A23G9/36

PLANT BASED MILK COMPRISING PROTEIN HYDROLYSATE AND DIVALENT CATION COMPOSITIONS HAVING IMPROVED TASTE AND STABILITY
20220046939 · 2022-02-17 · ·

Plant based beverage products and processes are disclosed, particularly plant based milk and creamer compositions comprising divalent cationic salts and treated with endoprotease and ionic compounds, including divalent cationic salts. In some embodiments, the process discloses a limited degree of protein hydrolysis in combination with added divalent cations. The process results in plant based milks with improved sensory and functional quality when compared to existing products, particularly reduced feathering when used as a creamer. The process is preferably used with plant based beverages processed with minimal disruption of the native protein structure. The resulting products have stability and functionality similar to that of dairy beverage products.

PLANT BASED MILK COMPRISING PROTEIN HYDROLYSATE AND DIVALENT CATION COMPOSITIONS HAVING IMPROVED TASTE AND STABILITY
20220046939 · 2022-02-17 · ·

Plant based beverage products and processes are disclosed, particularly plant based milk and creamer compositions comprising divalent cationic salts and treated with endoprotease and ionic compounds, including divalent cationic salts. In some embodiments, the process discloses a limited degree of protein hydrolysis in combination with added divalent cations. The process results in plant based milks with improved sensory and functional quality when compared to existing products, particularly reduced feathering when used as a creamer. The process is preferably used with plant based beverages processed with minimal disruption of the native protein structure. The resulting products have stability and functionality similar to that of dairy beverage products.

METHOD FOR MAKING LIQUID OR SEMI-LIQUID FERMENTED MILK PRODUCTS

Described is a method for making liquid and semi-liquid fermented milk products, comprising the following steps: a) placing a milk-based mixture in a container (3); b) subjecting the basic mixture to a heating thermal treatment; c) adding lactic bacterial strains to the basic mixture according to a concentration of at least 10{circumflex over ( )}8 CFU/ml of basic mixture, and subjecting the basic mixture to which lactic bacterial strains were added to a thermal treatment for a predetermined time; d) stirring the mixture to which lactic bacterial strains were added in order to break a coagulated mass which formed in the mixture to which lactic bacterial strains were added, to make the liquid and semi-liquid milk products.

Food Materials Comprising Filamentous Fungal Particles and Membrane Bioreactor Design

Methods of production of edible filamentous fungal biomat formulations are provided as standalone protein sources and/or protein ingredients in foodstuffs as well as a one-time use or repeated use self-contained biomat reactor comprising a container with at least one compartment and placed within the compartment(s), a feedstock, a fungal inoculum, a gas-permeable membrane, and optionally a liquid nutrient medium.

PROBIOTIC BIFIDOBACTERIUM STRAIN

Probiotic Bifidobacterium strain AH1714 is significantly immunomodulatory following oral consumption. The strain is useful as an immunomodulatory biotherapeutic agent.

MUTANT TRANSGLUTAMINASE

A mutant transglutaminase (mutant TG) having high thermostability and/or high pH stability is provided. A mutant TG having a mutation at amino acid residue(s) such as D1, Y24, R48, S101, G102, N139, D142, L147, K152, G157, R167, N176, K181, E182, H188, D189, R208, T245, S246, G250, G275, S284, H289, G301, and K327 and/or a mutation of introducing a disulfide bond.

MUTANT TRANSGLUTAMINASE

A mutant transglutaminase (mutant TG) having high thermostability and/or high pH stability is provided. A mutant TG having a mutation at amino acid residue(s) such as D1, Y24, R48, S101, G102, N139, D142, L147, K152, G157, R167, N176, K181, E182, H188, D189, R208, T245, S246, G250, G275, S284, H289, G301, and K327 and/or a mutation of introducing a disulfide bond.

Cold dessert with gelatin-based component adapted for low-temperature consumption
11324231 · 2022-05-10 · ·

Cold desserts incorporating gelatin-based (gummy) components are provided in this paper. In particular, stick-mounted cold desserts, edible-cone cold desserts, and container-served desserts with gelatin-based components are described. The gelatin-based components of these desserts are made from gelatin-based candy material that is specially-formulated for consumption at cold temperatures. The gelatin-based components may be used with other components of a cold dessert such as with flavored water ice, ice cream, sherbet, sorbet, and the like as described throughout this paper.

Cold dessert with gelatin-based component adapted for low-temperature consumption
11324231 · 2022-05-10 · ·

Cold desserts incorporating gelatin-based (gummy) components are provided in this paper. In particular, stick-mounted cold desserts, edible-cone cold desserts, and container-served desserts with gelatin-based components are described. The gelatin-based components of these desserts are made from gelatin-based candy material that is specially-formulated for consumption at cold temperatures. The gelatin-based components may be used with other components of a cold dessert such as with flavored water ice, ice cream, sherbet, sorbet, and the like as described throughout this paper.

Food materials comprising filamentous fungal particles and membrane bioreactor design

Methods of production of edible filamentous fungal biomat formulations are provided as standalone protein sources and/or protein ingredients in foodstuffs as well as a one-time use or repeated use self-contained biomat reactor comprising a container with at least one compartment and placed within the compartment(s), a feedstock, a fungal inoculum, a gas-permeable membrane, and optionally a liquid nutrient medium.