Patent classifications
A23J3/00
IN VITRO INSECT MUSCLE AS A NUTRITION SOURCE
Provided herein is a cultured meat product comprising a confluent serum-free insect muscle cell culture seeded on a food safe substrate. Further provided herein is a method for producing a cultured meat product comprising the steps of: culturing insect muscle cells on a food safe substrate in serum-free culture medium for a time sufficient for the cells to reach confluence. Also provided herein is a bioactuator comprising confluent insect muscle cells cultured in a flexible substrate to form muscle fibers.
NON-SKELETAL MUSCLE-DERIVED CELLS AS A SOURCE OF SUSPENSION CAPABLE MYOGENIC CELLS FOR CULTURED FOODS
Provided herein are methods relating to making non-natively occurring myogenic cells. For example, provided herein are methods for transdifferentiating a liver-derived cell to a non-natively occurring myogenic cell. In another example, the method relates to using dedifferentiation to make non-natively occurring myogenic cells.
NON-SKELETAL MUSCLE-DERIVED CELLS AS A SOURCE OF SUSPENSION CAPABLE MYOGENIC CELLS FOR CULTURED FOODS
Provided herein are methods relating to making non-natively occurring myogenic cells. For example, provided herein are methods for transdifferentiating a liver-derived cell to a non-natively occurring myogenic cell. In another example, the method relates to using dedifferentiation to make non-natively occurring myogenic cells.
Fibroin-derived protein composition
A protein composition derived from silk fibroin, which composition possesses enhanced solubility and stability in aqueous solutions. The primary amino acid sequence of native fibroin is modified in the SDP such that cysteine disulfide bonds between the fibroin heavy and fibroin light protein chains are reduced or eliminated. Additionally, the composition can have a serine content that is reduced by greater than 40% compared to native fibroin protein, and the average molecular weight of the SDP is less than about 100 kDa.
Fibroin-derived protein composition
A protein composition derived from silk fibroin, which composition possesses enhanced solubility and stability in aqueous solutions. The primary amino acid sequence of native fibroin is modified in the SDP such that cysteine disulfide bonds between the fibroin heavy and fibroin light protein chains are reduced or eliminated. Additionally, the composition can have a serine content that is reduced by greater than 40% compared to native fibroin protein, and the average molecular weight of the SDP is less than about 100 kDa.
Method for the production of an edible object by powder bed (3D) printing and food products obtainable therewith
The present invention relates to a method for the production of an edible object, comprising providing an edible powder composition and at least one edible liquid, wherein the edible powder composition comprises a water soluble protein, a hydrocolloid and a plasticizer, and subjecting said composition to powder bed printing by depositing the edible liquid by spraying it onto the powder and thereby obtaining the edible object. Also food products obtainable with the method of the invention, particularly, a pasta, a cake object and a protein bar are disclosed.
Method for the production of an edible object by powder bed (3D) printing and food products obtainable therewith
The present invention relates to a method for the production of an edible object, comprising providing an edible powder composition and at least one edible liquid, wherein the edible powder composition comprises a water soluble protein, a hydrocolloid and a plasticizer, and subjecting said composition to powder bed printing by depositing the edible liquid by spraying it onto the powder and thereby obtaining the edible object. Also food products obtainable with the method of the invention, particularly, a pasta, a cake object and a protein bar are disclosed.
REDUCED VOLUME FORMULATIONS INCLUDING AMINO ACID ENTITIES
This disclosure provides compositions and methods for improving the dispersion of a hydrophobic amino acid entity in an aqueous suspension. This disclosure further provides compositions and methods for improving the stability of N-acetylcysteine in the presence of acetyl acceptors, e.g., carnitine.
PROCESSED MEAT-LIKE FOOD, CONNECTIVE TISSUE-LIKE TEXTURE IMPARTING AGENT, METHOD FOR TEXTURE IMPROVEMENT OF PROCESSED MEAT-LIKE FOOD, AND PRODUCTION METHOD FOR PROCESSED MEAT-LIKE FOOD
A processed meat-like food containing a connective tissue-like texture imparting agent and a textured vegetable protein, and having texture closer to processed meat foods produced from meat as a main raw material; a connective tissue-like texture imparting agent capable of imparting to a processed meat-like food a texture closer to processed meat foods produced from meat as a main raw material; a method for texture improvement of a processed meat-like food containing a textured vegetable protein, where a connective tissue-like texture imparting agent is added, the method approximating the texture of a processed meat-like food to processed meat foods produced from meat as a main raw material; and a production method for a processed meat-like food, including mixing a connective tissue-like texture imparting agent and a textured vegetable protein, the method resulting in a processed meat-like food having texture closer to those of processed meat foods produced from meat.
Concentrated protein compositions and methods of their making and use
This disclosure provides a highly concentrated protein composition and the processes of making the same. The compositions are shelf-stable, easy to use and have excellent nutritional values as compared to other protein products. The compositions may be prepared from animal sources, such as chickens or turkeys.