EP4539673A1 - Fat analogue for use in a meat analogue product - Google Patents
Fat analogue for use in a meat analogue productInfo
- Publication number
- EP4539673A1 EP4539673A1 EP23732992.5A EP23732992A EP4539673A1 EP 4539673 A1 EP4539673 A1 EP 4539673A1 EP 23732992 A EP23732992 A EP 23732992A EP 4539673 A1 EP4539673 A1 EP 4539673A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- analogue
- fat
- konjac
- starch
- recipe
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Withdrawn
Links
Classifications
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23D—EDIBLE OILS OR FATS, e.g. MARGARINES, SHORTENINGS OR COOKING OILS
- A23D7/00—Edible oil or fat compositions containing an aqueous phase, e.g. margarines
- A23D7/005—Edible oil or fat compositions containing an aqueous phase, e.g. margarines characterised by ingredients other than fatty acid triglycerides
- A23D7/0053—Compositions other than spreads
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23D—EDIBLE OILS OR FATS, e.g. MARGARINES, SHORTENINGS OR COOKING OILS
- A23D7/00—Edible oil or fat compositions containing an aqueous phase, e.g. margarines
- A23D7/02—Edible oil or fat compositions containing an aqueous phase, e.g. margarines characterised by the production or working-up
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23J—PROTEIN COMPOSITIONS FOR FOODSTUFFS; WORKING-UP PROTEINS FOR FOODSTUFFS; PHOSPHATIDE COMPOSITIONS FOR FOODSTUFFS
- A23J3/00—Working-up of proteins for foodstuffs
- A23J3/22—Working-up of proteins for foodstuffs by texturising
- A23J3/225—Texturised simulated foods with high protein content
- A23J3/227—Meat-like textured foods
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L19/00—Products from fruits or vegetables; Preparation or treatment thereof
- A23L19/10—Products from fruits or vegetables; Preparation or treatment thereof of tuberous or like starch containing root crops
- A23L19/115—Konjak; Konntaku
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L29/00—Foods or foodstuffs containing additives; Preparation or treatment thereof
- A23L29/03—Organic compounds
- A23L29/035—Organic compounds containing oxygen as heteroatom
- A23L29/04—Fatty acids or derivatives
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L29/00—Foods or foodstuffs containing additives; Preparation or treatment thereof
- A23L29/20—Foods or foodstuffs containing additives; Preparation or treatment thereof containing gelling or thickening agents
- A23L29/206—Foods or foodstuffs containing additives; Preparation or treatment thereof containing gelling or thickening agents of vegetable origin
- A23L29/212—Starch; Modified starch; Starch derivatives, e.g. esters or ethers
-
- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
- A23L29/00—Foods or foodstuffs containing additives; Preparation or treatment thereof
- A23L29/20—Foods or foodstuffs containing additives; Preparation or treatment thereof containing gelling or thickening agents
- A23L29/206—Foods or foodstuffs containing additives; Preparation or treatment thereof containing gelling or thickening agents of vegetable origin
- A23L29/244—Foods or foodstuffs containing additives; Preparation or treatment thereof containing gelling or thickening agents of vegetable origin from corms, tubers or roots, e.g. glucomannan
Definitions
- Meats typically comprise three tissues: muscle, connective tissue and fat, and sometimes include skin made from mostly connective tissue and fat.
- a popular meat product is pork belly, which is a boneless and fatty cut of meat from the belly of a pig. Pork belly is particularly popular in Hispanic, Chinese, Danish, Norwegian, Korean, Thai and Filipino cuisine.
- the invention relates to a method of making a fat analogue, said method comprising dispersing starch, konjac, and oil in liquid, adjusting pH and heating to form a fat analogue.
- the fat analogue is highly similar to the fat found in real pork belly meat products.
- the invention relates to a method of making a fat analogue, said method comprising dispersing waxy starch and konjac in water, adjusting the pH, and heating to form a fat analogue.
- the invention relates to a method of making a fat analogue, said method comprising dispersing waxy starch, konjac, and plant oil in water, adding alkali solution to adjust pH, and heating to form a fat analogue.
- the invention relates to a method of making a fat analogue, said method comprising i. dispersing waxy starch, konjac, plant oil, and optionally salt, in water; ii. adding alkali solution to adjust to between pH 8.5 to 11; and iii. molding and heating to form a fat analogue.
- the waxy starch comprises at least 80% amylopectin. Preferably, the waxy starch comprises at least 90% amylopectin.
- the waxy starch comprises up to 10% amylose.
- the waxy starch is essentially free of amylose.
- the fat analogue may comprise between 1 to 9 wt%, or between 2 to 8 wt%, or between 3 to 7 wt%, or between 4 to 6 wt% waxy starch, or between 4.5 to 5.5 wt% starch. In one embodiment, the fat analogue comprises 5 wt% waxy starch, or about 5 wt% waxy starch.
- the konjac is konjac flour or konjac glucomannan.
- the fat analogue may comprise between 2 to 4 wt%, or between 1.8 to 4.2 wt% konjac, or between 2.5 to 3.5 wt% konjac, or between 2.7 to 3.3 wt% konjac. In one embodiment, the fat analogue comprises 3wt% konjac or about 3 wt% konjac.
- the plant oil is dispersed in water to form coarse droplets before the addition of the konjac, waxy starch, and optional addition of salt.
- the plant oil is high oleic sunflower oil.
- the alkali solution is used to adjust pH to between 9 to 10 and trigger gelation.
- the alkali solution is a metal carbonate solution.
- the fat analogue may comprise at least 0.1 wt% metal carbonate, or at least 0.2 wt% metal carbonate, or at least 0.25 wt% metal carbonate; or about 0.3 wt% metal carbonate; or up to 0.5 wt% metal carbonate.
- the metal carbonate is potassium carbonate.
- the metal carbonate is sodium carbonate.
- a skin analogue is applied as a layer onto the fat analogue, for example a skin analogue as described herein.
- the invention further relates to a fat analogue, made by a method according to the invention.
- the invention further relates to a fat analogue comprising 1 to 10 wt% oil, 75 to 95 wt% water, 1 to 9 wt% konjac, 1 to 10 wt% waxy starch, and optionally 0.1 to 2 wt% salt.
- the invention further relates to the use of a fat analogue according to the invention in a meat analogue product, wherein the meat analogue product is pork belly, burger, or sausage.
- the fat-like texture and elastic and smooth appearance of the fat analogue is developed from the combination of konjac glucomannan, waxy starch and oil.
- the oil is added to water whilst mixing, for example at speed 3 to 3.5 using a Thermomix.
- the speed can be increased to about level 7 to 8 for about 20 seconds to make a coarse emulsion.
- the dry mix of konjac, waxy maize starch, and sodium chloride is added to the coarse emulsion.
- Mixing continues at a typical speed 3 to 3.5 to disperse and hydrate the dry mix ingredients.
- the hydrated mass can be transferred, for example to a Kenwood mixer, to fully hydrate by mixing for about 15 minutes.
- Potassium carbonate powder can be solubilized in water, for example in about 5% of the water used for the fat analogue, and mixed into the dough for about 3 minutes.
- the dough can be heated, for example in an air oven, at about 100°C for about 50 minutes.
- the core temperature should reach about 85°C for about 20 minutes.
- a gel-like texture that is very similar to animal pork belly fat is produced. Dough texture was found to be further modified through freezing. Freezing in general increases the hardness.
- Konjac glucomannan has a high capacity of water holding and forms elastic dough or gel with weak alkali and heating through a controlled deacetylation process.
- the fat analogue preferably comprises between 1 to 5% konjac, more preferably between 1.5 to 4% konjac.
- Konjac comprises glucomannan which is water soluble, and forms heat stable, elastic gel in the presence of alkali condition and heating.
- the alkali concentration is typically between 0.1 to 0.6%, preferably between 0.2 to 0.4%, so that the pH range is between 9 to 10.
- the pH range is more important than the wt% alkali.
- Waxy maize starch was found to reduce the hardness of the konjac gels, provides creaminess and freeze-thaw stability. Syneresis is avoided and textural changes during freezing are reduced.
- the waxy starch comprises greater than 90% amylopectin.
- the waxy starch comprises less than 10% amylose.
- Waxy starch is essentially free from amylose. Mung bean starch and pea starch are higher in amylose, comprising 40% and 50%, respectively.
- Potato starch comprises about 25% amylose.
- Tapioca starch comprises about 17% amylose. Waxy starch was found to reduce the gel strength of the konjac gels. Amylose was found to have high synergistic gelation with konjac.
- the waxy maize starch comprises about 97 wt% carbohydrate, and up to about 0.15 wt% fat.
- the fat analogue can be prepared using an emulsifier, for example soy protein at a typical final concentration of at least 0.2%.
- the fat analogue of the invention typically comprises about 80.7 wt% water; about 5 wt% water for potassium carbonate; about 5 wt% Sunflower Oil High Oleic Type 20 L; about 0.3 wt% potassium carbonate; about 3 wt% konjac powder; about 5 wt% waxy maize starch; and about 1 wt% NaCI.
- a skin-like texture and appearance can be developed from konjac glucomannan, waxy starch and soy sauce.
- Firmer texture is obtained by using a higher amount of konjac glucomannan and alkali.
- Higher skin translucency is obtained when oil is not used.
- Soy sauce is used mainly to provide a brown color.
- the skin analogue typically comprises about 89.7 wt% water; about 1.3 wt% soy sauce; about 5 wt% konjac powder; about 5 wt% waxy maize starch; and about 0.3 wt% sodium carbonate.
- compositions disclosed herein may lack any element that is not specifically disclosed herein.
- a disclosure of an embodiment using the term “comprising” includes a disclosure of embodiments “consisting essentially of” and “consisting of” and “containing” the components identified.
- the methods disclosed herein may lack any step that is not specifically disclosed herein.
- a disclosure of an embodiment using the term “comprising” includes a disclosure of embodiments “consisting essentially of” and “consisting of” and “containing” the steps identified. Any embodiment disclosed herein can be combined with any other embodiment disclosed herein unless explicitly and directly stated otherwise.
- wt% or "wt.%” used herein refers to weight % of the total composition, for example of the fat analogue product.
- the term "essentially free" insofar as it relates to an ingredient or component means that the ingredient or component is present in an amount of less than 0.5 wt%, or less than 0.1 wt%, or is entirely absent.
- a fat analogue that mimics the cooked animal pork belly fat was prepared according to the recipe below:
- a skin analogue that mimics the cooked pork belly skin was prepared according to the recipe below:
- Soy sauce was added in waterfirst, and the dry ingredients were then dispersed and hydrated in the solution for 20min at room temperature.
- Sodium carbonate powder was solubilized in dedicated water (5% of the water used for the recipe) and then mixed into the dough for 3min.
- the dough was ready to apply together with the fat analogue made as described in Example 1, and heated in the oven 100°C for 50min (core temperature 85°C for 20min) to set the gel.
- the skin analogue and fat analogue are made separately and then cooked together.
- the fat analogue without skin was chopped into smaller pieces (between 0.1 to 0.5cm diameter) and incorporated into the extrudates (HME) with binder and coconut fat.
- the fat-like pieces provided the mouthfeel of a moist and elastic fat tissue.
- the fat analogue without skin was chopped into smaller pieces (between 0.2 to 0.8cm) and incorporated into the extrudates (HME/TVP) with binder and coconut fat.
- the pieces provided the appearance of fat tissue (translucent, whitish), and mouthfeel of a moist and elastic fat tissue.
- Example 4 Fat analogue experimental plan: prototype recipes & process, sensory & analytical characterization
- a coarse emulsion was formed by mixing the water and the high oleic sunflower oil at room temperature (high shear 4000 - 6000 rpm).
- a dry mix comprising KGM, starch, and sodium chloride was then added while applying a gentle mixing (500 - 1000 rpm).
- the mixture was further mixed for 15min under the same conditions to ensure proper dispersion of the ingredients and hydration of the konjac glucomannan.
- a solution of potassium carbonate was then added to trigger the gelation of KGM in alkali conditions and provide the fat analogue texture. The mixture was then further mixed in the same conditions for 3 minutes.
- the mass was then molded in several identical metallic rings (20mm height, 32mm diameter) allowing the standardization of the volume and shape for the texture and sensory analyses.
- the experimental plan was designed to define the best fat analogue texture matching with pork belly animal fat reference and was set-up to vary the following recipe parameters: KGM concentration, potassium carbonate concentration, nature of starch, concentration of starch, lipid content.
- the best-in-class recipe (B), described in example 1, was defined by performing technical sensory assessments and comparing with texture attributes of the real pork belly animal fat reference. The experimental plan was then designed around this best-in-class recipe to understand the impact of each recipe parameter on texture and to confirm that recipe (B) is the one fitting the pork belly animal fat reference.
- TPA Texture Profile Analysis
- the TPA method involves a double compression of the prototypes, standardized in volume and shape, using a compression plate with a 75mm diameter.
- the panelists received 2 training sessions before assessing samples, each of length 1 hour. For the sensory evaluation, they were asked to perform Rate All That Apply (RATA) sensory methodology. A five-category scale was used with, from left to right, “not perceived”, “slightly”, “moderately”, “very” and “extremely” as verbal labels. To properly set the intensity scales of each texture attribute within the panel and align the ranking, a known warm-up sample was proposed to panelists at the beginning of each sensory session with the related scores for each attribute. The panelists then scored the samples of the experimental plan based on the scales set for the warm-up sample. Data were collected using EyeQuestion® software (Logic 8, Elst, the Netherlands) in individual sensory booths using not to be biased by samples appearance.
- RPA Rate All That Apply
- Samples were identified using a 3-digit random code. Sensory evaluation was performed under red light to neutralize the impact of color variation among samples on texture assessment during the tasting. To avoid saturation effect, a maximum of 4 products (+ 1 warm-up sample) were evaluated for each single session with 2 minutes pause between the samples during which panelists were provided with freshly opened Acqua Panna water as palate cleaner. The collected texture and sensory data showed relevant correlations and hence could be used both to draw similar conclusions. Shown below is a correlation of interest linking the Hardness 1 parameter of the texture analysis with the Firmness attribute of the sensory assessment.
- Figure 2 shows a comparison of the best-in-class recipe (prototype B) versus the other variants of the plan and the reference pork belly animal fat when measured for the Hardness parameter as determined by the TPA method.
- Texture data acquired according to the methodology described herein, were processed with Excel.
- the "SD” Standard Deviation
- SD bars overlapping between 2 samples signifies the prototypes are not significantly different from each other.
- Recipe B thus performs in a similar manner in terms of hardness to the reference pork belly animal fat.
- Figure 3 shows a comparison of recipe B, which contains 3.0% KGM, versus recipes containing different KGM concentrations (1.5% & 4.5%) and the reference pork belly animal fat, when measured for hardness parameter as determined by the TPA method.
- recipe B which contains 3.0% KGM
- recipes containing different KGM concentrations (1.5% & 4.5%) and the reference pork belly animal fat when measured for hardness parameter as determined by the TPA method.
- the KGM concentration is varying, and water is used as filler to compensate for the differing KGM concentration variations.
- Figure 4 shows a comparison of recipe B, which contains 0.30% of potassium carbonate, versus recipes containing different potassium carbonate concentrations (0.15% & 0.45%) and the reference pork belly animal fat, when measured for hardness parameter determined with TPA method.
- recipe B which contains 0.30% of potassium carbonate
- recipes containing different potassium carbonate concentrations 0.15% & 0.45%
- the reference pork belly animal fat when measured for hardness parameter determined with TPA method.
- the recipe only the potassium carbonate concentration is varying, and the water ingredient is used as filler to compensate the potassium carbonate concentration variations.
- 0.30% potassium carbonate performs in a similar manner to the reference pork belly animal fat, while using 0.15% and 0.45% of potassium carbonate provides a negative impact on hardness parameter, respectively too low and too high compared to the animal reference. Consequently, 0.30% potassium carbonate concentration is confirmed as the suitable level in the best-in-class recipe B.
- Figure 5 shows a comparison of recipe B, which contains the Waxy Maize starch, versus recipes containing different types of starch (Mung Bean starch, Tapioca starch, Potato starch) and the reference pork belly animal fat, when measured for hardness parameter determined with TPA method.
- recipe B contains the Waxy Maize starch
- types of starch Mung Bean starch, Tapioca starch, Potato starch
- reference pork belly animal fat when measured for hardness parameter determined with TPA method.
- Waxy Maize starch performs in a similar manner to the reference pork belly animal fat, while Mung Bean, Tapioca or Potato starch provide a negative impact on hardness parameter, significantly too high compared to the animal reference. Consequently, Waxy Maize starch is confirmed as the suitable type of starch in the best-in- class recipe B.
- Figure 6 shows a comparison of recipe B, which contains 5.0% of Waxy Maize starch, versus recipes containing different Waxy Maize Starch concentrations (0.0% & 10.0%) and the reference pork belly animal fat, when measured for hardness parameter determined with TPA method.
- recipe B which contains 5.0% of Waxy Maize starch
- the Waxy Maize starch concentration is varying, and the water ingredient is used as filler to compensate the Waxy Maize starch concentration variations.
- using 5.0% of Waxy Maize starch performs in a similar manner to the reference pork belly animal fat, while using 0.0% and 10.0% of Waxy Maize starch provides a negative impact on hardness parameter, respectively too high and too low compared to the animal reference. Consequently, the 5.0% Waxy Maize starch concentration is confirmed as the suitable level in the best-in-class
- Figure 7 shows a comparison of recipe B, which contains 5.0% lipid (HOSO), versus recipes containing different lipid concentrations (0.0% & 10.0%) and the reference pork belly animal fat, when measured for hardness parameter determined with TPA method.
- recipe B which contains 5.0% lipid (HOSO)
- HOSO lipid
- Table 7 shows a comparison of recipe B, which contains 5.0% lipid (HOSO), versus recipes containing different lipid concentrations (0.0% & 10.0%) and the reference pork belly animal fat, when measured for hardness parameter determined with TPA method.
- HOSO lipid
- Figure 8 shows a comparison of recipe B, which contains 3.0% of KGM, versus recipe A and C, which respectively contain 1.5% and 4.5% of KGM, and the reference pork belly animal fat, when assessed with sensory RATA method described in example 4.
- recipe B which contains 3.0% of KGM
- recipe A and C which respectively contain 1.5% and 4.5% of KGM
- the reference pork belly animal fat when assessed with sensory RATA method described in example 4.
- the concentration of KGM is varying, and the water ingredient is used as filler to compensate the KGM concentration variations.
- Figure 9 shows a comparison of recipe B, which contains the Waxy Maize starch, versus recipe F containing Mung Bean starch and the reference pork belly animal fat, when assessed with sensory RATA method described in example 4.
- recipe B contains the Waxy Maize starch
- recipe F containing Mung Bean starch and the reference pork belly animal fat
- Waxy Maize starch performs in a similar manner to the reference pork belly animal fat, for all sensory attributes (LSD bars are overlapping for all sensory attributes); while using Mung Bean starch provides a negative impact on sensory properties.
- the Moist release, Elastic, Pieces, Compact and Moist attributes clearly show the benefit of using Waxy Maize starch compared to Mung Bean starch. Consequently, the Waxy Maize starch is confirmed as the suitable type of starch for the best-in-class recipe B.
- Figure 10 shows a comparison of recipe B, which contains 5.0% of Waxy Maize starch, versus recipe I and J, which respectively contain 0.0% and 10.0% of Waxy Maize starch, and the reference pork belly animal fat, when assessed with sensory RATA method described in example 4.
- recipe B which contains 5.0% of Waxy Maize starch
- recipe I and J which respectively contain 0.0% and 10.0% of Waxy Maize starch
- reference pork belly animal fat when assessed with sensory RATA method described in example 4.
- the concentration of Waxy Maize starch is varying, and the water ingredient was used as filler to compensate the Waxy Maize starch concentration variations.
- Figure 11 shows a comparison of recipe B, which contains 5.0% lipid, versus recipe K and L, which respectively contain 0.0% and 10.0% lipid, and the reference pork belly animal fat, when assessed with sensory RATA method described in example 4.
- recipe B which contains 5.0% lipid
- recipe K and L which respectively contain 0.0% and 10.0% lipid
- reference pork belly animal fat when assessed with sensory RATA method described in example 4.
- the concentration of lipids is varying, and the water ingredient is used as filler to compensate the Waxy Maize starch concentration variations.
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- Chemical & Material Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Polymers & Plastics (AREA)
- Health & Medical Sciences (AREA)
- Nutrition Science (AREA)
- Oil, Petroleum & Natural Gas (AREA)
- Dispersion Chemistry (AREA)
- Molecular Biology (AREA)
- Biochemistry (AREA)
- Meat, Egg Or Seafood Products (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP22179724 | 2022-06-17 | ||
| PCT/EP2023/066442 WO2023242437A1 (en) | 2022-06-17 | 2023-06-19 | Fat analogue for use in a meat analogue product |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4539673A1 true EP4539673A1 (en) | 2025-04-23 |
Family
ID=82404425
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23732992.5A Withdrawn EP4539673A1 (en) | 2022-06-17 | 2023-06-19 | Fat analogue for use in a meat analogue product |
Country Status (3)
| Country | Link |
|---|---|
| EP (1) | EP4539673A1 (en) |
| IL (1) | IL317696A (en) |
| WO (1) | WO2023242437A1 (en) |
Family Cites Families (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI474782B (en) * | 2011-12-28 | 2015-03-01 | Food Industry Res & Dev Inst | Substitute for fat within meat and the forming method thereof |
-
2023
- 2023-06-19 EP EP23732992.5A patent/EP4539673A1/en not_active Withdrawn
- 2023-06-19 WO PCT/EP2023/066442 patent/WO2023242437A1/en not_active Ceased
- 2023-06-19 IL IL317696A patent/IL317696A/en unknown
Also Published As
| Publication number | Publication date |
|---|---|
| IL317696A (en) | 2025-02-01 |
| WO2023242437A1 (en) | 2023-12-21 |
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