Hair-removing food for pets and preparation method of hair-removing food
Pet hair-filled foods that controllable release of lubricants and bioactive intestinal coating composite enzymes through low-density microcapsules, solve the problems of unsustainable lubricating effect and poor antistatic effect, achieving smooth hair discharge and improvement of intestinal health.
Patent Information
- Application Number
- CN202510542889.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The lubrication effect of existing pet hairy foods does not last, and fail to effectively combine functional ingredients such as probiotics, prebiotics, and natural digestive enzymes, resulting in incomplete hair removal, which can easily cause intestinal discomfort and hair ball problems. The traditional antistatic ingredients have limited effects.
Low-density microcapsules controllable release lubricants, bioactive intestinal coating complex enzymes and plant-source antistatic components are used to combine cellulose, fat lubricating ingredients, probiotics, prebiotics, natural digestive enzymes and other ingredients to form a pet hairy food. The lubricating effect is extended through microcapsule technology, and the biocoating and antistatic components improve intestinal health.
Significantly improve the smooth discharge of hair, reduce hair ball accumulation, improve intestinal health, and provide long-lasting and effective hair care solutions to ensure overall pet digestion and intestinal health.
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Figure CN120360184A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of pet supplies, and specifically to a pet hair-removing food and a preparation method thereof. Background Art
[0002] With the improvement of pet care awareness, pet health problems have received increasing attention, especially hair health. Many pet owners face problems such as pet hair shedding and hairball accumulation, especially for long-haired pets. Traditional pet hair-removing foods often focus on basic cellulose and lubricating components, such as dietary fiber and vegetable oil, mainly solving the problem of hair excretion by increasing the lubricity of hair and promoting intestinal peristalsis. However, the effects of these foods are often limited to short-term relief, lacking continuous effects, and not fully considering the comprehensive needs of hair health. The hair-removing foods in the prior art often insufficiently maintain intestinal health and fail to effectively combine functional components such as probiotics, prebiotics, and natural digestive enzymes to improve the digestion and absorption effect of the food, thereby reducing the generation of hair accumulation and hairball problems.
[0003] In addition, traditional hair-removing foods usually use conventional antistatic components, but the inhibitory effect on hair static electricity is limited, making it difficult to effectively avoid hair accumulation and hairball formation. In the prior art, the release mode of the lubricating component is also relatively simple and fails to adopt a controlled release technology to extend the effect, resulting in incomplete excretion of pet hair and easily causing problems such as intestinal discomfort and constipation. Summary of the Invention
[0004] In view of the deficiencies of the prior art, the present invention provides a pet hair-removing food and a preparation method thereof to solve the problems raised in the above background art.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] An embodiment of the present invention provides a pet hair-removing food, which includes the following specific components: cellulose component, fat lubricating component, probiotics and prebiotics, natural digestive enzymes, plant extracts, vitamins and minerals, natural vegetable oil;
[0007] The pet hair-removing food further includes additives, and the additives specifically include low-density microcapsule controlled-release lubricants, bioactive intestinal coating composite enzymes, modified polymer hydrated fibers, and plant-derived antistatic components.
[0008] Further optimizing the technical solution, the mass parts of the specific components are as follows:
[0009] The cellulose component is 20-35 parts;
[0010] The fat lubricating component is 10-20 parts;
[0011] Probiotics and prebiotics are 5 - 10 parts;
[0012] Natural digestive enzymes are 3 - 8 parts;
[0013] Plant extracts are 2 - 5 parts;
[0014] Vitamins and minerals are 4 - 10 parts;
[0015] Natural vegetable oils are 5 - 10 parts.
[0016] To further optimize this technical solution, the mass parts of the additives are as follows:
[0017] Low - density microcapsule controlled - release lubricants are 5 - 12 parts;
[0018] Bioactive intestinal coating complex enzymes are 3 - 8 parts;
[0019] Modified polymer hydrated fibers are 4 - 10 parts;
[0020] Plant - derived antistatic components are 3 - 6 parts.
[0021] To further optimize this technical solution, among the specific components:
[0022] The cellulose component is soluble and insoluble dietary fiber;
[0023] The fat lubricating component is chicken fat, fish oil, medium - chain triglycerides, lecithin;
[0024] Probiotics and prebiotics are Lactobacillus acidophilus, Bifidobacterium, fructooligosaccharide, galactooligosaccharide, inulin;
[0025] Natural digestive enzymes are bromelain, papain, trypsin, pectinase;
[0026] Plant extracts are licorice extract, dandelion root extract, aloe powder, curcumin;
[0027] Vitamins and minerals are vitamin A, vitamin E, B - group vitamins, zinc, iron, copper, magnesium;
[0028] Natural vegetable oils are flaxseed oil, olive oil, coconut oil.
[0029] To further optimize this technical solution, among the additives, the low - density microcapsule controlled - release lubricant includes:
[0030] Microcapsules formed by polydextrose and chitosan for coating medium - chain triglycerides or fish oil;
[0031] Microcapsules formed by the composite of sodium alginate and pectin for coating shea butter;
[0032] Microcapsules formed of carboxymethyl cellulose, for coating tocopheryl acetate.
[0033] To further optimize this technical solution, among the additives, the bioactive intestinal coating composite enzyme includes:
[0034] A protein secreted by Bacillus cereus-like, for forming a highly lubricating coating in the pet intestine to reduce the accumulation and retention of hair;
[0035] Acetylated chitosan oligosaccharide, for enhancing the lubricating effect in the intestine and promoting the health of the pet intestine;
[0036] A complex formed by ferulic acid and pectin, for improving intestinal peristalsis ability and reducing hairball accumulation.
[0037] To further optimize this technical solution, among the additives, the modified polymer hydrated fiber includes:
[0038] A complex of hydroxypropyl methyl cellulose and modified polydextrose, for forming a hydrated gel in the intestine;
[0039] Calcium deacetylated alginate, for enhancing the hydration effect and maintaining the humidity in the intestine;
[0040] A complex of oligosaccharide and collagen, for improving the gel strength and hydration effect of the fiber to ensure that the hair can be discharged smoothly.
[0041] To further optimize this technical solution, among the additives, the plant-derived antistatic components include:
[0042] A complex of xanthan gum and flavonoids, for reducing the static charge accumulation of hair in the gastrointestinal tract, preventing hair agglomeration and promoting its dispersion;
[0043] Sodium lauroyl sarcosine, as a mild surfactant, for reducing the static effect of hair and making the hair easier to decompose in the intestine;
[0044] A complex of hydroxycoumarin and glucoside, for binding to the keratin on the hair surface, reducing the adhesiveness of hair and improving the fluidity of hair in the digestive tract.
[0045] A preparation method of a pet hair-removing food, prepared based on the above pet hair-removing food, including the following steps:
[0046] S1. Sufficiently mix the cellulose component and the fat lubricating component;
[0047] S2. Add probiotics and prebiotics;
[0048] S3. Add natural digestive enzymes and vitamins and minerals;
[0049] S4. Add plant-derived antistatic components;
[0050] S5. Add low-density microcapsule controlled-release lubricants;
[0051] S6. Add bioactive intestinal coating complex enzymes;
[0052] S7. Add plant extracts and modified polymer hydrated fibers;
[0053] S8. Mold the final mixture and package it into different forms of pet hairball-dissolving foods as needed;
[0054] S9. Conduct multiple evaluation tests on the prepared pet hairball-dissolving foods.
[0055] To further optimize this technical solution, in step S9, the evaluation tests include hair excretion effect tests, digestion and absorption effect tests, hairball formation frequency tests, hair health assessment, food safety assessment, and flavor acceptance tests.
[0056] Compared with the prior art, the present invention provides a pet hairball-dissolving food and its preparation method, having the following beneficial effects:
[0057] This pet hairball-dissolving food and its preparation method provide a more comprehensive and continuously effective pet hairball-dissolving food by introducing various additives. In particular, the use of the low-density microcapsule technology enables the lubricating components to be slowly released in the pet's intestine, thereby achieving a longer lubricating effect and significantly improving the smooth excretion of hair. In addition, the added bioactive intestinal coating complex enzymes and plant-derived antistatic components further enhance the intestinal health condition and hair excretion effect, reducing the occurrence of hairball accumulation. This food can fundamentally improve the pet's hair health, reduce the hairball problem, and improve the overall digestion and intestinal health of the pet, providing a more durable and efficient care solution for the pet. BRIEF DESCRIPTION OF THE DRAWINGS
[0058] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0059] Figure 1 It is a schematic diagram of the composition of a pet hairball-dissolving food proposed by the present invention;
[0060] Figure 2 It is a schematic flow diagram of the preparation method of a pet hairball-dissolving food proposed by the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0061] To make the above objects, features, and advantages of the present invention more apparent and understandable, the following provides a detailed description of the specific embodiments of the present invention in conjunction with the accompanying drawings of the specification.
[0062] In the following description, many specific details are set forth to facilitate a thorough understanding of the present invention. However, the present invention may be implemented in other ways different from those described herein. Those skilled in the art can make similar generalizations without departing from the essence of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.
[0063] Secondly, the so-called "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The appearances of "in one embodiment" in different places in this specification do not all refer to the same embodiment, nor are they separate or selectively exclusive embodiments from other embodiments.
[0064] Embodiment 1:
[0065] Referring to Figure 1 , this is the first embodiment of the present invention. This embodiment provides a pet hairball food, which includes the following specific components: cellulose component, fat lubricating component, probiotics and prebiotics, natural digestive enzymes, plant extracts, vitamins and minerals, and natural vegetable oils.
[0066] The pet hairball food further includes additives, and the additives specifically include low-density microcapsule controlled-release lubricants, bioactive intestinal coating compound enzymes, modified polymer hydrated fibers, and plant-derived antistatic components.
[0067] In this embodiment, the mass fractions of the specific components are as follows:
[0068] The cellulose component is 20 parts;
[0069] The fat lubricating component is 10 parts;
[0070] The probiotics and prebiotics are 5 parts;
[0071] The natural digestive enzymes are 3 parts;
[0072] The plant extracts are 2 parts;
[0073] The vitamins and minerals are 4 parts;
[0074] The natural vegetable oils are 5 parts.
[0075] In this embodiment, the mass fractions of the additives are as follows:
[0076] The low-density microcapsule controlled-release lubricants are 5 parts;
[0077] The bioactive intestinal coating complex enzyme is 3 parts;
[0078] The modified polymer hydrated fiber is 4 parts;
[0079] The plant-derived antistatic component is 3 parts.
[0080] In this embodiment, among the specific components:
[0081] The cellulose component is soluble and insoluble dietary fiber (such as oat fiber, apple fiber, beet pulp fiber, pea fiber). The soluble fiber is used to enhance the activity of probiotics and improve digestion efficiency, and the insoluble dietary fiber is used to increase the fecal volume and stimulate intestinal peristalsis.
[0082] The fat lubricating component is chicken fat, fish oil, medium-chain triglycerides, and lecithin, which form a lubricating film to make it easier for hairballs to pass through the intestine. It can also promote hair health, reduce hair loss, reduce the generation of hairballs from the source, enhance the intestinal mucosal barrier, reduce the adhesion of hair in the stomach, and improve the hair removal efficiency.
[0083] The probiotics and prebiotics are Lactobacillus acidophilus, Bifidobacterium, fructooligosaccharide, galactooligosaccharide, and inulin. The probiotics can decompose excessive proteins and undigested food in the intestine and improve the overall intestinal health level. The prebiotics, as the food for probiotics, can improve the survival rate of probiotics and enhance intestinal motility.
[0084] The natural digestive enzymes are bromelain, papain, trypsin, and pectinase. They accelerate food digestion, reduce the accumulation of food residues in the gastrointestinal tract, and make it easier for hair to be excreted together with feces. Bromelain and papain help decompose gastric protein, making the hair structure become loose and easy to excrete. Pectinase can decompose plant fibers and improve the overall digestion and absorption rate.
[0085] The plant extracts are licorice extract, dandelion root extract, aloe powder, and curcumin. Licorice extract: It has a mucosal protection effect and can reduce the possibility of hairball adhesion in the stomach. Dandelion root extract: It promotes bile secretion, improves fat digestion, and enhances the overall gastrointestinal motility. Aloe powder: It is a natural antibacterial and anti-inflammatory component and can relieve indigestion problems. Curcumin: It has an antioxidant effect, can reduce free radical damage in the digestive tract, and improve the efficiency of smooth hair excretion.
[0086] The vitamins and minerals are vitamin A, vitamin E, vitamin B group (B1, B2, B6, B12), zinc, iron, copper, and magnesium. They maintain the hair health of pets, reduce hair loss, and fundamentally reduce the risk of hairball formation.
[0087] The natural vegetable oils are linseed oil, olive oil, and coconut oil. They lubricate the intestine, improve the efficiency of hairball excretion, maintain skin health, and reduce hair loss.
[0088] In this embodiment, among the additives, the low-density microcapsule-controlled release lubricant includes:
[0089] Microcapsules formed by polydextrose and chitosan for coating medium-chain triglycerides or fish oil;
[0090] Microcapsules formed by the composite of sodium alginate and pectin for coating shea butter;
[0091] Microcapsules formed by carboxymethyl cellulose for coating tocopheryl acetate.
[0092] The particle size range of the above microcapsules is 30 - 200 microns.
[0093] Traditional lubricants (such as fish oil, mineral oil) have problems of fast metabolism and difficulty in stably exerting their functions. However, this additive coats lipid lubricants through low-density microcapsule technology, enabling them to be gradually released in the digestive tract to achieve long-term lubrication. Under the action of gastric acid, the microcapsules remain stable, while in the alkaline environment of the small intestine, they gradually dissolve, ensuring that the effective action area of the lubricant is mainly concentrated in the intestine rather than being directly absorbed by the stomach. Chitosan has good adhesion ability and can form a thin film in the intestine to further enhance the lubrication effect and reduce the possibility of hair ball accumulation.
[0094] Through microcapsule coating technology, lubricating components such as medium-chain triglycerides (MCT), shea butter, etc. are encapsulated in the microcapsules. The structure of the microcapsules keeps them stable in the gastric acid environment. When passing through the stomach, the lubricating components are not released, but after entering the small intestine, they slowly dissolve in the alkaline environment and gradually release the encapsulated lubricating components. This not only improves the persistence of the lubrication effect but also achieves more uniform lubrication in the intestine, avoiding the problems of unstable effects or excessive greasiness of common lubricants.
[0095] Among the additives, the bioactive intestinal coating composite enzyme includes:
[0096] Proteins secreted by Bacillus cereus-like for forming a highly lubricating coating in the pet intestine to reduce the accumulation and retention of hair;
[0097] Acetylated chitosan oligosaccharide for enhancing the lubrication effect in the intestine and promoting the health of the pet intestine;
[0098] The complex formed by ferulic acid and pectin for improving intestinal motility and reducing hair ball accumulation.
[0099] It not only uses physical lubrication, but also introduces the concept of biological activity. Through the protein secreted by Bacillus cereus, a lubricating coating is formed in the pet's intestines, thereby reducing the adhesion and accumulation of hair in the intestines. This coating can effectively protect the hair from adhesion in the intestines, and gradually reduce the friction coefficient between the hair and feces in the intestinal environment, so that the hair can be discharged more smoothly.
[0100] This ingredient is a new type of intestinal coating promoter that can form an extremely thin bioactive barrier in the intestine, making it easier for hair to slide and discharge. The secretory protein of Bacillus cereus can form a highly lubricating protein coating on the surface of the intestinal epithelium, reducing the risk of hairball obstruction. Acetylated chitin oligosaccharides can enhance intestinal lubrication and improve the overall health of the pet's intestine. Ferulic acid-pectin complex not only promotes intestinal peristalsis, but also has antioxidant effects, which can reduce intestinal inflammation caused by hairball accumulation.
[0101] Among the additives, the modified polymer hydrated fiber includes:
[0102] A complex of hydroxypropyl methylcellulose and modified polydextrose, used to form a hydrated gel in the intestine;
[0103] Deacetylated calcium alginate, used to enhance hydration and maintain moisture in the intestine;
[0104] A complex of oligosaccharides and collagen to improve the gel strength and hydration of the fiber, ensuring smooth hair discharge.
[0105] The main function of this ingredient is to form a highly absorbent hydrated gel that can wrap hair, making it easier to combine with feces and excrete. The fiber components in traditional hair-removing foods (such as oat fiber and beet pulp) mainly rely on physical propulsion, while modified polymer hydrated fibers have stronger hydration capacity and can significantly improve the fluidity of hair in the intestine. Hydroxypropyl methylcellulose (HPMC) modified polydextrose can form a high-viscosity gel when it comes into contact with water, helping the hair to be discharged smoothly. Deacetylated calcium alginate can enhance hydration, keep feces appropriately moist, and reduce hair bulb obstruction.
[0106] By combining the technology of modified polydextrose and hydroxypropyl methylcellulose, it not only has a strong hydration effect in the intestine, but also allows the fiber to quickly absorb water and form a hydrated gel in the gastrointestinal tract, ensuring better combination and excretion of hair and feces. Compared with traditional single fiber components, the hydration of modified high molecular hydrated fiber in the digestive tract is more stable and the effect is more lasting, and it can prevent hair from being retained in the intestine through more uniform distribution and wetness control.
[0107] Among the additives, the plant-derived antistatic ingredients include:
[0108] Xanthan gum and flavonoid complex, used to reduce the electrostatic accumulation of hair in the gastrointestinal tract, prevent hair agglomeration and promote its dispersion;
[0109] Sodium lauroyl sarcosinate, as a mild surfactant, is used to reduce the electrostatic effect of hair and make it easier to decompose in the intestine;
[0110] Hydroxycoumarin and glucoside complex, used to bind to the keratin on the hair surface, reduce the adhesiveness of hair, and improve the fluidity of hair in the digestive tract.
[0111] Traditional hairball remover foods mainly rely on lubrication, while this additive reduces the agglomeration of hair in the stomach through antistatic action, making it easier to disperse and excrete with digestive substances. The xanthan gum-flavonoid complex can reduce the surface tension of gastric contents, make hair more evenly distributed in food residues, and prevent the formation of hairballs.
[0112] Sodium lauroyl sarcosinate is a mild surfactant that can slightly reduce the electrostatic effect of hair and make it easier to decompose in the digestive tract. The hydroxycoumarin-glucoside complex can bind to the keratin on the hair surface, reduce its adhesiveness, and make hair more fluid in the intestine.
[0113] Different from traditional oil-based additives, this antistatic component is extracted from plant sources, avoiding digestive problems caused by excessive oil. While acting in the intestine, it can also maintain the intestinal health of pets, reduce problems such as constipation and intestinal discomfort caused by hair accumulation, and has unique comprehensive effects. Therefore, the plant-derived antistatic component not only has unique advantages in solving the problem of hair excretion, but also can effectively improve the overall health level of pets.
[0114] Example 2:
[0115] Refer to Figure 2 , this is the second embodiment of the present invention. This embodiment provides a preparation method of a pet hairball remover food, which is prepared based on the pet hairball remover food described in Example 1, and includes the following steps:
[0116] S1. Thoroughly mix the cellulose component and the fat lubricating component, and carry out low-speed stirring.
[0117] At this time, the temperature should be controlled within an appropriate range (35°C - 45°C) to avoid thermal degradation of the fat component. The stirring time should not be too long to ensure uniform mixing of cellulose and oil. This process helps to form a basic lubricating layer and provides an ideal matrix environment for the subsequent addition of digestive enzymes and probiotics, ensuring that these subsequent components can better play their roles in the gastrointestinal tract.
[0118] S2. Add probiotics and prebiotics.
[0119] Probiotics can improve the digestive ability of the intestine by promoting the reproduction of beneficial bacteria in the intestine; while prebiotics, as the "food" of probiotics, enhance their activity. After adding these two components to the blender, continue to stir for 5 - 10 minutes to ensure the uniform distribution of probiotics and prebiotics in the matrix.
[0120] S3. Add natural digestive enzymes and vitamins and minerals.
[0121] Digestive enzymes can help break down complex carbohydrates and proteins, improve the digestibility of food, and thus promote the smooth excretion of hair. Vitamins and minerals can enhance the immunity and overall health of pets, providing long-term health support. After adding these components, continue to stir until uniform to ensure the balanced intake of required nutrients in each portion of the food.
[0122] S4. Add plant-derived antistatic components.
[0123] The combination of xanthan gum and flavonoids can effectively reduce the static adsorption of hair and lower the friction between hairs. Sodium lauroyl sarcosinate, as a surfactant, can make the hair more easily dispersed, reducing the agglomeration and accumulation of hair in the intestine. Add these antistatic components evenly to the mixture and continue to stir for 3 - 5 minutes to ensure uniform distribution.
[0124] S5. Add low-density microcapsule controlled-release lubricants.
[0125] The coating technology of microcapsules ensures that the lubricating components are not released prematurely in the pet's stomach, but can be gradually released in the small intestine area. This process can not only improve the persistence of the lubricating effect, but also reduce the discomfort caused by excessive oil. Ensure that it can be slowly released in the digestive tract without affecting the pet's appetite and digestive function.
[0126] S6. Add bioactive intestinal coating complex enzymes.
[0127] This complex enzyme can form a lubricating coating in the intestine, reduce the friction between hair and the intestinal wall, and effectively promote the smooth excretion of hair. In addition, ferulic acid-pectin complex helps improve intestinal peristalsis and avoid the discomfort caused by hair accumulation in the intestine. After adding this component, continue to stir to ensure uniform distribution and ensure that its active ingredients are not damaged.
[0128] S7. Add plant extracts and modified high-molecular hydrated fibers.
[0129] Plant extracts can provide abundant antioxidants, helping to reduce hair loss and enhancing the overall immunity and skin health of pets. Modified polymer hydrated fibers contribute to maintaining the hydration of the gastrointestinal tract, increasing the lubrication effect in the intestine, and promoting the smooth excretion of hair. After adding these ingredients, continue to stir until evenly distributed to ensure that each portion of pet food can fully exert its efficacy.
[0130] S8. Mold the final mixture and package it into different forms of pet hairball remover food as needed.
[0131] Perform die-casting or extrusion molding to form granular or flaky pet food. During this process, it is necessary to control the temperature and humidity to ensure the stability of the texture and shape of the food and avoid deformation of the finished product during storage. Subsequently, package the molded pet food, seal it with food-grade packaging materials to prevent moisture and contamination, and ensure the long-term preservation of the food.
[0132] S9. Conduct multiple evaluation tests on the prepared pet hairball remover food.
[0133] In this embodiment, the evaluation tests include hair excretion effect test, digestion and absorption effect test, hairball formation frequency test, hair health assessment, food safety assessment, and flavor acceptance test.
[0134] Take 5 samples of the pet hairball remover food. During the test, a total of 50 pets (including cats and dogs) were selected as experimental subjects, including pets of different ages, breeds, and eating habits to ensure the wide applicability of the test.
[0135] Free-feeding test: Provide the pet hairball remover food together with its daily food for 7 consecutive days and observe the pet's self-selection rate.
[0136] Food intake assessment: Record the actual daily intake of the pet and calculate the food proportion.
[0137] Feeding behavior analysis: Observe the pet's interest in the food, such as whether it eats actively, the eating speed, the remaining amount, etc.
[0138] Owner feedback survey: Conduct a feedback by having pet owners fill out a questionnaire and observe hair and hairball-related matters.
[0139] The test contents are as follows:
[0140] Hair excretion effect test: Measure the hair excretion of the pet after ingesting the food and evaluate its lubrication effect.
[0141] Digestion and absorption effect test: Evaluate the improvement effect of the food on the pet's intestinal health, measure the pet's digestion speed and food residue.
[0142] Testing for the frequency of hairball formation: Record the frequency of hairball formation in pets after consuming the food, and evaluate the effect of reducing hairball accumulation.
[0143] Assessment of hair health: Evaluate the impact of the food on hair health by observing the luster, density, and hair loss of the pet's hair.
[0144] Assessment of food safety: Detect harmful substances that may be present in the food to ensure the safety of pets when consuming it.
[0145] Testing for flavor acceptance: Evaluate the pet's acceptance of the food, and observe changes in its appetite and level of interest in the food.
[0146] The test report is shown in Table 1.
[0147] Table 1
[0148] Test Items Sample 1 Sample 2 Sample 3 Sample 4 Sample 5 Average Value Hair Excretion Effect 95% 92% 98% 96% 93% 94.8% Digestion and Absorption Effect 4 hours 4.5 hours 4 hours 4 hours 4.2 hours 4.14 hours Frequency of Hair Ball Formation Once a month Twice a month Zero times a month Once a month Once a month Once a month Hair Health Luster: High, Hair Loss: Little Luster: Medium, Hair Loss: Medium Luster: High, Hair Loss: Extremely Little Luster: High, Hair Loss: Little Luster: Medium, Hair Loss: Medium Luster: High, Hair Loss: Little Food Safety No harmful substances detected No harmful substances detected No harmful substances detected No harmful substances detected No harmful substances detected No harmful substances detected Flavor Acceptability 90% 85% 93% 88% 86% 88.4%
[0149] Report surface:
[0150] The hair excretion effect of all test samples showed good performance, with an average value reaching 94.8%, proving that the food can effectively promote the smooth excretion of the pet's hair and reduce the possibility of hair accumulation.
[0151] The digestion and absorption time of each sample was relatively consistent, with an average value of 4.14 hours, indicating that the food has a good effect in promoting pet digestion.
[0152] The hairball formation frequency of most samples was less than 2 times per month. Especially for Sample 3, almost no hairballs were formed, indicating that the food has a significant effect in reducing hairball accumulation.
[0153] The test results of hair health showed that the food can effectively improve the luster of the pet's hair and reduce hair loss problems. Most samples had high hair luster and less hair loss.
[0154] No harmful substances were detected in all samples, proving that the food meets safety standards and can ensure the health of pets.
[0155] Pets had a high flavor acceptance of the food, with an average of 88.4%, indicating that the food can obtain a high pet preference in terms of flavor.
[0156] In summary, the pet hairball-removing food performed well in multiple aspects. It not only effectively solved the problems of pet hair loss and hairballs, but also improved the pet's digestive ability, ensured food safety, and obtained a good flavor acceptance.
[0157] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention rather than to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. A pet hair removal food, characterized in that, It includes the following specific components: cellulose component, fat lubricant component, probiotics and prebiotics, natural digestive enzymes, plant extracts, vitamins and minerals, natural vegetable oils; This pet hairball food also includes additives, and the additives specifically include low-density microcapsule controlled-release lubricants, bioactive intestinal coating composite enzymes, modified polymer hydrated fibers, and plant-derived antistatic components.
2. The pet hair removal food according to claim 1, wherein The mass fractions of the specific components are as follows: The cellulose component is 20 - 35 parts; The fat lubricant component is 10 - 20 parts; The probiotics and prebiotics are 5 - 10 parts; The natural digestive enzymes are 3 - 8 parts; The plant extracts are 2 - 5 parts; The vitamins and minerals are 4 - 10 parts; The natural vegetable oils are 5 - 10 parts.
3. A pet hair removal food according to claim 1, wherein, The mass fractions of the additives are as follows: The low-density microcapsule controlled-release lubricants are 5 - 12 parts; The bioactive intestinal coating composite enzymes are 3 - 8 parts; The modified polymer hydrated fibers are 4 - 10 parts; The plant-derived antistatic components are 3 - 6 parts.
4. A pet hair-removing food according to claim 1, characterized in that, Among the specific components: The cellulose component is soluble and insoluble dietary fiber; The fat lubricant component is chicken fat, fish oil, medium-chain triglycerides, lecithin; The probiotics and prebiotics are Lactobacillus acidophilus, Bifidobacterium, fructooligosaccharide, galactooligosaccharide, inulin; The natural digestive enzymes are bromelain, papain, trypsin, pectinase; The plant extracts are licorice extract, dandelion root extract, aloe powder, curcumin; The vitamins and minerals are vitamin A, vitamin E, vitamin B group, zinc, iron, copper, magnesium; The natural vegetable oils are linseed oil, olive oil, coconut oil.
5. A pet hair-removing food according to claim 1, characterized in that, Among the additives, the low-density microcapsule controlled-release lubricants include: Microcapsules formed by polydextrose and chitosan for coating medium-chain triglycerides or fish oil; Microcapsules formed by the composite of sodium alginate and pectin for coating shea butter; Microcapsules formed by carboxymethyl cellulose for coating tocopheryl acetate.
6. The pet hair removal food according to claim 1, wherein Among the additives, the bioactive intestinal coating composite enzymes include: Proteins secreted by Bacillus cereus-like for forming a highly lubricating coating in the pet's intestine to reduce the accumulation and retention of hair; N-acetyl chitooligosaccharide for enhancing the lubrication effect in the intestine and promoting the health of the pet's intestine; The complex of ferulic acid and pectin for improving intestinal motility and reducing hairball accumulation.
7. A pet hair removal food according to claim 1, characterized in that, Among the additives, the modified polymer hydrated fibers include: The complex of hydroxypropyl methylcellulose and modified polydextrose for forming a hydrated gel in the intestine; Deacetylated calcium alginate for enhancing the hydration effect and maintaining the humidity in the intestine; The complex of oligosaccharide and collagen for improving the gel strength and hydration effect of the fiber to ensure that the hair can be smoothly discharged.
8. A pet hair removal food according to claim 1, characterized in that, Among the additives, the plant-derived antistatic components include: The complex of xanthan gum and flavonoids for reducing the static charge accumulation of hair in the gastrointestinal tract, preventing hair agglomeration and promoting its dispersion; Sodium lauroyl sarcosinate, as a mild surfactant, for reducing the static effect of hair and making the hair easier to decompose in the intestine; Hydroxycoumarin and glucoside complex, which is used to bind to keratin on the hair surface, reduce the adhesiveness of hair, and improve the fluidity of hair in the digestive tract.
9. A preparation method of a pet hair-removing food, which is prepared based on the pet hair-removing food described in any one of claims 1-8, characterized in that, It includes the following steps: S1. Thoroughly mix the cellulose component and the fat lubricating component; S2. Add probiotics and prebiotics; S3. Add natural digestive enzymes and vitamins and minerals; S4. Add plant-derived antistatic components; S5. Add low-density microcapsule controlled-release lubricants; S6. Add bioactive intestinal coating complex enzymes; S7. Add plant extracts and modified polymer hydrated fibers; S8. Mold the final mixture and package it into different forms of pet hairball-removing food as needed; S9. Conduct multiple evaluation tests on the prepared pet hairball-removing food.
10. The preparation method of a pet hairball-removing food according to claim 9, characterized in that, In the step S9, the evaluation tests include hair excretion effect test, digestion and absorption effect test, hairball formation frequency test, hair health assessment, food safety assessment, and flavor acceptance test.
Citation Information
Patent Citations
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