Texture improvers and their uses

The use of curdlan and rapeseed protein in a specific ratio addresses the challenges of achieving ideal gel texture and mouthfeel in foods by enhancing gel strength and elasticity without additional hydrocolloids, suitable for meat and plant-based meat products.

JP7749129B2Active Publication Date: 2025-10-03DSM IP ASSETS BV +1
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Patent Information

Application Number
JP2024530516
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2021-12-06
Filing Date
2022-12-05
Publication Date
2025-10-03
Estimated Expiration
2042-12-05

AI Technical Summary

Technical Problem

Existing methods for improving gel texture and mouthfeel of foods using curdlan require high costs, complex operations, or large amounts of hydrocolloids, which affect nutritional value and texture, and often necessitate the use of transglutaminase or blending with other hydrocolloids.

Method used

A texture improver comprising curdlan and rapeseed protein in a specific weight ratio, which can be used as a binder or thickener to enhance gel strength, elasticity, and chewiness without the need for transglutaminase or additional hydrocolloids, particularly effective in meat and plant-based meat products.

Benefits of technology

The combination of curdlan and rapeseed protein achieves ideal gel texture and mouthfeel in meat and plant-based meat products, reducing the amount of hydrocolloids used and simplifying production processes while maintaining freeze-resistant and heat-stable gel properties.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a texture improver comprising curdlan and rapeseed protein, the weight ratio of which is 1:9 to 9:1. When the texture improver is used in food, especially in meat products or plant-based meat products, it can significantly improve the texture and mouthfeel of the food, and meet the needs of clean label food.
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Description

Detailed Description of the Invention

[0001] [Technical field] The present invention relates to a texture improver comprising curdlan and rapeseed protein, and a method for producing and using the same. The present invention further relates to the use of a combination of curdlan and rapeseed protein in the production of a food product, and a food product comprising said curdlan and rapeseed protein.

[0002] [Background technology] Curdlan, also known as a gel-forming polysaccharide or thermal gel, is a microbial extracellular polysaccharide discovered and named by Harada et al. in 1964. It is a linear polymer in which glucose structural units are linked by β-1,3-D-glucosidic bonds. It has attracted attention in the food industry due to its low-temperature reversible and high-temperature irreversible gel properties, as well as its freeze resistance and thermal stability. The Chinese Ministry of Health officially approved the direct addition of curdlan to foods in 2006, and it is used, for example, as a stabilizer, coagulant, thickener, water-retaining agent, binder, and film-forming agent in the production of meat foods, noodles, seafood, baked foods, frozen foods, fried foods, and other foods.

[0003] When curdlan is used in meat products or plant-based meat products, it can improve the water retention, boiling resistance, freezing resistance, etc. of the food, but to achieve an ideal gel texture, it is usually necessary to add transglutaminase, or to blend curdlan with another hydrocolloid to achieve an ideal product texture (e.g., gel strength, elasticity, etc.). However, such techniques have problems such as high cost, complicated operations, inability to extend the standing time of the slurry at room temperature, or the need to use a large amount of hydrocolloid, which affects the nutritional value and texture of the product.

[0004] Therefore, there is still a need for a method for improving the gel texture or mouthfeel of foods by obtaining an ideal gel strength while maintaining excellent gel properties such as freezing resistance and thermal stability of curdlan.

[0005] [Summary of the Invention] The present invention provides a texture improver comprising curdlan and rapeseed protein, wherein the weight ratio of curdlan to rapeseed protein is 1:9 to 9:1, preferably 1:4 to 4:1, more preferably 2:3 to 3:2, and even more preferably the weight ratio of curdlan to rapeseed protein is about 1:1. In the present invention, the curdlan in the texture improver may account for 25%, 30%, 35%, 40%, 45%, 50%, 55%, 60%, or 65% of the total weight of the curdlan and rapeseed protein, and preferably accounts for 45%, 46%, 47%, 48%, 49%, 50%, 51%, 52%, 53%, 54%, or 55% of the total weight of the curdlan and rapeseed protein. In the present invention, the weight ratio of curdlan to rapeseed protein in the texture improver may be 1:9, 1:4, 3:7, 2:3, 1:1, 3:2, 7:3, 4:1 or 9:1, preferably 1:3, 1:2.5, 1:2, 1:1.5, 1:1, 1.5:1, 2:1, 2.5:1 or 3:1, more preferably 2:3, 2.5:3, 1:1, 3:2.5 or 3:2. The rapeseed protein in the texture improver is not a textured vegetable protein.

[0006] In the present invention, the texture improver refers to a substance that can be added to food to improve one or more texture properties of the food, and the texture properties may be strength, hardness, viscosity, elasticity, cohesiveness, chewability, adhesiveness, recovery, etc. The texture improver may be a binder, thickener, or gelling agent.

[0007] Without wishing to be limited by any theory or explanation, the inventors have found that when curdlan is used together with a plant-based protein (soy protein and / or potato protein), the gel strength of the curdlan is significantly weakened. When soy protein and / or potato protein, etc., are substituted with rapeseed protein and used together with curdlan, the gel strength of the curdlan is not significantly affected, and compared to other proteins (particularly soy protein), the use of rapeseed protein can significantly improve the textural properties of the added system, particularly the gel strength. When curdlan and rapeseed protein are added as binders to meat products or plant-based meat products, ideal textural properties, particularly the hardness, elasticity, and chewiness of the product, can be achieved.

[0008] The texture improver of the present invention may or may not contain another polysaccharide or derivative thereof, such as one or more of methylcellulose, starch, gum arabic, gelatin, guar gum, locust bean gum, carrageenan, xanthan gum, gellan gum, pectin, and konjac gum, and preferably may contain starch and / or xanthan gum, or preferably does not contain any polysaccharide or derivative thereof other than starch, or preferably does not contain any other polysaccharide or derivative thereof. In the present invention, curdlan may be the only hydrocolloid in the texture improver. In the present invention, the texture improver may be free of or substantially free of methylcellulose.

[0009] In the present invention, the texture improving agent may be added to either the liquid or the solid content. The amount of the texture improving agent to be added may be appropriately adjusted depending on the type and state of the system to which it is to be added, the content of curdlan in the texture improving agent to be used, etc., and the texture improving agent may be added so that the weight percentage of curdlan in the added system is 0.1 to 15%, preferably 0.2 to 10%.

[0010] In one embodiment of the invention, the texture improver is a binder. In one embodiment of the invention, the texture improver is a binder for meat products. In one embodiment of the invention, the texture improver is a binder for vegetal meat products.

[0011] In the present invention, the term "binder" refers to a substance that bonds particles and / or fibers. A binder in the present invention is an edible substance that can bond the matrix to form a viscous product in the final product. The binder helps to create a smoother product texture and maintain the moisture and / or shape of the viscous product. Preferably, the binder according to the present invention is a binder for meat products or plant-based meat products, more preferably, the binder is a binder for plant-based meat products. In the present invention, meat products or plant-based meat products also include seafood products.

[0012] In the present invention, the binder may further comprise a dispersing agent that reduces aggregation of hydrocolloids and / or proteins, and the dispersing agent may be one or more of an alkali agent, an alkali metal salt, an organic acid salt, and an inorganic acid salt, or may be water, preferably water. In the present invention, the binder may or may not comprise another polysaccharide or its derivative component, such as one or more of methylcellulose, starch, gum arabic, gelatin, guar gum, locust bean gum, carrageenan, xanthan gum, gellan gum, pectin, and konjac gum. Preferably, the binder of the present invention contains a lower amount of methylcellulose than binders of conventional meat products or plant-based meat products, and more preferably, the binder of the present invention is free of or substantially free of methylcellulose. In the present invention, the binder may or may not contain other protein components (e.g., other plant-based proteins and / or animal proteins), and preferably the binder of the present invention is free or substantially free of chicken eggs, egg whites and / or egg yolks. In the present invention, the binder may be liquid or powder.

[0013] In one embodiment of the present invention, the total weight of curdlan and rapeseed protein in the binder may be at least 2% of the weight of the binder. In another embodiment of the present invention, the total weight of curdlan and rapeseed protein in the binder may be 80% or more of the weight of the binder. In one embodiment of the present invention, the binder is mainly composed of curdlan and rapeseed protein. In one embodiment of the present invention, the binder is a binder for plant-based meat products.

[0014] In one embodiment of the invention, the texture improving agent is a thickening agent.

[0015] In the present invention, the term thickener refers to a substance that can increase the viscosity of a system, so that the system (e.g., food) can remain in a uniform and stable suspension, become an emulsion, or form a gel.

[0016] In the present invention, the thickener may further include a dispersing agent that reduces aggregation of hydrocolloids and / or proteins. The dispersing agent may be one or more of an alkali agent, an alkali metal salt, an organic acid salt, or an inorganic acid salt, or may be water. In the present invention, the thickener may or may not include another polysaccharide or its derivative component, such as one or more of methylcellulose, starch, gum arabic, gelatin, guar gum, locust bean gum, carrageenan, xanthan gum, gellan gum, pectin, and konjac gum. Preferably, the thickener of the present invention contains a lower amount of methylcellulose than conventional thickeners, and more preferably, the thickener of the present invention is free of or substantially free of methylcellulose. In the present invention, the thickener may be liquid or powder.

[0017] In one embodiment of the present invention, the total weight of curdlan and rapeseed protein in the thickener may be at least 2% of the weight of the thickener. In another embodiment of the present invention, the total weight of curdlan and rapeseed protein in the thickener may be 80% or more of the weight of the thickener. In one embodiment of the present invention, the thickener mainly consists of curdlan and rapeseed protein.

[0018] The present invention further provides a food product comprising the texture improver. In one embodiment of the present invention, the texture improver is used as a binder in the food product. In one embodiment of the present invention, the texture improver is used as a thickener in the food product.

[0019] In the present invention, unless otherwise specified, when the texture improver is used in food, there is no need to adjust the pH value of the application system.

[0020] In one embodiment of the present invention, the food product is a meat product. In the present invention, the meat product may be formed meat, processed meat, sausage, mince, meat pie, meatball, ham, etc. In one embodiment of the present invention, the meat product is luncheon meat. In the present invention, when the texture improver is used as a binder in the meat product, the amount added is such that the weight percentage of curdlan in the meat product is at least 0.1%, 0.2%, 0.3%, 0.4%, or 0.5%, or the weight percentage of curdlan in the meat product is 0.1-5%, 0.1-2.5%, 0.1-2%, or 0.1-1%. Preferably, when the texture improver is used as a binder in the meat product, the amount added is such that the weight percentage of curdlan in the meat product is at least 0.2%.

[0021] In one embodiment of the invention, the food product is a plant-based meat product.

[0022] In the present invention, "plant-based meat" refers to a plant-based protein meat, which may also be called artificial meat, vegetarian meat product, meat substitute, or meat substitute, and has the texture, flavor, appearance, or chemical characteristics of a specific type of meat product. Generally, plant-based meat refers to a food product consisting of vegetarian ingredients and may not contain dairy products and / or animal products. In the present invention, preferably, the plant-based meat product contains textured soy protein and / or soy protein isolate.

[0023] In the present invention, when the texture improver is used as a binder in a plant-based meat product, it may be added in an amount such that the weight percentage of curdlan in the plant-based meat product is at least 0.1%, 0.2%, 0.3%, 0.4%, 0.5%, 0.6%, 0.7%, 0.8%, 0.9%, or 1%, or it may be added in an amount such that the weight percentage of curdlan in the plant-based meat product is 0.1-15%, 0.5-10%, 2-7%, or 3-6%. Preferably, when the texture improver is used as a binder in a plant-based meat product, it is added in an amount such that the weight percentage of curdlan in the plant-based meat product is at least 0.5%. Preferably, when the texture improver is used as a binder in a plant-based meat product, it is added in an amount such that the weight percentage of curdlan in the plant-based meat product is at least 2%.

[0024] In the present invention, meat products or plant-based meat products produced using the texture improver as a binder can have an ideal gel texture and mouthfeel (e.g., gel strength, hardness, elasticity, chewiness, etc.) without the addition of transglutaminase, another hydrocolloid, or methylcellulose. In one embodiment of the present invention, the gel texture and / or mouthfeel (e.g., hardness, elasticity, and chewiness) of meat products or plant-based meat products produced using the texture improver described in the present invention as a binder corresponds to the gel texture and / or mouthfeel of meat products or plant-based meat products using methylcellulose as a binder.

[0025] In one embodiment of the present invention, the food product is jelly or pudding, and preferably the weight percentage of protein in the jelly or pudding is 1-3%. When the texture improver is used as a thickener in the jelly or pudding, the amount added is such that the weight percentage of curdlan in the jelly or pudding is 0.5-3%, preferably 1-2%. During production, the jelly and pudding undergo high-temperature sterilization treatment, which can form a stable, thermo-irreversible, and ideal gel, thereby extending the shelf life of the product.

[0026] In one embodiment of the present invention, the food is a food or drink for people with swallowing disorders, a nursing care food or drink, a pulverized food or drink, a muddy food or drink, a liquid food or drink, etc. The amount of the texture improver added to the food is such that the weight percentage of curdlan in the food is 0.2 to 6%, preferably 0.4 to 6%.

[0027] In one embodiment of the invention, the beverage is a plant-based protein beverage, preferably the plant-based beverage does not contain dairy and / or animal proteins.

[0028] One aspect of the present invention provides a meat product or a vegetarian meat product comprising a texture improver according to the present invention.

[0029] One aspect of the present invention provides a meat product or a plant-based meat product, the meat product or plant-based meat product comprising curdlan and rapeseed protein, wherein the weight ratio of curdlan to rapeseed protein is 1:9 to 9:1, preferably 1:4 to 4:1, more preferably 2:3 to 3:2, and even more preferably the weight ratio of curdlan to rapeseed protein is about 1:1. The curdlan in the meat product or plant-based meat product may account for 25%, 30%, 35%, 40%, 45%, 50%, 55%, 60%, or 65% of the total weight of the curdlan and rapeseed protein, and preferably 45%, 46%, 47%, 48%, 49%, 50%, 51%, 52%, 53%, 54%, or 55% of the total weight of the curdlan and rapeseed protein. In the meat product or plant meat product, the weight ratio of curdlan to rapeseed protein may be 1:9, 1:4, 3:7, 2:3, 1:1, 3:2, 7:3, 4:1 or 9:1, preferably 1:3, 1:2.5, 1:2, 1:1.5, 1:1, 1.5:1, 2:1, 2.5:1 or 3:1, more preferably 2:3, 2.5:3, 1:1, 3:2.5 or 3:2. The weight percentage of curdlan in the meat product may be at least 0.1%, 0.2%, 0.3%, 0.4% or 0.5%, or may be 0.1-5%, 0.1-2.5%, 0.1-2%, or 0.1-1%, preferably the weight percentage of curdlan in the meat product is at least 0.2%. The weight percentage of the curdlan in the plant meat product may be at least 0.1%, 0.2%, 0.3%, 0.4%, 0.5%, 0.6%, 0.7%, 0.8%, 0.9% or 1%, or may be 0.1-15%, 0.5-10%, 2-7%, or 3-6%, preferably the weight percentage of curdlan in the plant meat product is at least 0.5%, more preferably the weight percentage of curdlan in the plant meat is at least 2%.

[0030] One aspect of the present invention provides a plant-based meat product, said plant-based meat product comprising: 1) 20-80% water, 2) 0.1 to 20% rapeseed protein, 3) 1-30% textured vegetable protein; 4) 1-20% oil and 5) 0.1 to 15% curdlan; 6) 0-10% coloring agent and essence.

[0031] The percentages are by weight, and preferably the total amount of each of the components does not exceed 100% of the plant meat product, and preferably the 0.1-20% rapeseed protein is not part of a textured plant protein. Compared to a plant meat product in which the 0.1-20% rapeseed protein is replaced with an equal amount of soy protein isolate (untextured), the plant meat product can have an improved hardness of at least about 20%, at least about 30%, at least about 40%, at least about 50%, at least about 60%, or at least about 70%, and an improved chewability of at least about 20%, at least about 25%, at least about 30%, or at least about 35%.

[0032] The weight percentage of rapeseed protein in the plant meat product may be 2 to 15%, preferably 3 to 13%, more preferably 4 to 10%, and even more preferably 5 to 10%.

[0033] The remaining component in the plant-based meat product may be, and preferably is, water. More preferably, the plant-based meat product is made up of water. Preferably, the plant-based meat product has a water content of 40-75% (w / w), more preferably a water content of 50-70% (w / w).

[0034] The plant-based meat product may be a sausage, a smoked sausage, a frankfurter sausage, a meat pie, a meatball, a meat loaf, a hot dog, a mortadella, a pate, or a wiener sausage. In one embodiment of the present invention, the plant-based meat product is a sausage. In one embodiment of the present invention, the plant-based meat product is a meat pie, for example a hamburger steak.

[0035] The plant meat product may contain 2% to 30% by weight of textured vegetable protein (TVP), preferably 4% to 25%, more preferably 6% to 20%.

[0036] In the present invention, the term "textured vegetable protein" (TVP) refers to a protein product extracted from a plant and obtained by pressing, preferably derived from a plant such as a pulse, cereal (preferably free of gluten, e.g., oat fiber, corn fiber, rice fiber) or oilseed, which may also be called structured vegetable protein. The pulse may be soybean or pea. The oilseed may be sunflower seed or rapeseed. In one embodiment of the present invention, the textured vegetable protein is produced by pressing. In the present invention, the plant protein is a non-textured (or non-structured) vegetable protein, unless otherwise specified.

[0037] In the present invention, the textured plant protein may be one or more of textured pea protein, fava bean protein, lentil protein, soy protein, and rapeseed protein. Preferably, the textured plant protein comprises textured soy protein. Proteins derived from other pulses, such as lupin, pea (yellow pea, green pea), fava bean, kidney bean, mung bean, lentil, pinto bean, moong bean, navy bean, chickpea, cherry pea, soybean, and peanut, can also be used as textured plant proteins in the present invention.

[0038] Fiber may be added to the plant meat product, and the fiber may be plant fiber, such as pea fiber, oilseed fiber (e.g., sunflower seed fiber or cottonseed fiber), fruit fiber (e.g., apple fiber, pumpkin fiber), cereal fiber (e.g., oat fiber, corn fiber, rice fiber), bamboo fiber, potato fiber, inulin, or a combination thereof. Fiber is typically found in plant foods and cannot be broken down or completely broken down by digestive enzymes in the human body, and may be soluble or insoluble.

[0039] The vegetable meat product may contain 1-20% oil by weight, preferably 2-18%, more preferably 5-15%, and even more preferably 7-12%. The oil may be algae oil, fungal oil, corn oil, olive oil, soybean oil, peanut oil, walnut oil, almond oil, sesame oil, cottonseed oil, rapeseed oil, safflower oil, sunflower oil, linseed oil, palm oil, palm kernel oil, coconut oil, babassu oil, shea butter oil, mango oil, cocoa oil, sappan oil, blackcurrant oil, sage oil, macadamia nut oil, saw palm oil, conjugated linoleic acid, arachidonic acid-enriched oil, docosahexaenoic acid (DHA)-enriched oil, eicosapentaenoic acid (EPA)-enriched oil, palm stearic acid, rice bran oil, margarine, or another hydrogenated fat. Preferably, the oil is rapeseed oil.

[0040] The content of the coloring agent and essence may be 0.01 to 10%, preferably 0.1 to 8%, more preferably 0.5 to 6% of the weight of the plant-based meat product.

[0041] The colorant may include or be beet root or beet root powder. In the present invention, the colorant may include or be a carotenoid. Preferably, the carotenoid may be one or more of α-carotene, β-carotene, β-apo-8'-carotenal, β-apo-8'-carotenic acid ester (e.g., ethyl ester), canthaxanthin, astaxanthin, astaxanthin ester, lycopene, xanthophyll, zeaxanthin, crocetin, or derivatives thereof.

[0042] The flavors may include yeast extracts or process flavors.

[0043] The plant-based meat product may further comprise vitamins and / or minerals, preferably one or more of the vitamins B2, B3, B6, and B12, and / or one or more of the minerals iron, selenium, and zinc. By adding such nutrients, the plant-based meat product of the present invention has nutritional value closer to that of meat products, without imparting any unpleasant odor.

[0044] One aspect of the present invention provides a method for producing the texture improver, the method comprising: a) weighing curdlan and rapeseed protein powder by weight; b) uniformly mixing the weighed powders; c) optionally adding a dispersant; The weight ratio of curdlan to rapeseed protein is 1:9 to 9:1, preferably 1:4 to 4:1, more preferably 2:3 to 3:2, and even more preferably the weight ratio of curdlan to rapeseed protein is about 1:1. The weighing and mixing can be carried out according to a conventional method in the art. Optionally, the method for producing the texture improver further comprises a step of mixing and granulating the uniform mixture.

[0045] One aspect of the present invention provides a method for producing the texture improver, the method comprising: a) weighing curdlan and rapeseed protein powder by weight; b) dispersing the weighed curdlan in water to obtain a solution; c) dispersing a weighed amount of rapeseed protein in the solution of step b), The weight ratio of curdlan to rapeseed protein is 1:9 to 9:1, preferably 1:4 to 4:1, more preferably 2:3 to 3:2, and even more preferably the weight ratio of curdlan to rapeseed protein is about 1: 1. The weighing and dispersion can be carried out according to a method commonly used in this field.

[0046] One aspect of the present invention provides a method for producing a meat product or a plant-based meat product, the method comprising adding curdlan and rapeseed protein as binders during the production process, wherein the weight ratio of the added curdlan to the rapeseed protein is 1:9 to 9:1, preferably 1:4 to 4:1, more preferably 2:3 to 3:2, and even more preferably the weight ratio of the added curdlan to the rapeseed protein is about 1:1. In one embodiment of the present invention, the weight ratio of the added curdlan to the rapeseed protein in the production method is about 1:1. The curdlan may account for 25%, 30%, 35%, 40%, 45%, 50%, 55%, 60%, or 65% of the total weight of the curdlan and rapeseed protein, and preferably 45%, 46%, 47%, 48%, 49%, 50%, 51%, 52%, 53%, 54%, or 55% of the total weight of the curdlan and rapeseed protein. The weight ratio of the curdlan to the rapeseed protein may be 1:9, 1:4, 3:7, 2:3, 1:1, 3:2, 7:3, 4:1, or 9:1, preferably 1:3, 1:2.5, 1:2, 1:1.5, 1:1, 1.5:1, 2:1, 2.5:1, or 3:1, and more preferably 2:3, 2.5:3, 1:1, 3:2.5, or 3:2. In the above-mentioned production method, the amount of curdlan added to the meat product may be such that the weight percentage of curdlan in the meat product is at least 0.1%, 0.2%, 0.3%, 0.4% or 0.5%, or such that the weight percentage of curdlan in the meat product is 0.1 to 5%, 0.1 to 2.5%, 0.1 to 2%, or 0.1 to 1%, and preferably such that the weight percentage of curdlan in the meat product is at least 0.2%.In the above-described production method, the amount of curdlan added to the plant-based meat product is such that the weight percentage of curdlan in the plant-based meat product is at least 0.1%, 0.2%, 0.3%, 0.4%, 0.5%, 0.6%, 0.7%, 0.5%, 0.9%, or 1%, or such that the weight percentage of curdlan in the plant-based meat product is 0.1-15%, 0.5-10%, 2-7%, or 3-6%, preferably such that the weight percentage of curdlan in the plant-based meat product is at least 0.5%, more preferably such that the weight percentage of curdlan in the plant-based meat product is at least 2%. The curdlan / rapeseed protein ratio is preferably 2:3 to 3:2. In the production method of the present invention, the curdlan and rapeseed protein may be added simultaneously or at different times. In one embodiment of the present invention, when producing a meat product or plant-based meat product, the curdlan is added first, and then the rapeseed protein is added. In one embodiment of the present invention, when a meat product or a plant-based meat product is produced, rapeseed protein or an aqueous rapeseed protein dispersion is further added after the aqueous dispersion of curdlan is added.

[0047] In one aspect of the invention there is provided a method of producing a plant based meat product, the plant based meat product comprising, in weight percentage: 1) 20-80% water, 2) 0.1 to 20% rapeseed protein, 3) 1-30% textured vegetable protein; 4) 1-20% oil and 5) 0.1 to 15% curdlan; 6) 0-10% coloring agent and essence; Preferably, the total amount of each of said ingredients does not exceed 100% of the plant meat product; The manufacturing method includes: 1) dispersing the curdlan in water, adding the rapeseed protein, and uniformly mixing to obtain a dispersion; 2) adding the oil to the dispersion liquid of step 1) and stirring uniformly to obtain an emulsified slurry; 3) adding the emulsified slurry obtained in step 2) to the textured vegetable protein; 4) optionally adding colorants and essences; 5) Optionally, the process includes a step of uniformly stirring all the components, uniformly kneading the components, and leaving the components to be molded.

[0048] In the present invention, the method for producing the plant meat product may include a step of hydrating the textured plant protein and / or rapeseed protein.

[0049] In the present invention, the production method may further comprise a step of freezing the meat product or plant-based meat product.

[0050] In the present invention, the meat product or plant-based meat product can be produced according to a conventional method in the art unless otherwise specified, and when curdlan and / or rapeseed protein is added, there is no need to adjust the pH value or temperature of the system.

[0051] Meat or plant-based meat products produced by the method of the present invention can achieve an ideal gel texture and mouthfeel while maintaining the freeze-resistant, heat-stable gel properties of curdlan. Methylcellulose is one of the hydrocolloids commonly used in plant-based meats, but it does not meet consumer needs for clean label foods. Furthermore, although methylcellulose gels upon heating, it loses its gel texture after cooling. Adding chicken egg protein as a binder can improve the mouthfeel and texture of plant-based meats, but its drawbacks include sensitization and inconsistency with the principles of a pure vegetarian diet. Producing meat or plant-based meat products using the method of the present invention can impart a good gel texture and mouthfeel to the product while reducing the overall amount of hydrocolloids used and / or the amount of methylcellulose or egg binders used.

[0052] According to one aspect of the present invention, there is provided a method for improving the texture of a meat product or a plant-based meat product, characterized in that the method comprises adding curdlan and rapeseed protein during the production process, wherein the weight ratio of the added curdlan to the rapeseed protein is 1:9 to 9:1, preferably 1:4 to 4:1, more preferably 2:3 to 3:2, and even more preferably the weight ratio of the added curdlan to the rapeseed protein is about 1:1. In one embodiment of the present invention, the curdlan and rapeseed protein can be added to the production system simultaneously. In one embodiment of the present invention, the curdlan and rapeseed protein are not added to the production system simultaneously. In one embodiment of the present invention, the method improves the gel strength of the meat product or plant-based meat product. In one embodiment of the present invention, the method improves the elasticity or chewiness of the meat product or plant-based meat product. In one embodiment of the present invention, the method improves the adhesiveness of the meat product or plant-based meat product. In one embodiment of the present invention, the method improves the gel strength, chewiness, and adhesiveness of the meat product or plant-based meat product.

[0053] One aspect of the present invention provides the use of rapeseed protein in improving the gel strength of a composition comprising curdlan, preferably the composition also comprising a second protein other than rapeseed protein, preferably the second protein being a plant-based protein, more preferably the plant-based protein being unstructured, for example soy protein and / or potato protein. In one embodiment of the present invention, the composition is a meat product or a plant-based meat product.

[0054] One aspect of the present invention provides use of the texture improver as a binder to replace methylcellulose in meat products or plant-based meat products. The texture improver can reduce the amount of methylcellulose used in meat products and / or plant-based meat products, and preferably, the texture improver can replace methylcellulose in meat products and / or plant-based meat products. Methylcellulose is one of the hydrocolloids commonly used in plant-based meat products, but it does not meet consumer needs for clean label foods. Furthermore, methylcellulose gels upon heating, but loses its gel texture after cooling.

[0055] In the present invention, curdlan may be derived from a microorganism, an animal, or a plant. The molecular formula of curdlan is (CH 10 O5) n and preferably n>250. The molecular weight of curdlan may be 40 kD to 3000 kD (kilodaltons), for example, 50 kD to 500 kD, or may exceed 1000 kD or may exceed 2000 kD.

[0056] In the present invention, the curdlan is preferably produced by microbial fermentation, and the microorganism is a microorganism capable of producing curdlan, such as an Alcaligenes sp., Agrobacterium sp., or Rhizobium sp. In one embodiment of the present invention, curdlan can be produced by a mutant strain of Alcaligenes faecalis var. myxogenes strain 10C3 (HARADA, T., MASADA, M., FUJIMORI, K., and MEADA, I. (1966). Agric. Biol. Chem., 30, 196-198). Microbial fermentation of curdlan can be carried out according to a method commonly used in the art. Curdlan can be extracted from the fermentation broth by a method commonly used in the art, for example, by treating the fermentation product with an alkaline solution, precipitating the hydrocolloid with an acidic solution, dehydrating the precipitate with ethanol, drying, and finally pulverizing. In the present invention, commercially available curdlan may be used.

[0057] In the present invention, the rapeseed protein may be in the form of an isolate or concentrate. The rapeseed protein isolate can be produced by the method described in WO 2018 / 007492, in which an isolate having a protein content of 50-98% (w / w), 70-95% (w / w), or 90±5% (w / w) is produced from rapeseed oil coarse meal by cold pressing. In one embodiment of the present invention, the rapeseed protein isolate contains 40-65% (w / w) cruciferins and 35-60% (w / w) rapeseed protein.

[0058] In one embodiment of the invention, the rapeseed protein is a rapeseed protein isolate, the protein content of which is at least 90% by weight on a dry basis (calculated as Kjeldahl N x 6.25).

[0059] The rapeseed from which the rapeseed protein used in the present invention is produced typically belongs to Brassica napus and Brassica juncea cultivars. These cultivars contain only low levels of erucic acid and glucosinolates and are also known as Canadian rapeseed (Canola). Canadian rapeseed is now a generic term and is defined as rapeseed containing less than 2% erucic acid and less than 30 mmol / g glucosinolates. The main storage proteins found in rapeseed are cruciferins and rapeseed proteins (napins).

[0060] In one embodiment of the present invention, the rapeseed protein comprises cruciferous plant elements and / or rapeseed protein, preferably cruciferous plant elements and rapeseed protein.

[0061] In the present invention, the rapeseed protein contains 40 to 65% (w / w) of Brassicaceae plant elements and 35 to 60% (w / w) of rapeseed protein, or 15 to 65% (w / w) of Brassicaceae plant elements and 35 to 85% (w / w) of rapeseed protein, or 60 to 80% (w / w) of Brassicaceae plant elements and 20 to 40% (w / w) of rapeseed protein, or 80 to 100% (w / w) of Brassicaceae plant elements and 0 to 20% (w / w) of rapeseed protein, or 0 to 20% (w / w) of Brassicaceae plant elements and 80 to 100% (w / w) of rapeseed protein. Preferably, the total weight of the cruciferous plant material and rapeseed protein does not exceed 100% of the weight of the rapeseed protein.

[0062] In one embodiment of the invention, the rapeseed protein has a low content of antinutritional factors, a phytate content of less than 1.5% (w / w), preferably less than 0.5% (w / w), a low glucosinolate content (e.g., less than 5 μmol / g), and a low phenolic content (e.g., less than 10 mg / g). In one embodiment of the invention, the rapeseed protein has a solubility of at least 88% at a pH of 3 to 10.

[0063] In the present invention, the texture of a sample can be evaluated using parameters such as hardness, chewability, stickiness, cohesiveness, and elasticity. The texture parameters of a sample can be measured by texture profile analysis (TPA), also known as double-chewing measurement. This analysis primarily involves simulating the chewing movement of a human mouth using a probe on a texture analysis device, compressing the sample twice, connecting the device to a microcomputer, outputting a texture measurement curve via an interface, and using software to obtain multiple physical property indices of the sample, such as hardness, adhesiveness, springiness, cohesiveness, gumminess, chewiness, and resilience. Here, hardness refers to the maximum peak value during the first chewing (or first compression).

[0064] In the present invention, the TPA analysis of a sample can be measured in the following modes. (a) Pre-Test Speed: 2.00 mm / s (b)Test Speed: 2.00mm / s (c) Post-Test Speed: 2.00 mm / s (d) Target Mode: Strain (e) Strain: 75% (f) Time: 5s (g) Probe: P / 1KSS

[0065] In the present invention, the texture analysis of the plant-based meat product can be performed using a texture profile analysis method (TPA) and a texture analysis device (e.g., TA.XT.plus, SMS (registered trademark), weight: up to 10 kg). In one embodiment of the present invention, the texture analysis of the plant-based meat product can be performed by double compression measurement with a probe P / 100, a strain of 40%, a speed before measurement of 1 mm / s, a measurement speed of 1 mm / s, and a speed after measurement of 1 mm / s.

[0066] The texture improver of the present invention, when used in combination with curdlan and rapeseed protein, significantly improves the gel strength of a composition containing curdlan, effectively reducing the weakening effect of curdlan due to proteins in application systems.The meat product or plant-based meat product of the present invention, or the meat product or plant-based meat product produced by the production method of the present invention, has an ideal gel texture and mouthfeel (e.g., gel strength, hardness, elasticity, chewiness, etc.) without the need to add transglutaminase, blend curdlan with other hydrocolloids, or add methylcellulose, and can effectively reduce the overall amount of hydrocolloid used, simplify the production process, reduce disposition, and meet the needs for clean label products.

[0067] [Mode for Carrying Out the Invention] The present invention will be further described in the form of examples, which are merely exemplary and are intended to explain the present invention, but not to limit the scope of protection of the present invention. Experimental materials

[0068] Rapeseed protein isolate (RPI) was produced from rapeseed meal by cold pressing according to the method described in WO 2018 / 007492. It has a protein content of 90% (w / w), a cruciferin content of 40-65% (w / w), a rapeseed protein content of 35-60% (w / w), a phytate content of less than 0.26% (w / w), and a solubility of at least 88% measured at a temperature of 23 ± 2°C in the pH range of 3-10. pH was measured using a PHM220 pH meter equipped with a PHC3085-8 calomel pH electrode (D = 5 mm).

[0069] Curdlan was purchased from Zhejiang Disimanzhongken Biological Technology Co., Ltd., China. Soy protein isolate was purchased from DuPont. Potato protein was purchased from AVEBE. Vegetable oil was purchased from Yihai Kerry (corn oil). Methylcellulose was purchased from JRS. Rapeseed oil was purchased from China Grain and Goldfish Co., Ltd. Structural protein was purchased from Hongyang Co., Ltd., Taiwan, China. Yeast extract was purchased from DSM. Colors, gourmet powder, and spices were commercially available products. Example 1: Interaction of curdlan with different proteins Experimental procedure:

[0070] As shown in the experimental group column of Table 1, the desired components such as curdlan and rapeseed protein isolate were weighed, and the following procedures were carried out. 1) Disperse curdlan in water at 40°C and stir for 2 minutes at 600 rpm. 2) Disperse the rapeseed protein isolate in the solution from step 1) and stir at the same rotation speed for 5 minutes. 3) Slowly add the vegetable oil and continue stirring for 5 minutes. 4) Place in a gel cup and heat with steam (100°C) for 30 minutes. 5) After cooling, let stand at 25°C for 2 hours, and measure the corresponding parameters using TPA (TA.XT.plus).

[0071] The TPA mode measurement is set up as follows. -Pre-Test Speed: 2.00mm / s -Test Speed: 2.00mm / s -Post-Test Speed: 2.00mm / s -Target Mode: Strain -Strain: 75% -Time: 5 seconds - Probe: P / 1KSS

[0072] The measurement results are those of the experimental group.

[0073] Control group 1: The rapeseed isolated protein in the experimental group was replaced with an equal amount of soybean isolated protein, and the other operations and measurement methods were the same as those of the experimental group, and the measurement results for control group 1 were obtained.

[0074] Control group 2: The rapeseed protein isolate of the experimental group was replaced with an equal amount of potato protein, and the other operations and measurement methods were the same as those of the experimental group, and the measurement results of control group 2 were obtained.

[0075] The TPA measurement results for the experimental and control groups are shown in Table 2.

[0076] [Table 1]

[0077] [Table 2]

[0078] The hardness in Table 2 refers to gel strength. As can be seen from the experimental data in Table 2, when different proteins and curdlan were gelled together, the gel strength and texture of the one containing rapeseed protein were significantly better than those of the other proteins, followed by soy protein isolate, and the gel strength of the potato protein and curdlan was the weakest. Example 2: Hamburger Experimental procedure:

[0079] The desired raw ingredients were weighed out in the blending ratios shown in Table 3 and operated according to the following process flow to produce 50 g or 70 g of hamburger steak. 1) After dispersing the water and pigment uniformly, the structural protein is soaked (for more than 1 hour). 2) Disperse the hydrocolloid in water (disperse curdlan in room temperature water, disperse MC in ice water), and after stirring thoroughly and uniformly, add protein powder and stir uniformly. Then slowly add rapeseed oil while stirring to obtain an emulsified binder slurry. 3) Cutting the soaked protein particles into small particles. 4) All seasonings and essences are weighed and added directly to the structural protein, along with the emulsified slurry obtained in step 2). 5) Stir thoroughly and knead evenly. 6) The MC sample should be left at 4°C for 0.5 to 1 hour, and the curdlan sample may be left at 40°C, after which it is molded. 7) Once formed, store frozen. 8) Cook each side of the hamburger for about 3-4 minutes, until the center temperature reaches 70°C or higher.

[0080] Texture measurements were performed on the grilled hamburger steaks, measuring and evaluating two parameters, hardness and chewiness, using a texture instrument (TA.XT plus). The texture parameters of the food were measured at an eating temperature of 50°C.

[0081] Texture measurement method: A sample is prepared and the probe is HDP / BS. The measurement conditions are as follows: - Mode: Measurement of Force in Compression -Pre-Test Speed: 1.50mm / s -Test Speed: 1.50mm / s -Post-Test Speed: 10.00mm / s -Target Mode: Distance -Distance: 8.00mm -Trigger Type: Automatic (Pressure, Force) -Trigger Force: 10.0g

[0082] The texture measurement results of the hamburger steak are shown in Table 4.

[0083] [Table 3]

[0084] [Table 4]

[0085] As can be seen from the data in Table 4, the hamburger steak using methylcellulose as a stabilizer (Experiment 1) had the strongest texture, followed by the combination of curdlan and rapeseed protein (Experiment 3).The texture obtained with this combination is equivalent to that obtained with methylcellulose, so this combination can be used as a binder in place of methylcellulose.In addition, a comparison of the textures in Experiments 2 and 4 shows that the combination of curdlan and rapeseed protein can significantly enhance the texture strength of hamburger steaks with the same protein content.

Claims

1. A texture improver comprising curdlan and rapeseed protein, wherein the weight ratio of the curdlan to the rapeseed protein is 1:9 to 9:1, and the protein content of the rapeseed protein is 50% (w / w) or more.

2. A texture improver as described in claim 1, wherein the weight ratio of said curdlan to said rapeseed protein is 1:4 to 4:

1.

3. A texture improver as described in claim 1, wherein the weight ratio of said curdlan to said rapeseed protein is 2:3 to 3:

2.

4. 2. The texture improver of claim 1, wherein the rapeseed protein is a rapeseed protein isolate.

5. The texture improver according to any one of claims 1 to 4, which does not contain methylcellulose.

6. 5. The texture improver according to claim 1, which is a binder for meat or vegetable meat products.

7. A food or beverage comprising the texture improver according to any one of claims 1 to 4, wherein the curdlan is gelled.

8. A meat product or a plant-based meat product comprising the texture improver according to claim 6, wherein the curdlan is gelled.

9. 9. The meat product or plant-based meat product according to claim 8, wherein the texture improver is added so that the weight percentage of curdlan in the meat product or plant-based meat product is 0.1 to 15%.

10. In weight percentage, 1) 20-80% water, 2) 0.1 to 20% rapeseed protein; 3) 1-30% textured vegetable protein; 4) 1-20% oil, 5) 0.1 to 15% curdlan; 6) 0-10% colorants and essences; 9. The plant meat product of claim 8, comprising:

11. 11. The plant meat product of claim 10, wherein the textured plant protein is one or more selected from textured pea protein, fava bean protein, lentil protein, soy protein, and rapeseed protein.

12. 11. The plant-based meat product of claim 10 selected from a sausage, a meat pie, a meatball or a meat loaf.

13. A method for producing the texture improver according to any one of claims 1 to 4, comprising the steps of: a) weighing curdlan and rapeseed protein powder by weight; b) uniformly mixing the weighed powders; A method for producing a texture improver, comprising:

14. the production process includes a step of adding curdlan and rapeseed protein as binders, the amount of the curdlan added is 0.1 to 15% by weight, and the weight ratio of the curdlan to the rapeseed protein is 1:9 to 9:1; The rapeseed protein has a protein content of 50% (w / w) or more, The curdlan is gelled. A method for producing meat products or plant-based meat products.

15. 1. Use of rapeseed protein in improving the gel strength of a composition containing curdlan, the composition is a meat product or a plant-based meat product; The protein content of the rapeseed protein is 50% (w / w) or more; Use of rapeseed protein.

16. Use of the texture improver according to any one of claims 1 to 4, The texture improver is used as a binder to replace methylcellulose in meat or vegetable meat products. Use of texture improvers.

Citation Information

Patent Citations

  • Preparation method of canola protein isolation material

    JP2015145384A

  • Molded-food processing composition

    WO2021100766A1