Texture improving agent

Incorporating pentacyclic triterpene with indigestible dextrin into batter compositions addresses the texture issues of low-sugar heated foods, achieving a moist and easily melt-in-the-mouth texture.

JP2026023722APending Publication Date: 2026-02-13NIPPN CORP
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Patent Information

Application Number
JP2024125858
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2026-02-13

AI Technical Summary

Technical Problem

Low-sugar batter-based heated food products with indigestible dextrin suffer from poor melt-in-the-mouth texture and dryness.

Method used

Incorporating a pentacyclic triterpene with indigestible dextrin into the batter composition improves the texture of heated batter foods.

Benefits of technology

Results in a low-carbohydrate, easily melt-in-the-mouth, and moist-textured heated batter food product.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a low-sugar batter dough-heated food having good meltability and moist palate feeling.SOLUTION: This batter dough composition is obtained by formulating a five ring triterpene together with a hardly digestible dextrin.SELECTED DRAWING: None
Need to check novelty before this filing date? Find Prior Art

Description

[Technical Field]

[0001] The present invention relates to a texture improver for low-carbohydrate heated batter foods. [Background technology]

[0002] Due to growing health consciousness, there is a demand for low-sugar foods such as crepes and pancakes, which are made with batter.

[0003] It is known that resistant starch or resistant dextrin is added to produce low-sugar heated batter foods (Patent Documents 1 and 2).

[0004] Meanwhile, maslinic acid, a pentacyclic triterpene, is known to have various physiological functions, such as muscle-strengthening (Non-Patent Document 1), anti-obesity (Non-Patent Document 2), and lipid metabolism-improving (Non-Patent Document 3). Attempts have been made to use maslinic acid, which possesses such physiological functions, in foods. Patent Document 3 discloses a food ingredient containing carbohydrates and at least one triterpene selected from the group consisting of corosolic acid, maslinic acid, and tormentic acid, as well as a food containing such a food ingredient, and describes that the glycemic index can be reduced. Patent Document 4 discloses a skin-whitening food or beverage or oral skin-whitening agent containing, as an active ingredient, a compound selected from the group consisting of pentacyclic triterpenes, physiologically acceptable salts thereof, or derivatives thereof, and describes that melanin production was suppressed. Patent Document 5 discloses a texture improver for deep-fried food coatings containing a pentacyclic triterpene, and describes that deep-fried food with a crispy, crunchy coating was produced. Patent Document 6 discloses a meat quality improver containing a pentacyclic triterpene, and states that it can produce a tender and juicy processed meat food. Although there are known inventions that expect to exert the physiological functions of maslinic acid in the body and inventions that expect to improve the texture of specific foods, it has not been known until now that a pentacyclic triterpene can improve the texture of a heated batter food that contains indigestible dextrin as one of the ingredients. [Prior art documents] [Patent documents]

[0005] [Patent Document 1] Japanese Patent Publication No. 2023-011175 [Patent Document 2] Patent Publication No. 2021-168705 [Patent Document 3] Japanese Patent Application Laid-Open No. 2006-121949 [Patent Document 4] Retable No. 2002-043736 [Patent Document 5] Japanese Patent Publication No. 2022-136546 [Patent Document 6] Japanese Patent Publication No. 2022-136547 [Non-patent literature]

[0006] [Non-Patent Document 1] Nagai, Narumi et al., J Clin Biochem Nutr. 2019. 64.3: 224-230 [Non-patent document 2] Liou CJ et al., FASEB J. 2019.Nov;33(11):11791-11803 [Non-patent document 3] Perez-Jimenez A et al., Phytomedicine. 2016. Nov 15;23(12):1301-1311 Summary of the Invention [Problem to be solved by the invention]

[0007] By blending indigestible dextrin into a batter composition, a low-sugar batter-based heated food product can be obtained, but such a batter-based heated food product has the problem of poor melt-in-the-mouth texture and a dry texture.

[0008] An object of the present invention is to provide a heated batter food product that is low in carbohydrates, melts easily in the mouth, and has a moist texture. [Means for solving the problem]

[0009] The present inventors discovered that the texture of heated batter dough foods containing indigestible dextrin can be improved by incorporating a pentacyclic triterpene together with indigestible dextrin into a batter dough composition, and thus completed the present invention.

[0010] That is, the present invention includes the following aspects. [1] A texture improver for heated batter containing indigestible dextrin, which contains a pentacyclic triterpene. [2] A batter composition comprising the texture improver according to [1], a starch raw material, and indigestible dextrin. [3] The batter composition according to [2], containing a texture modifier in an amount such that the pentacyclic triterpene is 0.3 parts by mass or more per 100 parts by mass of the indigestible dextrin. [4] A batter composition according to [2] or [3], which contains 3 to 50% by mass of resistant dextrin relative to the total mass of the starch raw material and the resistant dextrin. [5] A method for producing a heated batter food product, comprising the steps of: mixing the batter composition according to any one of [2] to [4] with an aqueous liquid ingredient to obtain batter; and heating the batter. [Effects of the Invention]

[0011] According to the present invention, it is possible to produce a heated batter food product that is low in carbohydrates, melts easily in the mouth, and has a moist texture. [Brief explanation of the drawings]

[0012] [Figure 1] 1 shows an HPLC analysis chart of the pentacyclic triterpene powder obtained in Production Example 1. DETAILED DESCRIPTION OF THE INVENTION

[0013] The present invention relates to a texture improver for heated batter foods containing indigestible dextrin, which contains a pentacyclic triterpene.

[0014] <Pentacyclic triterpene> Triterpenes are compounds with a basic skeleton of 30 carbon atoms, with pentacyclic triterpenes being a prime example. Pentacyclic triterpenes are pentacyclic compounds consisting of six isoprene units. While the basic carbon number is 30, some have a larger or smaller number of carbon atoms due to rearrangement, oxidation, elimination, or alkylation during biosynthesis. Pentacyclic triterpenes are generally classified by their skeleton. Examples include oleanane triterpenes, ursane triterpenes, lupane triterpenes, hopane triterpenes, selatan triterpenes, friedelane triterpenes, taraxerane triterpenes, taraxastane triterpenes, multiflorane triterpenes, and germanican triterpenes.

[0015] Oleanane-type triterpenes are pentacyclic triterpenes having the structure represented by the following formula 1 as a basic skeleton, and maslinic acid (formula 2), oleanolic acid (formula 3), glycyrrhetinic acid (formula 4), etc. are classified into this group. [ka] (Formula 1) Oleanane triterpenes [ka] (Formula 2) Maslinic acid [ka] (Formula 3) Oleanolic acid [ka] (Formula 4) Glycyrrhetinic acid

[0016] Ursane-type triterpenes are pentacyclic triterpenes having the structure represented by the following formula 5 as a basic skeleton, and corosolic acid (formula 6), ursolic acid (formula 7), etc. are classified into this group. [ka] (Formula 5) Ursane triterpenes [ka] (Formula 6) Corosolic acid [ka] (Formula 7) Ursolic acid

[0017] Lupane-type triterpenes are pentacyclic triterpenes having a structure represented by the following formula 8 as a basic skeleton, and betulinic acid (formula 9), alfitolic acid (formula 10), etc. are classified into this group. [ka] (Formula 8) Lupane triterpenes [ka] (Formula 9) Betulinic acid [ka] (Formula 10) Alphitolic acid

[0018] Hopane-type triterpenes are pentacyclic triterpenes having a structure represented by the following formula 11 as a basic skeleton, and leucotic acid (formula 12) and the like are classified into this group. [ka] (Formula 11) Hopane triterpenes [ka] (Formula 12) Leucotylic acid

[0019] In the texture modifier of the present invention, the pentacyclic triterpene is preferably any one or more selected from the group consisting of oleanane-type triterpenes, ursane-type triterpenes, lupane-type triterpenes, and hopane-type triterpenes, more preferably any one or more selected from the group consisting of oleanane-type triterpenes and ursane-type triterpenes, and even more preferably one or more selected from the group consisting of maslinic acid, oleanolic acid, and ursolic acid. When a carboxyl group is present in the molecule, it is generally referred to as a pentacyclic triterpene acid, and in this specification, pentacyclic triterpene acids are included in pentacyclic triterpenes.

[0020] Pentacyclic triterpenes are biosynthesized by various plants and are ubiquitously or locally present in the fruits, petals, cotyledons, stems, roots, etc. of the plants. For example, maslinic acid, which is classified as a group of oleanane-type triterpenes, is found in olive fruits and leaves, jujube, almonds, banaba leaves, sage, apples, cranberries, quince, etc. Oleanolic acid, which is classified as a group of oleanane-type triterpenes, is found in olive fruits and leaves, grapes, beets, jujube, almonds, banaba leaves, sage, hawthorn, raspberries, quince, rosemary leaves, guava, perilla leaves, blueberries, prunes, loquats, pomegranates, lemon balm, basil, rosehips, persimmons, Swertia japonica, etc. Ursolic acid, which is classified as a group of ursane-type triterpenes, is found in apples, basil, bilberries, cranberries, elderflowers, peppermint, rosemary, lavender, oregano, thyme, hawthorn, prunes, etc.

[0021] Pentacyclic triterpenes contain functional groups such as hydroxyl, carboxyl, aldehyde, and ketone groups, and these functional groups exist in plants as modified or intramolecularly crosslinked compounds. For example, glycyrrhizin, found in licorice and used as a sweetener, is a glycoside formed by ether-linking two glucuronic acids via the 3β-hydroxyl group of glycyrrhetinic acid, a type of oleanane triterpene. Compounds modifying these functional groups are generally eliminated during extraction, fractionation, and purification, and the pentacyclic triterpenes obtained through these processes are generally in the free form.

[0022] Pentacyclic triterpenes can be obtained by extraction, fractionation, and purification from plants containing them using known methods, or by chemical synthesis. Commercially available products can also be suitably used. They can also be used in the form of pharmacologically acceptable salts and / or derivatives. Pentacyclic triterpenes can be a single component or a mixture (combination) of two or more components.

[0023] Pentacyclic triterpenes may be used in the form of plant extracts containing them.Oleanane triterpenes have a relatively high content, have been eaten for a long time, and can be reused after oil extraction, so they are preferably used in the form of olive fruit extracts or almond kernel extracts.Ursane triterpenes can be reused after juice extraction or food processing, so they are preferably used in the form of apple peel extracts.

[0024] The olive fruit extract contains maslinic acid and oleanolic acid as the major triterpenes. For example, maslinic acid can be extracted and purified from dried, semi-dried, or undried olives containing moisture, or olive oil pomace generated during the oil extraction process. Furthermore, defatted dried olives, obtained by removing the oil content with a fat-soluble organic solvent such as n-hexane, can also be used as the starting material. There are no particular limitations on the olive variety used, and olives can be used regardless of their origin (domestic or foreign), cultivation, or extraction. Specifically, oleanane-type triterpenes are extracted from these raw materials using lower alcohols (e.g., ethanol, methanol, n-propanol, isopropanol, n-butanol, etc.) capable of extracting maslinic acid or hydrous lower alcohols. If necessary, saponification and neutralization can be performed, followed by fractionation and purification using adsorbents such as octadecyl silica (ODS), silica gel, or synthetic adsorbents to obtain a triterpene mixture containing maslinic acid and / or oleanolic acid as the main components. The triterpenes extracted from olive fruit in this way generally contain maslinic acid and oleanolic acid in a ratio of 4:1, but depending on the growing conditions and region of the olive fruit, or the oil extraction conditions, the ratio can be 1:1 to 7:1.

[0025] In the case of the almond kernel extract, the starting material can be almonds themselves, almond oil press cake, by-products discharged during the production of processed foods such as snacks, or by-products such as the shells and husks discharged during almond threshing, and the pentacyclic triterpenes can be extracted with a lower alcohol or a hydrous lower alcohol, followed by saponification and neutralization if necessary, and fractionation and purification using an adsorbent such as octadecyl silica (ODS), silica gel, or a synthetic adsorbent to obtain a triterpene mixture containing maslinic acid and / or oleanolic acid as the main components. Note that almond shells are generally used as fuel material, and the husks as compost, etc.

[0026] In the case of the apple peel extract, a mixture of pentacyclic triterpenes containing ursolic acid as the main component can be obtained by extracting pentacyclic triterpenes using lower alcohols or hydrous lower alcohols as starting materials, such as apple juice pomace or by-products such as apple peels peeled at food factories, optionally subjecting the extract to saponification or neutralization, and fractionating and purifying the extract using octadecyl silica (ODS), silica gel, synthetic adsorbents, or the like as an adsorbent.

[0027] When plants other than olive fruit, almond, and apple peel are used as starting materials, pentacyclic triterpenes can be obtained by a method suitable for the plant used as the starting material. Furthermore, the types and composition ratios of the components of the obtained pentacyclic triterpenes depend on the plant used as the starting material.

[0028] The purified fractions of oleanane-type triterpenes such as maslinic acid and oleanolic acid are concentrated and dried to a solid, and are in the form of a white to brownish-red powder, the brown color of which increases depending on the content of impurities. All of these are soluble in aqueous alcohol.

[0029] Physiologically acceptable salts of pentacyclic triterpenes include, for example, salts with inorganic acids such as hydrochloric acid, sulfuric acid, phosphoric acid, hydrobromic acid, hydroiodic acid, nitric acid, pyrosulfuric acid, and metaphosphoric acid; salts with organic acids such as citric acid, benzoic acid, acetic acid, propionic acid, fumaric acid, maleic acid, and sulfonic acid; and alkali metal salts such as sodium salts and potassium salts.

[0030] <Texture improver for cooked batter containing indigestible dextrin> The texture modifier of the present invention contains a pentacyclic triterpene. The texture modifier may consist of a pentacyclic triterpene or may contain other ingredients. The texture modifier of the present invention may be a mixture with an inclusion compound, a carrier, fats and oils, an emulsifier, an excipient, etc., to improve workability when preparing a batter composition or batter dough. For example, the texture modifier can be used as an inclusion composition in which the texture modifier is included in an inclusion compound such as cyclodextrin or highly branched cyclic dextrin; a support composition in which the texture modifier is supported on an edible carrier such as grain flour or starch; an oil and fat solution composition dissolved or dispersed in edible fats and oils; a W / O or O / W emulsion composition of fats and oils, water, and an emulsifier; or an excipient composition with an excipient such as purified water, alcohol, glycerin, dextrin, lactose, mannitol, starch, starch syrup, or honey. The content of the pentacyclic triterpene in the texture modifier is not particularly limited and can be adjusted as appropriate so that the effects of the present invention are obtained when a heated batter dough food product is produced. For example, the content may be 1% by mass or more of the total amount of the texture modifier, preferably 5% by mass or more, more preferably 10% by mass or more, even more preferably 20% by mass or more, and even more preferably 30% by mass or more.

[0031] The texture improver of the present invention is intended for use in foods made with batter containing resistant dextrin. Generally, batter foods are prepared by heating a batter prepared by mixing a starchy ingredient such as wheat flour with optional auxiliary ingredients such as sugars, fats and oils, and baking powder with an aqueous liquid ingredient such as water. Known examples of such batter foods include hotcakes, pancakes, and crepes. The batter foods of the present invention contain resistant dextrin. Resistant dextrin is a starch degradation product that escapes enzymatic digestion in the small intestine of healthy humans. The resistant dextrin used in the present invention refers to a water-soluble dietary fiber obtained by roasting starch such as cornstarch in the presence of acid, hydrolyzing the resulting dextrin with a digestive enzyme such as amylase, and recovering the resistant components. Resistant dextrin can be produced by known methods, but commercially available products can also be used. The starch raw material from which the indigestible dextrin is produced is not particularly limited as long as it is edible, and examples thereof include wheat starch, rice starch, corn starch, potato starch, sweet potato starch, and sago starch.

[0032] <Batter composition> The present invention also relates to a batter composition comprising the texture improver of the present invention, a starch raw material, and an indigestible dextrin. In the present invention, the "batter composition" refers to a composition that becomes batter when an aqueous liquid raw material is mixed therewith.

[0033] The starch raw material is made up of cereal flours and / or starches. "Cereal flours" refers to flours derived from cereals such as common wheat, durum wheat, rice, rye, barley, corn, buckwheat, soybean, barnyard millet, foxtail millet, and amaranth, as well as tuber or root flours derived from staple crops such as potato, taro, cassava, sweet potato, and yam, and is preferably made up of wheat flour as the main component, optionally containing cereal flours other than wheat flour, tuber flour, or root flour. "Starches" refers to starches separated and refined from grains, tubers, tuberous roots, tree trunks, etc., and their waxy or high-amylose varieties (wheat starch, rice starch, corn starch, tapioca starch, potato starch, sweet potato starch, mung bean starch, sago starch, etc., as well as their waxy and high-amylose starches), as well as modified starches obtained by pregelatinizing, etherifying, esterifying, acetylating, crosslinking, oxidizing, heat-treating, enzymatically treating, etc., or combinations thereof. The starchy raw material may consist of cereal flours, starches, or a mixture of cereal flours and starches, and can be selected appropriately depending on the type of batter-based heated food product to be produced or the desired function, such as texture improvement or durability over time, and the blending ratio can be adjusted appropriately.

[0034] In the present invention, a low carbohydrate content can be achieved by replacing part of the starch ingredients in a conventional batter composition with resistant dextrin, thereby reducing the total amount of carbohydrates in the batter composition. The amount of resistant dextrin added is preferably 3 to 50% by mass, more preferably 10 to 45% by mass, and even more preferably 20 to 40% by mass, based on the total mass of the starch ingredients and resistant dextrin.

[0035] The content of the texture modifier in the batter dough composition is not particularly limited, but is preferably an amount such that the pentacyclic triterpene is present in an amount of 0.03 parts by mass or more, more preferably 0.1 parts by mass or more, even more preferably 0.3 parts by mass or more, and even more preferably 1 part by mass or more per 100 parts by mass of resistant dextrin. The upper limit of the content of the texture modifier in the batter dough composition is not particularly limited from the viewpoint of improving texture, but from the viewpoint of cost-effectiveness in terms of the amount of raw material used, is preferably an amount such that the pentacyclic triterpene is present in an amount of 20 parts by mass, more preferably 15 parts by mass or less, even more preferably 10 parts by mass or less, and even more preferably 7.5 parts by mass or less per 100 parts by mass of resistant dextrin.

[0036] The batter composition of the present invention may contain optional ingredients commonly used in conventional heated batter dough foods, such as air bubble-generating materials, chemical leavening agents, sugars, and fat and oil ingredients. Examples of air bubble-generating materials include dried whole eggs and egg white powder. Examples of chemical leavening agents include composite leavening agents such as baking powder and ispata, and simple leavening agents such as baking soda and ammonium bicarbonate. Note that composite leavening agents are those based on a simple leavening agent and contain auxiliary agents such as sodium bitartrate, calcium dihydrogen phosphate, fumaric acid, alum, and ammonium chloride, and a blocking agent such as starch. When using a simple leavening agent, an appropriate amount of auxiliary agent is added depending on the amount used. Examples of sugars include glucose, fructose, lactose, sugar, and isomaltose. Examples of fat and oil ingredients include shortening, lard, margarine, butter, and liquid oil.

[0037] The batter composition of the present invention may be a premix. Generally, a premix is ​​a mixture of a starchy raw material with powdered raw materials such as chemical leavening agents, seasonings, flavorings, and colorings, and optionally oils and fats, depending on the intended use. In addition to the texture improver, starch raw material, and indigestible dextrin, the premix of the present invention can contain auxiliary ingredients typically used in the production of heated batter dough foods, such as sugars such as glucose, fructose, lactose, sugar, and isomaltose; egg yolk, egg white, whole egg, and powdered versions of these and other egg-derived components; dairy ingredients such as milk powder, skim milk powder, and soy milk powder; oils and fats such as shortening, lard, margarine, butter, palm oil, soybean oil, corn oil, rapeseed oil, olive oil, and linseed oil; emulsifiers such as sucrose fatty acid esters, glycerin fatty acid esters, lecithin, and saponin; leavening agents such as baking powder and baking soda; thickening polysaccharides such as xanthan gum, locust bean gum, gellan gum, pectin, carrageenan, guar gum, tamarind gum, and gum arabic; cellulose derivatives such as methylcellulose; inorganic salts such as salt; preservatives; flavorings; spices; vitamins; and fortifiers such as calcium.

[0038] <Method of manufacturing heated batter food> The present invention also relates to a method for producing a heated batter food product, which comprises the steps of mixing the batter composition of the present invention with an aqueous liquid ingredient to obtain batter, and heating the batter.

[0039] As the aqueous liquid raw material in the step of obtaining batter dough, any liquid raw material generally used in the manufacture of batter dough can be used without particular limitation, such as water, milk, eggs, etc., and one of these can be used alone or two or more can be used in combination. The means for mixing the batter dough composition and the aqueous liquid raw material is not particularly limited, and a commonly used mixer or the like can be used.

[0040] The batter is heated according to the general heating method for batter-heated foods. For example, crepes can be made by placing the batter on a hot plate at 170-190°C and baking for 30-60 seconds. Pancakes can be made by placing the batter on a hot plate at 170-190°C and baking on both sides. [Example]

[0041] The present invention will be described in more detail below based on examples, but the present invention is not limited to these examples.

[0042] <Production Example 1: Production of Pentacyclic Triterpene Powder> (1) Olive oil was extracted from olive fruits by cold pressing, and olive fruit oil pomace was obtained. (2) 250 parts by mass of 90% aqueous ethanol (v / v) was added to 100 parts by mass of olive fruit oil press cake, and the mixture was heated at 70°C for 2 hours with stirring. The liquid portion obtained by solid-liquid separation was distilled under reduced pressure using an evaporator to obtain a concentrated liquid. (3) The concentrated solution was dispersed in water and subjected to column chromatography using the synthetic adsorption resin Amberlite XAD4 (Organo Corporation) as the carrier. Triterpene-rich fractions were isolated by stepwise elution in 10% increments from 50% aqueous ethanol to 100% ethanol. (4) The triterpene-rich fraction was distilled under reduced pressure to prepare an oily olive fruit-derived triterpene-containing liquid. (5) 100 parts by mass of this triterpene-containing liquid was added with 100 parts by mass of 20% aqueous ethanol, mixed thoroughly to dissolve, and left to stand overnight at 4°C to precipitate. The precipitate was collected by filtration, washed, dried under reduced pressure, and then powdered using a pin mill to obtain a pentacyclic triterpene powder. (6) 1 g of the pentacyclic triterpene powder was dissolved in methanol and subjected to HPLC analysis. Figure 1 shows the HPLC chart. Peak A is maslinic acid, and peak B is oleanolic acid. Peaks were identified by comparison of retention times with those of a standard sample and by LC / MS analysis, and quantitative values ​​were calculated based on the peak area of ​​the standard sample. The results indicated that the pentacyclic triterpene powder contained 50% by mass of maslinic acid and 30% by mass of oleanolic acid (both oleanane-type triterpenes derived from olive fruit).

[0043] <Production Example 2: Production of pancakes> (1) According to the formulation in Table 1, 71.7 parts by mass of wheat flour (soft wheat flour, manufactured by Nippon Co., Ltd., "Diamond"), 20 parts by mass of sugar (granulated sugar, manufactured by Taiheiyo Sugar Co., Ltd., "TTGA Special Granulated Sugar"), 2 parts by mass of glucose (manufactured by Sanei Sugar Chemical Co., Ltd., "Hi-Mesh"), 0.3 parts by mass of salt (manufactured by Naruto Salt Co., Ltd., "Special Grade Salt Uzu Salt"), 2 parts by mass of fats and oils (shortening, manufactured by Taiyo Yushi Co., Ltd., "Silver VS"), 1.3 parts by mass of baking soda (manufactured by AGC Corporation, "Sodium Bicarbonate"), 2.6 parts by mass of acidic agent (manufactured by Omiya Shokuhin Co., Ltd., "Sodium Acid Pyrophosphate SAP-T"), 0.1 parts by mass of thickener (manufactured by Sumitomo Pharma Food & Chemical Co., Ltd., "Echo Gum") were mixed in a mixer to prepare a mixed flour. 25 parts by mass of whole eggs were mixed with 100 parts by mass of the mixed flour, and 70 parts by mass of water were added and mixed until homogeneous, to obtain a pancake batter. (2) The mixture was left standing at room temperature for 10 minutes. (3) Immediately after, 60g of dough was placed on an iron plate heated to 170℃, baked for 3 minutes, then flipped over and baked for 2 minutes.

[0044] [Table 1]

[0045] <Evaluation Example 1: Sensory evaluation of pancakes> Hot cakes were produced according to Production Example 2, allowed to cool, and then refrigerated (5°C) for 48 hours, after which a sensory evaluation was carried out by 10 experienced panelists according to the evaluation criteria in Table 2.

[0046] [Table 2]

[0047] <Test Example 1: Effect of combined use of pentacyclic triterpene and indigestible dextrin> A mixed flour was prepared by mixing wheat flour, indigestible dextrin ("Fibersol 2" manufactured by Matsutani Chemical Industry Co., Ltd.), and the pentacyclic triterpene powder produced in Production Example 1 in the amounts shown in Table 3. Pancakes were produced in accordance with Production Example 2, except that the amount of water added was adjusted so that the dough viscosity was equivalent to that of Production Example 2, and evaluation was performed in accordance with Evaluation Example 1.

[0048] Compared with Reference Example 1 (Production Example 2), Comparative Example 1, in which resistant dextrin was used alone, had an inferior texture, but Example 1, in which resistant dextrin was used in combination with pentacyclic triterpene powder, had a significantly improved texture. Despite containing resistant dextrin, Example 1 had a better texture than Comparative Example 2, in which pentacyclic triterpene powder was used alone.

[0049] [Table 3]

[0050] <Test Example 2: Investigation of the amount of pentacyclic triterpenes> A mixed flour was prepared by mixing wheat flour, indigestible dextrin ("Fibersol 2" manufactured by Matsutani Chemical Industry Co., Ltd.), and the pentacyclic triterpene powder produced in Production Example 1 in the amounts shown in Table 4. Pancakes were produced in accordance with Production Example 2, except that the amount of water added was adjusted so that the dough viscosity was equivalent to that of Production Example 2, and evaluation was performed in accordance with Evaluation Example 1.

[0051] Compared to Reference Example 1 (Manufacturing Example 2), Comparative Example 1, in which indigestible dextrin was used alone, had an inferior texture, whereas Examples 1 to 4, in which indigestible dextrin was used in combination with pentacyclic triterpene powder, had an improved texture.

[0052] [Table 4]

[0053] <Test Example 3: Examination of the amount of indigestible dextrin> A mixed flour was prepared by mixing wheat flour, indigestible dextrin ("Fibersol 2" manufactured by Matsutani Chemical Industry Co., Ltd.), and the pentacyclic triterpene powder produced in Production Example 1 in the amounts shown in Table 5. Pancakes were produced according to Production Example 2, except that the amount of water added was adjusted so that the dough viscosity was equivalent to that of Production Example 2, and evaluation was performed according to Evaluation Example 1.

[0054] Compared with Reference Example 1 (Production Example 2), Comparative Examples 1, 3, 5, and 6, in which resistant dextrin was used alone, had an inferior texture, but Examples 1, 5, 6, and 7, in which resistant dextrin was used in combination with a pentacyclic triterpene powder, each had an improved texture compared to the Comparative Examples in which the same amount of resistant dextrin was used. In particular, Examples 1, 5, and 6, in which the amount of resistant dextrin was 50% by mass or less relative to the total mass of the starch raw material and resistant dextrin, had a better texture than Comparative Example 2, in which the same amount of pentacyclic triterpene powder was used alone, despite the use of resistant dextrin.

[0055] [Table 5]

Claims

1. A texture improver for heated batter containing indigestible dextrin, which contains a pentacyclic triterpene.

2. A batter composition comprising the texture improver according to claim 1, a starchy raw material, and indigestible dextrin.

3. 3. The batter composition according to claim 2, wherein the texture modifier is contained in an amount such that the pentacyclic triterpene is 0.3 parts by mass or more per 100 parts by mass of the indigestible dextrin.

4. 3. The batter composition according to claim 2, comprising 3 to 50% by mass of the indigestible dextrin based on the total mass of the starch raw material and the indigestible dextrin.

5. A method for producing a heated batter food product, comprising the steps of: mixing the batter composition according to any one of claims 2 to 4 with an aqueous liquid ingredient to obtain batter; and heating the batter.

Citation Information

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