    Chix w. BHA 34.00
    Corn whole, #2 Yellow 36.18
    Rice Brewers 15.00
    Soybean Meal 44% 13.00
    Salt, iodized 0.40
    EXP-04 0.80
    PET-OX (BHA/BHT) 0.02
    Iron Oxide (Brown) 0.40
  • TABLE 4
    Ingredient Wt. %
    Wheat Flour 10.00
    Hydrolyzed Meat Protein 47.00
    Tallow Beef Inedible 39.00
    Natural Colorant 3.00
    Lecithin 1.00
  • At extrusion, the filled shell comprised 62.000 wt % batch meal, 8.000% meats, and 30.000% filling.
  • Example 2 showed enhanced feeding performances of 96 g after 6 weeks, 71 g after 26 weeks, and 88 g after 57 weeks. Example 2B was also made with the optional meat inclusion, similar to Example 1B.
  • Other feline preference feedings demonstrated a greater than 8 to 10 times rate of preference of the present invention over other dry products, including dry products containing high levels of lipids. In one comparison test, a salmon flavored example of the present invention was compared to a similarly salmon flavored comparison mono-textured example. The feeding preference of the present invention was 90.1% while the comparison example had a feeding preference of 9.9%
  • In another comparison, using a beef flavored example of the present invention and a beef flavored comparison example, the present invention showed a feeding preference of 80.6% as compared to 19.4% for the comparison example. In yet another comparison, a 15 minute paired preference test showed, with 99% confidence, that the present invention example was preferred by 70.1% while the comparison example was preferred by 29.9% of the cats. The feeding performance was 41.8 g for the present invention example, compared to 17.7 g for the comparison example.
  • These results for dry pet or animal food, especially for feline feeding behavior, are surprising and unexpected. The increased palatability resulting from the lipid based inner matrix, according to the present invention, provides a delivery system, as shown by the following examples, for a variety of nutritional, functional, and pharmaceutical ingredients—especially those that are (i) lipid soluble, (ii) are susceptible to degradation by heat, light or oxygen or (iii) otherwise difficult to administer because of taste, color or odor.
  • The following examples show other embodiments of the present invention having an outer shell made with ingredients similar to that used in the above examples and having inner lipid softer mixtures as indicated below.
  • Example 3
  • Example 3 is made by producing the inner filling with the ingredients shown in Table 5 below:
    TABLE 5
    Ingredient Wt. %
    Beef tallow 38.9
    Animal and/or non-animal 30
    protein solids
    Carbohydrate-based solids such 30
    as wheat flour
    Emulsifier 1
    Antioxidant 0.1-5
  • Example 4
  • Example 4 is made by producing the inner filling with the ingredients shown in Table 6 below:
    TABLE 6
    Ingredient Wt. %
    Beef tallow 33.9-38-89
    Animal and/or non-animal 30
    protein solids
    Wheat flour 30
    Emulsifier 1
    Antioxidant 0.1
    Essential fatty acids such as n3 0.1-5%
    and/or n6 series
  • Example 5
  • Example 5 is made by producing the inner filling with the ingredients shown in Table 7 below:
    TABLE 7
    Ingredient Wt. %
    Beef tallow 33.9-38.89
    Animal and/or non-animal 30
    protein solids
    Wheat flour 30
    Emulsifier 1
    Antioxidant 0.1
    n-3 series essential fatty acids .01-5%
    and/or curcumin
  • Example 6
  • Example 6 is made by producing the inner filling with the ingredients shown in Table 8 below:
    TABLE 8
    Ingredient Wt. %
    Beef tallow 34.9-38.89
    Animal and/or non-animal 30
    protein solids
    Wheat flour 30
    Emulsifier 1
    Antioxidant 0.1
    Vitamin E/Curcumin/Carotenes 0.01-4%
  • Example 7
  • Example 7 is made by producing the inner filling with the ingredients shown in Table 9 below:
    TABLE 9
    Ingredient Wt. %
    Beef tallow 36.9-38.89
    Animal and/or non-animal 30
    protein solids
    Wheat flour 30
    Emulsifier 1
    Antioxidant 0.1
    Rosemary, clove, eucalyptus 0.01-2.0%
    and/or parsley seed oils
  • Example 8
  • Example 8 is made by producing the inner filling with the ingredients shown in Table 10 below:
    TABLE 10
    Ingredient Wt. %
    Beef tallow 33.9-38.89
    Animal and/or non-animal 30
    protein solids
    Wheat flour 30
    Emulsifier 1
    Antioxidant 0.1
    Flax seed, evening primrose, 0.01-5%
    brewers yeast and/or kelp
  • Example 9
  • Example 9 is made by producing the inner filling with the ingredients shown in Table 11 below:
    TABLE 11
    Ingredient Wt. %
    Beef tallow 33.9-38.89
    Animal and/or non-animal 30
    protein solids
    Wheat flour 30
    Emulsifier 1
    Antioxidant 0.1
    Parasite control ingredients such .01-5%
    as a dewormer or anti-flea agent
  • Example 10
  • Example 10 is made by producing the inner filling with the ingredients shown in
    TABLE 12
    Ingredient Wt. %
    Chicken meal 35.2%
    Corn   35%
    Rice   14%
    Soybean meal   13%
    Salt  0.4%
    Vitamins/minerals/antioxidants/  2.4%
    colors
  • Example 11
  • Example 11 is made by producing the inner filling with the ingredients shown in Table 13 below:
    TABLE 13
    Ingredient Wt. %
    Chicken meal 15
    Rice 25.3
    Corn 25
    Wheat 13.3
    Corn gluten meal 12
    Salt 0.9
    Milk protein 1
    Yeast 2
    Egg 0.8
    Vitamins/minerals/ 4.7
    antioxidants/
    colors
  • As described above, the present invention provides a delivery system for ingredients that are process unstable or sensitive. Process unstable ingredients, for example, are those that become inactive due to the high heat, or acid levels present in most food processing techniques. Sensitive ingredients, for example, are those that are sensitive to light or oxygen. These unstable or sensitive ingredients can include functional, nutritional, pharmaceutical, prebiotic and probiotic ingredients.
  • The USP 24 NF 19, July 1999, lists pharmaceutical ingredients and among many items discussed, lists the storage and stability conditions thus identifying those that are temperature, light, or oxygen sensitive. This publication is herein incorporated by reference in its entirety. It is also well known in the industry that vitamins are destroyed by exposure to heat, light, oxidizing agents, extremes in pH, or other factors that affect organic nutrients.
  • Probiotic micro-organisms are micro-organisms that beneficially affect a host by improving its intestinal microbial balance and as such as very heat sensitive. Typically probiotic micro-organisms will only remain viable at lower temperatures and in mixtures that have a low water activity. Examples of suitable probiotic micro-organisms include yeasts, such Saccharomyces, Debaromyces, Candida, Pichia and Torulopsis, moulds such as Aspergillus, Rhizopus, Mucor, and Penicillium and Torulopsis and bacteria such as the genera Bifidobacterium, Bacteroides, Clostridium, Fusobacterium, Melissococcus, Propionibacterium, Streptococcus, Enterococcus, Lactococcus, Staphylococcus, Peptostrepococcus, Bacillus, Pediococcus, Micrococcus, Leuconostoc, Weissella, Aerococcus, Oenococcus and Lactobacillus. Specific examples of suitable probiotic micro-organisms are: Saccharomyces cereviseae, Bacillus coagulans, Bacillus licheniformis, Bacillus subtilis, Bifidobacterium bifidum, Bifidobacterium infantis, Bifidobacterium longum, Enterococcus faecium, Enterococcus faecalis, Lactobacillus acidophilus, Lactobacillus alimentarius, Lactobacillus casei subsp. casei, Lactobacillus casei Shirota, Lactobacillus curvatus, Lactobacillus delbruckii subsp. lactis, Lactobacillus farciminus, Lactobacillus gasseri, Lactobacillus helveticus, Lactobacillus johnsonii, Lactobacillus reuteri, Lactobacillus rhamnosus (Lactobacillus GG), Lactobacillus sake, Lactococcus lactis, Micrococcus varians, Pediococcus acidilactici, Pediococcus pentosaceus, Pediococcus acidilactici, Pediococcus halophilus, Streptococcus faecalis, Streptococcus thermophilus, Staphylococcus carnosus, and Staphylococcus xylosus.
  • A number of vitamins are also unstable. A summary of vitamin instability is described in chapter 8 of Food Chemistry by Owen Fennema (pp. 531-617), which is herein incorporated by reference in its entirety. As an example, Vitamin C (ascorbic acid) is a very unstable vitamin. It is unstable in both neutral and alkaline conditions and oxidizes readily upon exposure to air or oxygen, light and heat. The maximum cooking loss is 100%. Food Chemistry by Owen Fennema. Marcel Decker 1996, pg. 533.
  • Alternatively, lycopene is in a class of carotenoids that characteristically gives color to many vegetables. Lycopene is found in a highest concentration in tomatoes and tomato products. Carotenoids are easily isomerized by heat, acid or light. Once isomerized, they lose their biological antioxidant properties. Food Chemistry by Owen Fennema. Marcel Decker 1996, pg. 678.
  • It has also become increasingly popular in the food and pet food industry to combine and therefore process herbs and functional ingredients with other food components. There are many unknowns regarding interactions with these herbs and functional ingredients during processing with other food components. These unknowns consist of chemical reactions between the herb and functional ingredients that occur during processing or subsequent storage that may render the herb or functional ingredient non-effective. These chemical reactions are enhanced by factors such as heat, light, and oxygen. The reference The Herbal Drugs and Phytopharmaceuticals, A Handbook for Practice on a Scientific Basis, ed. and translation from the German Ed by Norman Grainger Bisset. CRC Press, 1994 describes herbs and other functional ingredients that includes preparation methods for these natural ingredients. This publication is herein incorporated by reference in its entirety. Historically, these herbs and functional ingredients are consumed individually, not combined or processed with other food ingredients. This invention provides a food component environment and processing conditions that minimize the potential for chemical reactions to occur between herbs and functional ingredients and food components.
  • Example 12
  • In Example 12, two different batches of animal food product were produced in which Vitamin C powder (non-encapsulated) was added to the dry meal powders and blended, The amount of Vitamin C powder added was an amount sufficient to provide approximately 500 to 520 mg/kg of Vitamin C in the finished food product. The dry powders/dry ingredients plus Vitamin C was blended with tallow form a cream. The blended cream was pumped to the head of the extruder die and then co-extruded with the shell material. The co-extruded ropes were crimped into pillow or pocket shapes and dried in a dryer. The dried animal food product was then coated with tallow and digest material. The Vitamin C enriched animal food product retained an average of 93.7% of the added Vitamin C, as determined by HPLC (high performance liquid chromatography). The results are shown in the table below:
    TABLE 14
    Batch No. Target Vitamin C Actual Vitamin C
    No. 1 500-520 mg/kg 447 mg/kg
    No. 2 500-520 mg/kg 515 mg/kg
    Average Vitamin C 478 mg/kg
  • As show above, the duel component animal food product of the present invention retained 93.7% of the added Vitamin C after processing, which is significantly greater than the 0% retention of Vitamin C found in a moncomponent pet food produced by an extrusion process.
  • Example 13
  • In Example 13, two different batches of animal food product were produced in which an encapsulated product containing 5% lycopene was added to the dry meal powders and blended, The lycopene was supplied form ROCHE as an encapsulated product because encapsulation protects the lycopene from isomerization due to light and heat. ROCHE has found that about 80% of the lycopene is lost through the extrusion process. The amount of lycopene added was an amount sufficient to provide approximately 105 to 115 μg/g of lycopene in the finished food product. The dry powders/dry ingredients plus lycopene was blended with tallow form a cream. The blended cream was pumped to the head of the extruder die and then co-extruded with the shell material. The co-extruded ropes were crimped into pillow or pocket shapes and dried in a dryer. The dried animal food product was then coated with tallow and digest material. The lycopene enriched animal food product retained an average of 68% of the added lycopene determined by HPLC (high performance liquid chromatography). The results are shown in the table below in which the actual lycopene is non isomerized or trans lycopene.
    TABLE 15
    Batch No. Target Lycopene Actual trans lycopene
    No. 1 105-115 μg/g 71.6 μg/g
    No. 2 105-115 μg/g 78.0 μg/g
    Average lycopene 74.8 μg/g
  • As shown above, the duel component animal food product of the present invention retained 68% of the added lycopene after processing, which is significantly greater than the 20% retention of lycopene found in a moncomponent pet food produced by an extrusion process.
  • Example 14
  • In Example 14, two different batches of animal food product, Formulation A and B, were produced in which three different probiotic micro-organisms were added to the dual component animal product. One kibble mixture was dried and the other was not subject to drying. Suitable probiotic micro-organisms are well known to those skilled in the art. The micro-organisms used in Example 14 were Bacillus coagulans, Enterococcus faecium and Streptococcus thermophilus which were supplied by Chr. Hansen's Biosystems, 9015 West Maple, Milwaukee, Wis. 53214. The probiotic micro-organisms are preferably in powdered, dried form; especially in spore form if the micro-organism forms spores. The probiotic micro-organism can also be encapsulated to further increase the probability of survival.
  • The amount of Bacillus coagulans, Enterococcus faecium and Streptococcus thermophilus added to the cream mixture portion of the dual component animal food was twelve million CFU's/gram, this resulting in a target of 100,000 CFU's/liter of intestinal fluid per organism. The blended cream was pumped to the head of the extruder die and then co-extruded with the shell material. The co-extruded ropes were crimped into pillow or pocket shapes and dried in a dryer. The dried animal food product was then coated with tallow and digest material. The amount of probiotic micro-organisms retained in the animal food product was determined by viable plate counts (VPC) and reported as CFU/g with standard deviations included. The results are shown in Tables 16 and 17 below.
    TABLE 16
    Bacillus Enterococcus
    Formulation coagulans faecium
    A Target (CFU/g) (CFU/g)
    Lot 15030A VPC (% recovery) (% recovery)
    Kibble 29 × 10E5 35 ± 5 × 10E5 121 6.2 ± 0.8 × 10E5 21
    (no dry)
    Kibble 29 × 10E5 28 ± 2 × 10E5  97 0.2 ± 0.1 × 10E5 0.6
    (dried)
  • TABLE 17
    For-
    mulation Bacillus Streptococcus
    B coagulans Thermophilus
    Lot Target (CFU/g) (CFU/g)
    15030B VPC (% recovery) (% recovery)
    Kibble 29 × 10E5 27 ± 2 × 10E5  93  8.2 ± 2.0 × 10E5 28
    (no dry)
    Kibble 29 × 10E5 29 ± 1 × 10E5 100 11.5 ± 1.3 × 10E5 40
    (dried)
  • As shown above the probiotic micro-organisms remain extremely stable in the duel component animal food product of the subject invention
  • In general, the proximate weight percent of elements for the lipid center matrix of Examples 3-11 would be 36 wt % protein, 6 wt % ash, 42 wt % fat, 10 wt % carbohydrate, and 6 wt % moisture. The proximate weight percent for the raw batch meal used in the outer shell prior to extrusion is about 13 wt % protein, 7 wt % ash, 6 wt % fat, 4 wt % fiber, 40 wt % carbohydrate, and 10 wt % moisture. Fresh meat can be optionally added to the batch meal prior to extrusion. The protein/carbohydrate ratio would be adjusted to accommodate the meat addition, but the meat would nonetheless raise the fat content. The final product would have a moisture content less than about 12 wt % and a water activity below 0.6.
  • One skilled in the art will readily appreciate that the present invention is well adapted to carry out the objects and obtain the ends and advantages mentioned as well as those inherent therein. The dual component animal food described herein are presently representative of the preferred embodiments, are exemplary and are not intended as limitations on the scope of the invention. Changes therein and other uses will occur to those skilled in the art which are encompassed within the spirit of the invention and are defined by the scope of the claims

Claims (4)

1-62. (canceled)
63. A dual texture pet or non-human animal food product comprising:
an extruded cereal based shell component completely surrounding a co-extruded inner component, wherein the extruded cereal based shell and co-extruded inner component form one dual textured pet or non-human animal food product, wherein the shell component is harder than the inner component;
said shell component having a total moisture content of less than about 20 wt % and containing at least one ingredient comprising a carbohydrate, fat, protein or combination thereof; and
said inner component having a water activity, aw, of less than about 0.65, a total moisture content of less than about 15 wt % and comprised of a mixture of lipid and solid ingredients, wherein the lipid content of the inner component is at least about 10 wt %.
64-92. (canceled)
93. A dual texture pet or non-human animal food product comprising:
an extruded cereal based shell component completely surrounding an inner component, wherein the extruded cereal based shell and inner component form one dual textured pet or non-human animal food product, wherein the shell component is harder than the inner component;
said shell component having a total moisture content of less than about 20 wt % and containing at least one ingredient comprising a carbohydrate, fat, protein or combination thereof; and
said inner component having a water activity, aw, of less than about 0.65, a total moisture content of less than about 15 wt % and comprised of a mixture of lipid and solid ingredients, wherein the lipid content of the inner component is at least about 10 wt %.
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US09/799,288 US6312746B2 (en) 1998-03-18 2001-02-05 Multicomponent pet food product and methods of making and using the same
US09/945,994 US6827957B2 (en) 1998-03-18 2001-09-04 Multicomponent per food or animal food
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Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050287263A1 (en) * 2001-06-13 2005-12-29 Yaron Mayer Proteinaceous food based on hempseed and/or other plants, that keeps the seed's nutritional value and does not use dangerous ingredients, such as preservatives or coloring.
WO2007079120A3 (en) * 2005-12-28 2007-09-07 Nestec Sa Hollow multi -component food or feed product
WO2009151508A1 (en) * 2008-04-29 2009-12-17 Nestec S.A. Rotary forming devices and methods for using such devices
US20110027416A1 (en) * 2009-07-31 2011-02-03 Gregory Dean Sunvold Dusted Animal Food
US20110027343A1 (en) * 2009-07-31 2011-02-03 Monika Barbara Horgan Animal Food Having Low Water Activity
US20110027418A1 (en) * 2009-07-31 2011-02-03 Monika Barbara Horgan Animal Food Having Low Water Activity
US20120085296A1 (en) * 2006-11-21 2012-04-12 Petmatrix LLC Edible Pet Chew
US8993017B2 (en) 2009-12-18 2015-03-31 Hill's Pet Nutrition, Inc. Animal feed compositions and processes for producing
WO2016209397A1 (en) * 2015-06-22 2016-12-29 Ridley USA Inc. Consumption-regulated feed block
US10104903B2 (en) 2009-07-31 2018-10-23 Mars, Incorporated Animal food and its appearance
US10212954B2 (en) 2009-12-18 2019-02-26 Colgate-Palmolive Company Pet food compositions including probiotics and methods of manufacture and use thereof
US10624317B2 (en) 2006-11-21 2020-04-21 Petmatrix LLC Edible pet chew made from an edible malleable sheet
US11154077B2 (en) 2009-07-31 2021-10-26 Mars, Incorporated Process for dusting animal food

Families Citing this family (190)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB9815634D0 (en) * 1998-07-17 1998-09-16 Mars Uk Ltd Animal food composition
US6506401B1 (en) * 1999-01-28 2003-01-14 H. J. Heinz Company Filled edible product, and system and method for production of a filled edible product
US20030198661A1 (en) * 2000-01-31 2003-10-23 Mars Incorporated Antioxidant compositions and methods for companion animals
US6238715B1 (en) * 1999-02-02 2001-05-29 Robert Scott Baikie Chew toy for dogs and method of making the same
US6228418B1 (en) * 1999-04-07 2001-05-08 Cyvex Nutrition Vegetarian pet treat
JP4098522B2 (en) * 1999-09-06 2008-06-11 エッフェム フーズ ピーティーワイ リミテッド Pet food product and method of manufacturing the same
GB0005839D0 (en) * 2000-03-10 2000-05-03 Provita Eurotech Ltd Storage and delivery of micro-organisms
BR0109153A (en) * 2000-03-10 2003-04-22 Ralston Purina Co Method for administering a consumer direct pet care system, and apparatus for monitoring, a custom pet care product production system
GB0008657D0 (en) * 2000-04-07 2000-05-31 Mars Uk Ltd Pet food
EP1151673A3 (en) * 2000-05-03 2002-01-02 Societe Des Produits Nestle S.A. Confectionery product having a filling
FR2808970B1 (en) * 2000-05-19 2003-01-31 Royal Canin Sa FOOD SLOWING DOWN DOG INGESTION SPEED
DK200001245A (en) * 2000-08-23 2002-02-24 Edberg Dan Oudal Process for the production of feed encased in a digestible shell.
AU2007216796B2 (en) * 2000-10-31 2011-06-09 Colgate-Palmolive Company Composition and method
US8669282B2 (en) * 2000-10-31 2014-03-11 Hill's Pet Nutrition, Inc. Companion animal compositions including lipoic acid and methods of use thereof
US20020076470A1 (en) 2000-10-31 2002-06-20 Colgate-Palmolive Company Composition and method
GB0027761D0 (en) * 2000-11-14 2000-12-27 Nestle Sa Nutritional composition for an immune condition
US7214370B2 (en) 2000-12-18 2007-05-08 Probiohealth, Llc Prebiotic and preservative uses of oil-emulsified probiotic encapsulations
US6517877B2 (en) * 2000-12-29 2003-02-11 Martin Francis Gannon Animal food product
RU2302747C2 (en) 2001-02-19 2007-07-20 Сосьете Де Продюи Нестле С.А. Cereal foodstuff containing probiotic microorganism, cereal foodstuff containing metabolites produced by probiotic microorganisms, and method for production thereof
US7320807B2 (en) * 2001-04-12 2008-01-22 Sorrento Lactalis, Inc. Co-extruded cheese snacks
US6733263B2 (en) 2001-04-13 2004-05-11 Hills Pet Nutrition Inc. Composition, process and apparatus
GB0113348D0 (en) * 2001-06-01 2001-07-25 Mars Uk Ltd Skin diet
GB0113751D0 (en) * 2001-06-06 2001-07-25 Dow Corning Surface treatment
US20030009370A1 (en) * 2001-06-15 2003-01-09 Singh Bhajmohan (Ricky) Method and apparatus for customizing a multiple component pet food
US7698145B2 (en) * 2001-06-15 2010-04-13 Nestec S.A. Pet food kiosk
US6493641B1 (en) 2001-06-15 2002-12-10 Nestec Ltd Methods and apparatus for customizing pet food
WO2003013267A1 (en) * 2001-08-03 2003-02-20 Mars Incorporated Method of utilising offals for pet food manufacture
US6767546B1 (en) * 2001-08-17 2004-07-27 The United States Of America As Represented By The Secretary Of Agriculture Use of echinacea as a feed additive to enhance protection against coccidiosis
US6783777B2 (en) * 2001-09-13 2004-08-31 Land O'lakes, Inc. Method of feeding swine
US6716448B2 (en) * 2001-10-05 2004-04-06 Rubicon Scientific Llc Domesticated household pet food including maintenance amounts of ivermectin
US7052712B2 (en) * 2001-10-05 2006-05-30 Rubicon Scientific Llc Animal feeds including actives and methods of preparing same
US6866862B2 (en) * 2001-10-05 2005-03-15 Rubicon Scientific Animal feeds including heartworm-prevention drugs
BR0213124A (en) * 2001-10-05 2004-09-21 Rubicon Scient Llc Feed including actives and methods of use
JP2005508647A (en) * 2001-11-12 2005-04-07 マーズ インコーポレイテッド Food
US7329426B2 (en) * 2001-11-13 2008-02-12 Applied Food Biotechnology, Inc. Treatment of vegetable oils or animal fats with sulfur or nitrogen donor compounds for animal food flavorings
US7101565B2 (en) 2002-02-05 2006-09-05 Corpak Medsystems, Inc. Probiotic/prebiotic composition and delivery method
DE20203242U1 (en) * 2002-03-01 2002-07-04 Flos Juergen Calendar with a plurality of recording media
EP1344458A1 (en) * 2002-03-12 2003-09-17 Société des Produits Nestlé S.A. Probiotic delivery system
US20030194423A1 (en) * 2002-04-15 2003-10-16 Mars, Inc. Composition for enhancing nutritional content of food
DE10220728A1 (en) * 2002-05-08 2003-11-27 Berend-Jan Te Winkel Feed as well as process and machine for its production
SE526943C2 (en) * 2002-08-26 2005-11-22 Indevex Ab food composition
US20050181097A1 (en) * 2002-09-16 2005-08-18 Mars, Inc. Nutritionally complete pet food and method of feeding and manufacturing same
US6896924B2 (en) * 2002-09-16 2005-05-24 Angel Hernandez Two-texture pet food product
CA2503510C (en) * 2002-09-26 2014-12-02 Probiohealth, Llc Prebiotic and preservative uses of oil-emulsified probiotic encapsulations
US7251059B2 (en) * 2002-10-16 2007-07-31 Xerox Corporation System for distinguishing line patterns from halftone screens in image data
US20040091579A1 (en) * 2002-11-13 2004-05-13 Rubicon Scientific Llc; Extruded foodstuffs having maintenance level actives
US8034372B2 (en) * 2003-03-05 2011-10-11 Nestec, Ltd. Dietary supplement for athletic pets
WO2004080200A1 (en) * 2003-03-11 2004-09-23 Inatech International Inc. Probiotic micro-organisms and uses thereof
US20050202063A1 (en) * 2003-08-26 2005-09-15 Ebn International Kft Food product
US7731976B2 (en) * 2003-08-29 2010-06-08 Cobb And Company, Llp Treatment of irritable bowel syndrome using probiotic composition
US8192733B2 (en) 2003-08-29 2012-06-05 Cobb & Associates Probiotic composition useful for dietary augmentation and/or combating disease states and adverse physiological conditions
US7749509B2 (en) * 2003-08-29 2010-07-06 Cobb And Company, Llp Treatment of autism using probiotic composition
US7759105B2 (en) * 2003-08-29 2010-07-20 Cobb & Company, Llp Probiotic composition useful for dietary augmentation and/or combating disease states and adverse physiological conditions
US20060177424A1 (en) * 2003-08-29 2006-08-10 Cobb Mark L Treatment of disease states and adverse physiological conditions utilizing anti-fungal compositions
US8715717B2 (en) * 2003-09-05 2014-05-06 Hill's Pet Nutrition, Inc. Composition for animal consumption
US8128956B2 (en) * 2003-09-12 2012-03-06 Mars, Inc. Food product for hairball treatment
US20050064081A1 (en) * 2003-09-19 2005-03-24 Rapidx Technologies Inc. Food product and method
US7074446B2 (en) * 2003-10-30 2006-07-11 Frito-Lay North America, Inc. Method for making a dual-textured food substrate having large seasoning bits
US7074445B2 (en) * 2003-10-30 2006-07-11 Frito-Lay North America, Inc. Method for adhering large seasoning bits to a food substrate
US20050119222A1 (en) 2003-12-01 2005-06-02 The Iams Company Compositions comprising fermentable fiber which are adapted for use by a companion animal and kits and methods of their use
US20050118299A1 (en) * 2003-12-01 2005-06-02 The Iams Company Companion animal compositions comprising short chain oligofructose
US20050118234A1 (en) * 2003-12-01 2005-06-02 The Iams Company Methods and kits related to administration of a fructooligosaccharide
US20050158294A1 (en) 2003-12-19 2005-07-21 The Procter & Gamble Company Canine probiotic Bifidobacteria pseudolongum
US8877178B2 (en) 2003-12-19 2014-11-04 The Iams Company Methods of use of probiotic bifidobacteria for companion animals
US7785635B1 (en) * 2003-12-19 2010-08-31 The Procter & Gamble Company Methods of use of probiotic lactobacilli for companion animals
US20050202151A1 (en) * 2004-03-15 2005-09-15 Land O'lakes, Inc. Method of preparing egg nuggets
US7713571B2 (en) 2004-03-15 2010-05-11 Michael Foods, Inc. Egg nuggets
WO2005094609A1 (en) * 2004-03-30 2005-10-13 Brand Base Pty Ltd Edible composition and packaging
TWI274587B (en) * 2004-05-03 2007-03-01 Life Spring Biotech Co Ltd Complex face mask and methods of preparation thereof
US20050255148A1 (en) * 2004-05-17 2005-11-17 Puma Robert W Treat for administering medication to animals or pets
US20050276882A1 (en) * 2004-06-11 2005-12-15 Bishop William W Pet food, pet food pellets and process for making same
US20060008511A1 (en) * 2004-07-08 2006-01-12 Jhy-Jhu Lin Probiotic products for pet applications
US7935334B2 (en) * 2005-07-07 2011-05-03 Imagilin Technologies, LLC Probiotics as alternative medicines against infectious diseases
WO2006036797A1 (en) * 2004-09-27 2006-04-06 Nestec S.A. More appealing pet food products and their methods of preparation
US7318920B2 (en) * 2004-09-27 2008-01-15 Ez-Med Company Low water activity nutritional product having beneficial microbial and high oil content
US8182855B2 (en) * 2004-11-22 2012-05-22 T.F.H. Publications, Inc. Fish food containing fermented soyfood
US7332188B2 (en) * 2004-11-22 2008-02-19 T.F.H. Publications, Inc. Animal chew containing fermented soyfood
US20090176864A1 (en) * 2004-11-24 2009-07-09 Hill's Pet Nutrition, Inc. Methods For Improving Hepatic and Immune Function In An Animal
RU2432159C2 (en) * 2004-11-24 2011-10-27 Хилл'С Пет Ньютришн, Инк. Methods for improving xenobiotic deactivation by liver in animals
US8535708B2 (en) 2004-12-29 2013-09-17 Hill's Pet Nutrition, Inc. Methods for inhibiting a decline in learning and/or memory in animals
CN102907561A (en) * 2004-12-30 2013-02-06 希尔氏宠物营养品公司 Methods for enhancing the quality of life of a senior animal
US8252742B2 (en) * 2004-12-30 2012-08-28 Hill's Pet Nutrition, Inc. Methods for enhancing the quality of life of a senior animal
DE102005008025A1 (en) * 2005-02-22 2006-08-31 Daimlerchrysler Ag Method for monitoring pressure of vehicle tires involves recording actual kilometrage value on recognition of activation event and storing together with given information
US20060228448A1 (en) 2005-04-11 2006-10-12 The Iams Company Pet food compositions comprising two components
BRPI0501477B1 (en) * 2005-04-15 2014-08-05 Total Alimentos S A Animal feed with added external and internal palatability enhancing product
AU2006247503B2 (en) 2005-05-13 2010-11-18 Hill's Pet Nutrition, Inc. Dry food compositions having enhanced palatability
CN101193630A (en) * 2005-05-16 2008-06-04 Afb国际有限公司 Hypoallergenic flavor compositions, and methods of managing allergic reactions in pets
WO2006128110A2 (en) * 2005-05-27 2006-11-30 Del Monte Corporation Intermittent flow extrusion process and food product
AR052472A1 (en) 2005-05-31 2007-03-21 Iams Company PROBIOTIC LACTOBACILOS FOR FELINOS
CA2607949C (en) 2005-05-31 2012-09-25 Thomas William-Maxwell Boileau Feline probiotic bifidobacteria
WO2006130738A2 (en) * 2005-06-01 2006-12-07 Hill's Pet Nutrition, Inc. Methods for enhancing palatability of compositions for animal consumption
DK1906912T3 (en) * 2005-07-14 2012-12-03 Hills Pet Nutrition Inc Method of Extending the Life of an Animal
US7651708B2 (en) 2005-07-22 2010-01-26 Mars, Inc. Method of producing an animal food product with a core and shell
DE102005034568A1 (en) * 2005-07-22 2007-02-01 Mars Inc. Animal feed with core and shell
US20130022577A1 (en) * 2005-09-27 2013-01-24 Cobb & Associates Probiotic compositions useful for treatment of bipolar disorder
WO2007038466A2 (en) * 2005-09-27 2007-04-05 Cobb & Company Treatment of bipolar disorder utilizing anti-fungal compositions
ATE474585T1 (en) * 2005-10-06 2010-08-15 Nestec Sa PROBIOTIC ENTEROCOCCIES FOR IMPROVED IMMUNITY
US20070280964A1 (en) * 2005-10-06 2007-12-06 Ruth Knorr Compositions and methods useful for modulating immunity, enhancing vaccine efficacy, decreasing morbidity associated with chronic FHV-1 infections, and preventing or treating conjunctivitis
EP2197300A4 (en) * 2005-11-28 2010-09-08 Jorrocks Pty Ltd Low temperature forming of feeds
US8124156B2 (en) * 2006-03-10 2012-02-28 T.F.H. Publications, Inc. Processes for forming multi-layered pet treats
US7691426B2 (en) 2006-06-09 2010-04-06 T.F.H. Publications, Inc. Animal chew combining edible resin and rawhide
EP2034852A4 (en) * 2006-07-05 2010-06-23 Mars Inc Pet food product with flavouring
WO2008019887A2 (en) * 2006-08-18 2008-02-21 Organobalance Gmbh Probiotic microorganisms for the reduction of manure odor
JP2010512162A (en) * 2006-12-22 2010-04-22 ヅク シク イ Fermented feed for livestock production using lactic acid bacteria and yeast and method for producing the same
MX2009007700A (en) * 2007-01-19 2009-07-29 Iams Company Composition and method of stabilized sensitive ingredient.
EP2124608A2 (en) * 2007-01-19 2009-12-02 The Iams Company Composition and method of stabilized sensitive ingredient
JP2010517512A (en) * 2007-01-19 2010-05-27 ザ アイムス カンパニー Stabilized composition of sensitive component and method for stabilizing sensitive component
EP2124605A2 (en) * 2007-01-19 2009-12-02 The Iams Company Composition and method of stabilized sensitive ingredient
US20080254166A1 (en) * 2007-01-25 2008-10-16 Potter Susan M Food Additives Containing Combinations of Prebiotics and Probiotics
AU2008211600B8 (en) 2007-02-01 2014-02-13 Mars, Incorporated Method for decreasing inflammation and stress in a mammal using glucose antimetabolites, avocado or avocado extracts
US20080206405A1 (en) * 2007-02-22 2008-08-28 T.F.H. Publications, Inc. Pet Treat Containing Organic Nutrients
ITPD20070274A1 (en) * 2007-08-08 2009-02-09 Sanypet S P A CROCCHETTA FOR ANIMALS AND METHOD FOR ITS PRODUCTION
US20090087521A1 (en) * 2007-09-28 2009-04-02 Belanger Michael E Particulate filled edible product and process for making
WO2009055457A1 (en) * 2007-10-24 2009-04-30 The Promotion In Motion Companies, Inc. Fruit snack with probiotics and method of manufacturing a fruit snack with probiotics
RU2492695C2 (en) * 2008-02-27 2013-09-20 КРАФТ ФУДЗ ГЛОБАЛ БРЭНДЗ ЭлЭлСи Multizonal confectionary product
US20090235872A1 (en) * 2008-03-19 2009-09-24 Nevenka Filipi Increased occupancy time pet chews
JP2011524165A (en) * 2008-06-03 2011-09-01 ネステク ソシエテ アノニム Taste improving agent and method for improving taste
US9771199B2 (en) 2008-07-07 2017-09-26 Mars, Incorporated Probiotic supplement, process for making, and packaging
US20090324780A1 (en) 2008-06-27 2009-12-31 Mars, Incorporated Dimpled Food Product
WO2009157950A1 (en) 2008-06-27 2009-12-30 Mars, Incorporated Dimpled food product
US9232813B2 (en) * 2008-07-07 2016-01-12 The Iams Company Probiotic supplement, process for making, and packaging
US8945643B2 (en) 2008-08-21 2015-02-03 The Hillshire Brands, Company System and method for forming a multi-layer extruded food product
US8679564B2 (en) * 2009-09-11 2014-03-25 Mars, Incorporated Pet food product bandolier
EP2483374A4 (en) * 2009-09-29 2015-01-07 Phillips 66 Co Pretreatment of oils and/or fats
US20110076363A1 (en) * 2009-09-30 2011-03-31 Crosswind Industries, Inc. Co-extruded dual texture food product
EP2523566B1 (en) * 2010-01-12 2018-08-29 Mars, Incorporated Multi-component pet food comprising solid component formed by compression tableting
GB201004895D0 (en) * 2010-03-23 2010-05-05 Cadbury Uk Ltd Consumables and methods of production thereof
WO2011134494A1 (en) 2010-04-26 2011-11-03 Mark & Chappell Limited A dual component food product and method for the production thereof
CN101878853A (en) * 2010-06-22 2010-11-10 上海嘉邑进出口有限公司 Preparation method of freeze-dried mixed food and products thereof
BR112013007875A2 (en) 2010-09-30 2016-06-14 Nestec Sa multi-textured pet treats
WO2012044940A2 (en) 2010-10-01 2012-04-05 Sara Lee Corporation Systems and methods for providing a food product with additives
EP2452576A1 (en) 2010-11-11 2012-05-16 Nestec S.A. Extruded non-replicating probiotic micro-organisms and their health benefits
CN103813719B (en) * 2011-08-15 2017-06-13 雀巢产品技术援助有限公司 Many quality animal dessert
WO2013048659A1 (en) * 2011-09-29 2013-04-04 Nestec S.A. Chewy food compositions
WO2013094575A1 (en) * 2011-12-21 2013-06-27 ユニ・チャーム株式会社 Pet food
CA2870530C (en) 2012-04-17 2021-08-03 Big Heart Pet Brands Appetizing and dentally efficacious animal chews
US9737053B2 (en) 2012-04-17 2017-08-22 Big Heart Pet, Inc. Methods for making appetizing and dentally efficacious animal chews
USD699416S1 (en) 2012-04-17 2014-02-18 Del Monte Corporation Pet treat
US20130295227A1 (en) * 2012-05-01 2013-11-07 Robbert H. ter Haar Composition Comprising a Sensitive Ingredient
US9380804B2 (en) 2012-07-12 2016-07-05 The Hillshire Brands Company Systems and methods for food product extrusion
JP6353848B2 (en) * 2012-12-04 2018-07-04 ネステク ソシエテ アノニム Ravioli analogues and methods for producing such analogues
CN103070316B (en) * 2013-02-06 2014-04-23 烟台中宠食品有限公司 Pizza for pet and manufacturing method thereof
US9357750B2 (en) * 2013-02-19 2016-06-07 R2P Group, Inc. Pet chew toy
WO2014143539A1 (en) 2013-03-15 2014-09-18 The Iams Company Composition and method for preventing, reducing, alleviating, or treating idiopathic vomiting
EP2968430A1 (en) 2013-03-15 2016-01-20 The Iams Company Composition and method for preventing, reducing, alleviating or treating idiopathic vomiting
WO2014184246A1 (en) * 2013-05-14 2014-11-20 Mars, Incorporated Joint care composition
USD739991S1 (en) * 2013-06-30 2015-10-06 Fusion Gourmet, Inc. Pillow shaped cookie with filling
JP6584740B2 (en) * 2013-07-01 2019-10-02 ユニ・チャーム株式会社 Pet food and method for producing pet food
CN103380871A (en) * 2013-07-31 2013-11-06 常熟市汇康食品厂 Food for improving vitality
CA2927360C (en) 2013-10-25 2023-04-18 Nch Corporation Delivery system and probiotic composition for animals and plants
JP6371388B2 (en) 2013-11-05 2018-08-08 ヒルズ・ペット・ニュートリシャン・インコーポレーテッド Pet food containing visible particles and method for producing the same
ES2925744T3 (en) * 2013-12-18 2022-10-19 Specialites Pet Food Palatability enhancers for pet food, preparation method and uses thereof
RU2654646C1 (en) * 2014-05-15 2018-05-21 Спесиалите Пет Фуд Flavor enhancers containing amino agents and carbonyl compounds for use in food for cats
US10766799B2 (en) 2014-05-23 2020-09-08 Nch Corporation Method for improving quality of aquaculture pond water using a nutrient germinant composition and spore incubation method
BR112016027198B1 (en) 2014-05-23 2019-08-20 Nch Corporation METHOD FOR TREATING WATER USED IN AN AQUACULTURE APPLICATION
CN106659191B (en) * 2014-07-30 2020-11-13 雀巢产品有限公司 Device and method for packaging a filling in a food product
US11427839B2 (en) 2014-08-29 2022-08-30 Lee Tech Llc Yeast stage tank incorporated fermentation system and method
US11680278B2 (en) 2014-08-29 2023-06-20 Lee Tech Llc Yeast stage tank incorporated fermentation system and method
AT14650U1 (en) * 2014-10-14 2016-03-15 Adolf Rupp Og Multicomponent pet food composition
US9844930B2 (en) * 2014-11-05 2017-12-19 Xerox Corporation 3D printing of digestible shells for medicaments
JP5733709B1 (en) * 2014-11-18 2015-06-10 ユニ・チャーム株式会社 Pet food for cats and method for producing the same
USD751266S1 (en) 2014-12-29 2016-03-15 Big Heart Pet Brands Pet chew
AU2016219070B2 (en) 2015-02-13 2020-06-11 Mars, Incorporated Pet food feeding system
WO2016133909A1 (en) 2015-02-16 2016-08-25 Mars, Incorporated Interlocking kibble
USD784650S1 (en) * 2015-03-19 2017-04-25 General Mills, Inc. Pizza product
CN107529789A (en) 2015-04-28 2018-01-02 马斯公司 The method for preparing sterilizing wet pet foodstuffs
MX2017014203A (en) 2015-05-16 2018-03-28 Big Heart Pet Inc Palatable expanded food products and methods of manufacture thereof.
JP6641126B2 (en) * 2015-08-31 2020-02-05 ユニ・チャーム株式会社 Pet food and manufacturing method thereof
GB201522304D0 (en) 2015-12-17 2016-02-03 Mars Inc Food product for reducing muscle breakdown
JP7100583B2 (en) 2016-02-22 2022-07-13 マース インコーポレーテッド Pet food
US11166478B2 (en) 2016-06-20 2021-11-09 Lee Tech Llc Method of making animal feeds from whole stillage
US11179426B2 (en) * 2016-12-29 2021-11-23 Kibow Biotech, Inc. Composition and method for maintaining healthy kidney function
CN107173595A (en) * 2017-05-09 2017-09-19 山东海创工贸有限公司 A kind of sandwich fat of pets and preparation method thereof
CN110996920A (en) 2017-07-26 2020-04-10 太杰先软嚼有限责任公司 Starch-free soft chews for veterinary applications
USD874786S1 (en) 2017-08-07 2020-02-11 Intercontinental Great Brands Llc Food product
USD897627S1 (en) * 2018-03-23 2020-10-06 Daniel Lee Folded food product
USD851356S1 (en) * 2018-04-02 2019-06-18 Giorgio Giorgis Article of food
CN108618127A (en) * 2018-04-16 2018-10-09 朱娜玲 A kind of full nutritional factors oral solution and preparation method thereof
JP7229675B2 (en) 2018-05-18 2023-02-28 ユニ・チャーム株式会社 Pet food, granular pet food, and method for producing pet food
US20220053796A1 (en) * 2018-06-14 2022-02-24 Mars, Incorporated Composition for supporting animal with cancer
US11401500B2 (en) 2018-08-29 2022-08-02 Nch Corporation System, method, and composition for incubating spores for use in aquaculture, agriculture, wastewater, and environmental remediation applications
US11388909B2 (en) 2018-10-02 2022-07-19 Pure Nature Foods, LLC Apparatus and method for post-extrusion filling and closure of an extrudate
JP7164420B2 (en) * 2018-12-07 2022-11-01 ユニ・チャーム株式会社 Manufacturing method of pet food
USD880807S1 (en) 2018-12-11 2020-04-14 Mars, Incorporated Pet treat
USD880809S1 (en) 2018-12-11 2020-04-14 Mars, Incorporated Pet treat
USD880808S1 (en) 2018-12-11 2020-04-14 Mars, Incorporated Pet treat
US11375727B2 (en) * 2019-07-09 2022-07-05 Intercontinental Great Brands Llc Heat tolerant filling base for high temperature, high-pressure cooking co-extrusion
US11766051B1 (en) 2019-07-17 2023-09-26 Hawley Blake Edible pet chew with thermo-processed shell and cold-formed filling
US11653690B2 (en) 2019-08-29 2023-05-23 Big Heart Pet, Inc. Dual textured animal food product and methods of manufacture thereof
CN117082971A (en) 2021-01-22 2023-11-17 李科技有限公司 System and method for improving corn wet milling and dry milling process

Citations (97)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3119691A (en) * 1962-04-23 1964-01-28 Gen Foods Corp Novel farinaceous animal food
US3467525A (en) * 1964-12-14 1969-09-16 Ralston Purina Co Process for making an animal food
US3530491A (en) * 1968-06-24 1970-09-22 Pillsbury Co Apparatus for forming food pieces
US3615675A (en) * 1967-07-31 1971-10-26 Frito Lay Inc Method for making center-filled puffed food product
US3764715A (en) * 1972-02-04 1973-10-09 Quaker Oats Co Method of simultaneously extruding and coating a ready-to-eat cereal
US3808341A (en) * 1971-11-15 1974-04-30 Kal Kan Foods Food product
US3808340A (en) * 1971-07-12 1974-04-30 Kal Kan Foods Meat coated product
US3908025A (en) * 1972-09-21 1975-09-23 Ralston Purina Co Pet food product and method for forming same
US3916029A (en) * 1972-08-04 1975-10-28 Campbell Soup Co Centerfilled pet food composition
US3950551A (en) * 1974-10-31 1976-04-13 Food Technology, Inc. Composite sugar syrup article and process
US3976799A (en) * 1970-07-16 1976-08-24 Kelly Jr William H Method for making carnivore food
US4006266A (en) * 1975-10-08 1977-02-01 The Quaker Oats Company Process for making a dry pet food having a hard component and a soft component
US4020187A (en) * 1974-12-09 1977-04-26 Theracon, Inc. Method of producing dry pet food
US4025260A (en) * 1974-06-03 1977-05-24 Beatrice Foods Co. Food extrusion device
US4032665A (en) * 1973-09-10 1977-06-28 Ralston Purina Company Simulated bone
US4104407A (en) * 1973-03-02 1978-08-01 General Foods Corporation Expanded animal food coated with dextrin and fat
US4104406A (en) * 1973-03-02 1978-08-01 General Foods Corporation Coated expanded animal food
US4162333A (en) * 1978-08-03 1979-07-24 Mars Incorporated Method and apparatus for making filled food product
US4190679A (en) * 1977-04-26 1980-02-26 General Foods Corporation Meaty textured pet food
US4209536A (en) * 1977-09-21 1980-06-24 P. Ferrero & C. S.p.A Filled food product and method of making same
US4211797A (en) * 1977-12-29 1980-07-08 General Foods Corporation Dry dog food of improved palatability
US4229485A (en) * 1978-07-25 1980-10-21 Jerky Treats, Inc. Glazed liver coated biscuit or kibble for pets
US4251201A (en) * 1978-09-18 1981-02-17 Krysiak Janusz D Extrusion apparatus
US4260635A (en) * 1974-12-18 1981-04-07 Fisher Stanton E Unitized animal food system product
US4266920A (en) * 1975-03-10 1981-05-12 Rheon Automatic Machinery Co., Ltd. Apparatus for continuously manufacturing multi-layered dough materials
US4273788A (en) * 1979-10-19 1981-06-16 The Quaker Oats Company Bulk packaged mixture of hard and soft pet foods
US4310558A (en) * 1980-01-21 1982-01-12 Ralston Purina Company Extruded fiber mixture pet food
US4330562A (en) * 1979-12-31 1982-05-18 Chb Foods, Inc. Intermediate moisture stabilized chunky food product and method
US4391829A (en) * 1981-08-13 1983-07-05 General Foods Corporation Dual enzyme digestion for a dog food of improved palatability
US4455333A (en) * 1979-12-26 1984-06-19 The Procter & Gamble Company Doughs and cookies providing storage-stable texture variability
US4469475A (en) * 1983-07-01 1984-09-04 Krysiak Dobroslaw J Machinery for making encrusted food products
US4503080A (en) * 1982-07-08 1985-03-05 The Procter & Gamble Company Doughs and cookies providing storage-stable texture variability
US4508741A (en) * 1982-09-15 1985-04-02 Star-Kist Foods, Inc. Coated pet food and process for preparation thereof
US4569848A (en) * 1984-02-02 1986-02-11 Perugina S.P.A. Confectionary product and process for producing the same
US4574690A (en) * 1984-07-13 1986-03-11 Chiao Tsu T Apparatus for forming wrapped food products
US4596714A (en) * 1983-11-17 1986-06-24 The Procter & Gamble Company Process for making a baked filled snack product
US4610884A (en) * 1984-06-29 1986-09-09 The Procter & Gamble Company Confectionery cremes
US4643908A (en) * 1984-06-19 1987-02-17 Pacific Kenyon Corp. Soft, moist pet food
US4647467A (en) * 1985-09-30 1987-03-03 Nabisco Brands, Inc. Apparatus and process for coextruding a fat and a dough
US4648821A (en) * 1984-08-31 1987-03-10 Nabisco Brands, Inc. Apparatus for co-extrusion of a dough mass having dissimilar inner and outer portions
US4661360A (en) * 1983-11-17 1987-04-28 The Procter & Gamble Company Filled snack product having a hydrophilically coated filling
US4689238A (en) * 1984-10-18 1987-08-25 Frito-Lay, Inc. Composite food product
US4735808A (en) * 1985-04-16 1988-04-05 Nabisco Brands, Inc. Dietetic dog biscuits containing vegetable hulls
US4743459A (en) * 1984-05-29 1988-05-10 Nabisco Brands, Inc. Canine biscuit containing discrete meat and/or meat by-product particles and method for making same
US4743458A (en) * 1984-05-29 1988-05-10 Nabisco Brands, Inc. Soft canine biscuit containing discrete meat and/or meat by-product particles and method for making same
US4743460A (en) * 1983-11-07 1988-05-10 Nabisco Brands, Inc. Soft canine biscuit containing discrete particles of meat and other materials and method for making same
US4743461A (en) * 1982-01-22 1988-05-10 Nabisco Brands, Inc. Canine biscuit containing discrete particles of meat and other materials and method for making same
US4748031A (en) * 1985-04-17 1988-05-31 Nabisco Brands, Inc. Method of triple co-extruding bakeable products
US4752488A (en) * 1984-12-31 1988-06-21 Torahiko Hayashi Method of injecting viscous fluid into bread or confectionery
US4752484A (en) * 1986-12-23 1988-06-21 The Procter & Gamble Company Dual-textured cookie products containing a unique saccharide mixture
US4762723A (en) * 1986-06-24 1988-08-09 Nabisco Brands, Inc. Process for making coextruded filled cookies
US4795655A (en) * 1984-02-08 1989-01-03 Nabisco Brands, Inc. Simulated egg treats for pets
US4819342A (en) * 1987-11-18 1989-04-11 Showa Denko Kabushiki Kaisha Water absorption controlled dehydrating device
US4824684A (en) * 1986-09-25 1989-04-25 Frito-Lay, Inc. High solids filling material and comestible product
US4847098A (en) * 1988-03-18 1989-07-11 General Mills, Inc. Dual textured food piece of enhanced stability
US4853236A (en) * 1988-03-18 1989-08-01 General Mills, Inc. Dual textured food piece of enhanced stability
US4900572A (en) * 1987-08-28 1990-02-13 Quaker Oats Company Multi-orifice coextrusion method
US4919947A (en) * 1986-09-25 1990-04-24 Frito-Lay, Inc. High solids filling material and comestible product
US4954061A (en) * 1987-08-28 1990-09-04 The Quaker Oats Company Multi-orifice coextrusion apparatus
US5120554A (en) * 1989-12-28 1992-06-09 Nestec S.A. Method for producing extruded center filled products
US5124161A (en) * 1989-06-07 1992-06-23 Nabisco Brands, Inc. Filled, microwave expandable snack food product and method and apparatus for its production
US5137737A (en) * 1990-09-14 1992-08-11 Kraft General Foods, Inc. Shelf-stable, filled pasta products
US5145699A (en) * 1989-10-02 1992-09-08 Van Den Bergh Foods Co., Division Of Conopco Inc. Food product
US5185167A (en) * 1990-04-06 1993-02-09 Janet Schwartz Method of making a stuffed pretzel dough product and completed stuffed pretzel product
US5194283A (en) * 1988-09-15 1993-03-16 Nestec S.A. Process for the manufacture of composite cheese and product thereof
US5198257A (en) * 1990-11-26 1993-03-30 Nestec S.A. Cutting coextruded thermoplastic food products
US5198239A (en) * 1991-07-08 1993-03-30 Beavers Charles T Apparatus for co-extruding two food products
US5200212A (en) * 1990-05-10 1993-04-06 Axelrod Herbert R Dog chew with modifiable texture
US5208059A (en) * 1990-12-10 1993-05-04 General Mills, Inc. Dual textured food piece fabrication method
US5223292A (en) * 1984-11-09 1993-06-29 Nabisco, Inc. Method and dough compositions for making shelf-stable soft or chewy cookies
US5227190A (en) * 1991-10-16 1993-07-13 Tomorrow Valley Cooperative Services Livestock feed
US5312633A (en) * 1990-04-06 1994-05-17 Janet Schwartz Method of making a stuffed pretzel dough product and completed stuffed pretzel product
US5405625A (en) * 1993-07-21 1995-04-11 Nabisco, Inc. Cheese-filled snack
US5435714A (en) * 1991-11-27 1995-07-25 Nabisco, Inc. Apparatus for the production of three-dimensional food products
US5449281A (en) * 1993-10-08 1995-09-12 Nestec S.A. Apparatus for preparing shaped co-extruded products
US5492706A (en) * 1991-08-15 1996-02-20 Unilever Patent Holdings B.V. Method and apparatus for manufacturing coextruded food products
US5501868A (en) * 1993-09-21 1996-03-26 Colgate Palmolive Company Extruded dog treat food product having improved resistance to breakage
US5514388A (en) * 1994-08-31 1996-05-07 Rohwer; Gary L. Encapsulated lipid-containing feed
US5635237A (en) * 1995-01-31 1997-06-03 Rawhide Select Method of manufacturing substantially pure rawhide pet products
US5641527A (en) * 1991-12-31 1997-06-24 Burger; Alvin Process of making filled boiled bagel product
US5641529A (en) * 1995-03-15 1997-06-24 The Quaker Oats Company Extrusion apparatus and method for producing three-dimensional shapes
US5643623A (en) * 1995-06-07 1997-07-01 Mars Incorporated Health food product and its uses
US5654021A (en) * 1991-12-31 1997-08-05 Burger; Alvin Process for preparing a filled steamed bagel product
US5670185A (en) * 1994-09-29 1997-09-23 Nestec S.A. Die assembly for extruding edible substances
US5731029A (en) * 1995-07-26 1998-03-24 Nabisco Technology Company Method for making jerky products
US5750170A (en) * 1994-07-23 1998-05-12 Nestec S.A. Process for providing filled, extruded dough products
US5773070A (en) * 1996-04-09 1998-06-30 Mjm Technologies Method of forming a semi-moist jerky or leathery pet foods or treats
US5795603A (en) * 1991-12-31 1998-08-18 Burger; Alvin Process for forming a filled torroidal bagel product
US5891502A (en) * 1996-06-30 1999-04-06 Nestec S.A. Process for the preparation of a foodstuff by extrusion
US5897895A (en) * 1994-11-17 1999-04-27 Lettieri's Inc. Method for making extruded mounted food product
US5906838A (en) * 1993-12-13 1999-05-25 The Quaker Oats Company Symmetrical flow extrusion manifold
US5919451A (en) * 1996-07-22 1999-07-06 Wisconsin Alumni Research Foundation Method of improving the growth or the efficiency of feed conversion of an animal and compositions for use therein
US5932258A (en) * 1998-04-06 1999-08-03 The Iams Company Composition and process for improving glucose metabolism in companion animals
US6060101A (en) * 1994-09-02 2000-05-09 Designing Health, Inc. Dietary food supplement
US6086939A (en) * 1995-06-20 2000-07-11 Nestec S.A. Preparation of dry, lamellar-structure food product
US6089845A (en) * 1991-12-28 2000-07-18 Devro Plc Apparatus for co-extruded collagen coated foodstuffs
US6268007B1 (en) * 1999-09-22 2001-07-31 Nestec S.A. Process for the manufacture of a composite consumable product by double extrusion

Family Cites Families (34)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3480445A (en) 1965-10-21 1969-11-25 Kellog Co Method and means for making a composite food product
US3541946A (en) 1968-05-13 1970-11-24 Quaker Oats Co Apparatus for continuously producing a center filled puffed cereal product
GB1253104A (en) 1968-05-13 1971-11-10
US3778209A (en) 1971-12-16 1973-12-11 Dan Morrison Meat Pies Inc Extruder for food products such as tamales
CA1030385A (en) 1974-03-25 1978-05-02 Alexander Balaz Centerfilled pet food product
US3922353A (en) * 1974-03-25 1975-11-25 Quaker Oats Co Shelf stable, high moisture, filled food product
US4364925A (en) * 1974-12-18 1982-12-21 Fisher Stanton E Unitized animal food system product
JPS51104082A (en) 1975-03-10 1976-09-14 Rheon Automatic Machinery Co Tasokijino seizosochioyobihoho
NL7507482A (en) 1975-06-23 1976-12-27 Quaker Oats Co Domestic animal foodstuff having moist filling - and extruded cereal coating for storage-stability
EP0071331A3 (en) 1981-07-29 1983-07-06 Ralston Purina Company A process for preparing a soft moist food product
DE3364233D1 (en) * 1982-03-05 1986-07-31 Quaker France Animal foodstuff
JPS5951692A (en) 1982-09-18 1984-03-26 Ricoh Co Ltd Color encoder
JPS59200296A (en) 1983-04-28 1984-11-13 防衛庁技術研究本部長 Underwater sound absorbing body
US4882185A (en) 1983-06-24 1989-11-21 Nabisco Brands, Inc. Method and apparatus for severing a coextrusion for making an enrobed food piece
US4873096A (en) * 1987-01-05 1989-10-10 Nabisco Brands, Inc. Simulated egg treats for pets
US4777058A (en) * 1985-02-11 1988-10-11 Star-Kist Foods, Inc. Composite animal food
DK153042C (en) * 1985-11-04 1989-01-02 Novo Industri As KAELEDYRSFODER
US4698004A (en) 1986-03-05 1987-10-06 Nabisco Brands, Inc. Nozzle for extrusion
US4888192A (en) 1986-03-05 1989-12-19 Nabisco Brands, Inc. Method for extrusion of baked goods
GB2194125A (en) 1986-08-26 1988-03-02 Mars G B Ltd Co-extruded semi-moist food product
US4975288A (en) 1987-12-08 1990-12-04 Warner-Lambert Company Method for making center-filled chewing gum
NO882653D0 (en) 1988-06-15 1988-06-15 Apothekernes Lab DOSAGE FORM.
US5069921A (en) 1990-06-25 1991-12-03 Madanat Edward A Method of preparing an encrusted food product
US6001400A (en) 1991-12-31 1999-12-14 Burger; Alvin Process for producing combination cream cheese and bagel dough product
ATE147943T1 (en) * 1992-03-02 1997-02-15 Nestle Sa METHOD FOR PRODUCING BONE-SHAPED DOG FOOD
US5366750A (en) 1993-01-13 1994-11-22 Crompton & Knowles Corporation Thermostable edible composition having ultra-low water activity
US5695797A (en) * 1993-10-08 1997-12-09 Nestec S.A. Coextruded pet food product
ZA947020B (en) * 1993-10-08 1995-05-02 Nestle Sa A process and an arrangement for the production of a co-extruded product and the product obtained
JP2894946B2 (en) 1994-04-01 1999-05-24 株式会社ロッテ Pretzel and method for producing the same
JP3613353B2 (en) * 1995-04-17 2005-01-26 日本水産株式会社 Fish feed processed using an extruder
US5686128A (en) 1995-08-31 1997-11-11 Nabisco Technology Company Apparatus and method for triple co-extruding a snack product
US5587193A (en) 1995-09-12 1996-12-24 Mjm Technologies Process for manufacturing fat-enriched foods
PT862863E (en) * 1997-01-09 2002-04-29 Nestle Sa CEREALIFERO PRODUCT CONTAINING PROBIOTICS
WO1998047385A1 (en) 1997-04-24 1998-10-29 Unilever N.V. Fat emulsions

Patent Citations (100)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3119691A (en) * 1962-04-23 1964-01-28 Gen Foods Corp Novel farinaceous animal food
US3467525A (en) * 1964-12-14 1969-09-16 Ralston Purina Co Process for making an animal food
US3615675A (en) * 1967-07-31 1971-10-26 Frito Lay Inc Method for making center-filled puffed food product
US3530491A (en) * 1968-06-24 1970-09-22 Pillsbury Co Apparatus for forming food pieces
US3976799A (en) * 1970-07-16 1976-08-24 Kelly Jr William H Method for making carnivore food
US3808340B1 (en) * 1971-07-12 1984-03-20
US3808340A (en) * 1971-07-12 1974-04-30 Kal Kan Foods Meat coated product
US3808341A (en) * 1971-11-15 1974-04-30 Kal Kan Foods Food product
US3764715A (en) * 1972-02-04 1973-10-09 Quaker Oats Co Method of simultaneously extruding and coating a ready-to-eat cereal
US3916029A (en) * 1972-08-04 1975-10-28 Campbell Soup Co Centerfilled pet food composition
US3908025A (en) * 1972-09-21 1975-09-23 Ralston Purina Co Pet food product and method for forming same
US4104406A (en) * 1973-03-02 1978-08-01 General Foods Corporation Coated expanded animal food
US4104407A (en) * 1973-03-02 1978-08-01 General Foods Corporation Expanded animal food coated with dextrin and fat
US4032665A (en) * 1973-09-10 1977-06-28 Ralston Purina Company Simulated bone
US4025260A (en) * 1974-06-03 1977-05-24 Beatrice Foods Co. Food extrusion device
US3950551A (en) * 1974-10-31 1976-04-13 Food Technology, Inc. Composite sugar syrup article and process
US4020187A (en) * 1974-12-09 1977-04-26 Theracon, Inc. Method of producing dry pet food
US4260635A (en) * 1974-12-18 1981-04-07 Fisher Stanton E Unitized animal food system product
US4266920A (en) * 1975-03-10 1981-05-12 Rheon Automatic Machinery Co., Ltd. Apparatus for continuously manufacturing multi-layered dough materials
US4006266A (en) * 1975-10-08 1977-02-01 The Quaker Oats Company Process for making a dry pet food having a hard component and a soft component
US4190679A (en) * 1977-04-26 1980-02-26 General Foods Corporation Meaty textured pet food
US4209536A (en) * 1977-09-21 1980-06-24 P. Ferrero & C. S.p.A Filled food product and method of making same
US4211797A (en) * 1977-12-29 1980-07-08 General Foods Corporation Dry dog food of improved palatability
US4229485A (en) * 1978-07-25 1980-10-21 Jerky Treats, Inc. Glazed liver coated biscuit or kibble for pets
US4162333A (en) * 1978-08-03 1979-07-24 Mars Incorporated Method and apparatus for making filled food product
US4251201A (en) * 1978-09-18 1981-02-17 Krysiak Janusz D Extrusion apparatus
US4273788A (en) * 1979-10-19 1981-06-16 The Quaker Oats Company Bulk packaged mixture of hard and soft pet foods
US4455333A (en) * 1979-12-26 1984-06-19 The Procter & Gamble Company Doughs and cookies providing storage-stable texture variability
US4330562A (en) * 1979-12-31 1982-05-18 Chb Foods, Inc. Intermediate moisture stabilized chunky food product and method
US4310558A (en) * 1980-01-21 1982-01-12 Ralston Purina Company Extruded fiber mixture pet food
US4391829A (en) * 1981-08-13 1983-07-05 General Foods Corporation Dual enzyme digestion for a dog food of improved palatability
US4743461A (en) * 1982-01-22 1988-05-10 Nabisco Brands, Inc. Canine biscuit containing discrete particles of meat and other materials and method for making same
US4503080A (en) * 1982-07-08 1985-03-05 The Procter & Gamble Company Doughs and cookies providing storage-stable texture variability
US4508741A (en) * 1982-09-15 1985-04-02 Star-Kist Foods, Inc. Coated pet food and process for preparation thereof
US4469475A (en) * 1983-07-01 1984-09-04 Krysiak Dobroslaw J Machinery for making encrusted food products
US4743460A (en) * 1983-11-07 1988-05-10 Nabisco Brands, Inc. Soft canine biscuit containing discrete particles of meat and other materials and method for making same
US4661360A (en) * 1983-11-17 1987-04-28 The Procter & Gamble Company Filled snack product having a hydrophilically coated filling
US4596714A (en) * 1983-11-17 1986-06-24 The Procter & Gamble Company Process for making a baked filled snack product
US4569848A (en) * 1984-02-02 1986-02-11 Perugina S.P.A. Confectionary product and process for producing the same
US4795655A (en) * 1984-02-08 1989-01-03 Nabisco Brands, Inc. Simulated egg treats for pets
US4743459A (en) * 1984-05-29 1988-05-10 Nabisco Brands, Inc. Canine biscuit containing discrete meat and/or meat by-product particles and method for making same
US4743458A (en) * 1984-05-29 1988-05-10 Nabisco Brands, Inc. Soft canine biscuit containing discrete meat and/or meat by-product particles and method for making same
US4643908A (en) * 1984-06-19 1987-02-17 Pacific Kenyon Corp. Soft, moist pet food
US4610884A (en) * 1984-06-29 1986-09-09 The Procter & Gamble Company Confectionery cremes
US4574690A (en) * 1984-07-13 1986-03-11 Chiao Tsu T Apparatus for forming wrapped food products
US4648821A (en) * 1984-08-31 1987-03-10 Nabisco Brands, Inc. Apparatus for co-extrusion of a dough mass having dissimilar inner and outer portions
US4689238A (en) * 1984-10-18 1987-08-25 Frito-Lay, Inc. Composite food product
US5223292A (en) * 1984-11-09 1993-06-29 Nabisco, Inc. Method and dough compositions for making shelf-stable soft or chewy cookies
US4752488A (en) * 1984-12-31 1988-06-21 Torahiko Hayashi Method of injecting viscous fluid into bread or confectionery
US4735808A (en) * 1985-04-16 1988-04-05 Nabisco Brands, Inc. Dietetic dog biscuits containing vegetable hulls
US4748031A (en) * 1985-04-17 1988-05-31 Nabisco Brands, Inc. Method of triple co-extruding bakeable products
US4647467A (en) * 1985-09-30 1987-03-03 Nabisco Brands, Inc. Apparatus and process for coextruding a fat and a dough
US4762723A (en) * 1986-06-24 1988-08-09 Nabisco Brands, Inc. Process for making coextruded filled cookies
US4824684A (en) * 1986-09-25 1989-04-25 Frito-Lay, Inc. High solids filling material and comestible product
US4919947A (en) * 1986-09-25 1990-04-24 Frito-Lay, Inc. High solids filling material and comestible product
US4752484A (en) * 1986-12-23 1988-06-21 The Procter & Gamble Company Dual-textured cookie products containing a unique saccharide mixture
US4900572A (en) * 1987-08-28 1990-02-13 Quaker Oats Company Multi-orifice coextrusion method
US4954061A (en) * 1987-08-28 1990-09-04 The Quaker Oats Company Multi-orifice coextrusion apparatus
US4819342A (en) * 1987-11-18 1989-04-11 Showa Denko Kabushiki Kaisha Water absorption controlled dehydrating device
US4847098A (en) * 1988-03-18 1989-07-11 General Mills, Inc. Dual textured food piece of enhanced stability
US4853236A (en) * 1988-03-18 1989-08-01 General Mills, Inc. Dual textured food piece of enhanced stability
US5194283A (en) * 1988-09-15 1993-03-16 Nestec S.A. Process for the manufacture of composite cheese and product thereof
US5124161A (en) * 1989-06-07 1992-06-23 Nabisco Brands, Inc. Filled, microwave expandable snack food product and method and apparatus for its production
US5145699A (en) * 1989-10-02 1992-09-08 Van Den Bergh Foods Co., Division Of Conopco Inc. Food product
US5120554A (en) * 1989-12-28 1992-06-09 Nestec S.A. Method for producing extruded center filled products
US5185167A (en) * 1990-04-06 1993-02-09 Janet Schwartz Method of making a stuffed pretzel dough product and completed stuffed pretzel product
US5312633A (en) * 1990-04-06 1994-05-17 Janet Schwartz Method of making a stuffed pretzel dough product and completed stuffed pretzel product
US5200212A (en) * 1990-05-10 1993-04-06 Axelrod Herbert R Dog chew with modifiable texture
US5137737A (en) * 1990-09-14 1992-08-11 Kraft General Foods, Inc. Shelf-stable, filled pasta products
US5198257A (en) * 1990-11-26 1993-03-30 Nestec S.A. Cutting coextruded thermoplastic food products
US5208059A (en) * 1990-12-10 1993-05-04 General Mills, Inc. Dual textured food piece fabrication method
US5198239A (en) * 1991-07-08 1993-03-30 Beavers Charles T Apparatus for co-extruding two food products
US5492706A (en) * 1991-08-15 1996-02-20 Unilever Patent Holdings B.V. Method and apparatus for manufacturing coextruded food products
US5227190A (en) * 1991-10-16 1993-07-13 Tomorrow Valley Cooperative Services Livestock feed
US5435714A (en) * 1991-11-27 1995-07-25 Nabisco, Inc. Apparatus for the production of three-dimensional food products
US6089845A (en) * 1991-12-28 2000-07-18 Devro Plc Apparatus for co-extruded collagen coated foodstuffs
US5654021A (en) * 1991-12-31 1997-08-05 Burger; Alvin Process for preparing a filled steamed bagel product
US5795603A (en) * 1991-12-31 1998-08-18 Burger; Alvin Process for forming a filled torroidal bagel product
US5641527A (en) * 1991-12-31 1997-06-24 Burger; Alvin Process of making filled boiled bagel product
US5405625A (en) * 1993-07-21 1995-04-11 Nabisco, Inc. Cheese-filled snack
US5501868A (en) * 1993-09-21 1996-03-26 Colgate Palmolive Company Extruded dog treat food product having improved resistance to breakage
US5449281A (en) * 1993-10-08 1995-09-12 Nestec S.A. Apparatus for preparing shaped co-extruded products
US5906838A (en) * 1993-12-13 1999-05-25 The Quaker Oats Company Symmetrical flow extrusion manifold
US6280672B2 (en) * 1993-12-13 2001-08-28 The Quaker Oats Company Method of extruding multiple continuous bodies of radially-layered product
US6206678B1 (en) * 1993-12-13 2001-03-27 The Quaker Oats Company Symmetrical flow extrusion manifold
US5750170A (en) * 1994-07-23 1998-05-12 Nestec S.A. Process for providing filled, extruded dough products
US5514388A (en) * 1994-08-31 1996-05-07 Rohwer; Gary L. Encapsulated lipid-containing feed
US6060101A (en) * 1994-09-02 2000-05-09 Designing Health, Inc. Dietary food supplement
US5670185A (en) * 1994-09-29 1997-09-23 Nestec S.A. Die assembly for extruding edible substances
US5897895A (en) * 1994-11-17 1999-04-27 Lettieri's Inc. Method for making extruded mounted food product
US5635237A (en) * 1995-01-31 1997-06-03 Rawhide Select Method of manufacturing substantially pure rawhide pet products
US5641529A (en) * 1995-03-15 1997-06-24 The Quaker Oats Company Extrusion apparatus and method for producing three-dimensional shapes
US5643623A (en) * 1995-06-07 1997-07-01 Mars Incorporated Health food product and its uses
US6086939A (en) * 1995-06-20 2000-07-11 Nestec S.A. Preparation of dry, lamellar-structure food product
US5731029A (en) * 1995-07-26 1998-03-24 Nabisco Technology Company Method for making jerky products
US5773070A (en) * 1996-04-09 1998-06-30 Mjm Technologies Method of forming a semi-moist jerky or leathery pet foods or treats
US5891502A (en) * 1996-06-30 1999-04-06 Nestec S.A. Process for the preparation of a foodstuff by extrusion
US5919451A (en) * 1996-07-22 1999-07-06 Wisconsin Alumni Research Foundation Method of improving the growth or the efficiency of feed conversion of an animal and compositions for use therein
US5932258A (en) * 1998-04-06 1999-08-03 The Iams Company Composition and process for improving glucose metabolism in companion animals
US6268007B1 (en) * 1999-09-22 2001-07-31 Nestec S.A. Process for the manufacture of a composite consumable product by double extrusion

Cited By (24)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050287263A1 (en) * 2001-06-13 2005-12-29 Yaron Mayer Proteinaceous food based on hempseed and/or other plants, that keeps the seed's nutritional value and does not use dangerous ingredients, such as preservatives or coloring.
WO2007079120A3 (en) * 2005-12-28 2007-09-07 Nestec Sa Hollow multi -component food or feed product
US20090110778A1 (en) * 2005-12-28 2009-04-30 Muscroft Colin H Multi-Component Food or Feed Product
US9968117B2 (en) * 2006-11-21 2018-05-15 Spectrum Brands Pet Group, Inc. Edible pet chew
US11712025B2 (en) 2006-11-21 2023-08-01 Petmatrix LLC Edible pet chew made from an edible malleable sheet
US11259500B2 (en) 2006-11-21 2022-03-01 Petmatrix LLC Edible pet chew made from an edible malleable sheet
US20120085296A1 (en) * 2006-11-21 2012-04-12 Petmatrix LLC Edible Pet Chew
US10624317B2 (en) 2006-11-21 2020-04-21 Petmatrix LLC Edible pet chew made from an edible malleable sheet
WO2009151508A1 (en) * 2008-04-29 2009-12-17 Nestec S.A. Rotary forming devices and methods for using such devices
US20110027418A1 (en) * 2009-07-31 2011-02-03 Monika Barbara Horgan Animal Food Having Low Water Activity
US8691303B2 (en) 2009-07-31 2014-04-08 The Iams Company Dusted animal food
US9210945B2 (en) 2009-07-31 2015-12-15 The Iams Company Animal food having low water activity
US20110027416A1 (en) * 2009-07-31 2011-02-03 Gregory Dean Sunvold Dusted Animal Food
US20110027343A1 (en) * 2009-07-31 2011-02-03 Monika Barbara Horgan Animal Food Having Low Water Activity
US11154077B2 (en) 2009-07-31 2021-10-26 Mars, Incorporated Process for dusting animal food
US9173423B2 (en) 2009-07-31 2015-11-03 The Iams Company Animal food kibble with electrostatically adhered dusting
US10104903B2 (en) 2009-07-31 2018-10-23 Mars, Incorporated Animal food and its appearance
US10849338B2 (en) 2009-12-18 2020-12-01 Hills Pet Nutrition, Inc. Pet food compositions including probiotics and methods of manufacture and use thereof
US10212954B2 (en) 2009-12-18 2019-02-26 Colgate-Palmolive Company Pet food compositions including probiotics and methods of manufacture and use thereof
US8993017B2 (en) 2009-12-18 2015-03-31 Hill's Pet Nutrition, Inc. Animal feed compositions and processes for producing
US11510424B2 (en) 2009-12-18 2022-11-29 Hill's Pet Nutrition, Inc. Pet food compositions including probiotics and methods of manufacture and use thereof
US9949500B2 (en) 2015-06-22 2018-04-24 Ridley USA Inc. Consumption-regulated feed block
US9591869B2 (en) 2015-06-22 2017-03-14 Ridley USA Inc. Consumption-regulated feed block
WO2016209397A1 (en) * 2015-06-22 2016-12-29 Ridley USA Inc. Consumption-regulated feed block

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