Cultured meat filling spray
The cultured meat filling spray addresses high production costs by using an aerosol container to dispense cultured meat as a single cell, offering a cost-effective and versatile method to integrate its flavor and texture into various dishes.
Patent Information
- Application Number
- JP2024055615
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-29
- Publication Date
- 2025-10-10
AI Technical Summary
Mass-producing cultured meat while maintaining texture and flavor comparable to conventional meat increases production costs, necessitating a more cost-effective utilization method.
A cultured meat filling spray equipped with an aerosol container filled with a cultured meat dispersion liquid and a propellant, allowing the dispersion to be ejected in various forms such as mist, foam, or paste, utilizing cultured meat as a single cell without requiring steak-like processing.
Enables the utilization of cultured meat in unprecedented ways, providing a cost-effective and versatile means to incorporate its flavor and texture into foods like cooked rice or salads.
Smart Images

Figure 2025153240000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a cultured meat filling spray. [Background technology]
[0002] In recent years, the demand for meat has increased with the global population growth, but issues such as the rising costs of livestock production and environmental concerns have led to calls for the use of meat alternatives. One known meat alternative is cultured meat, which is made by culturing animal cells and processing them into food. Because cultured meat is produced by culturing animal cells, it solves the problems associated with livestock production.
[0003] However, mass-producing cultured meat while maintaining a texture and flavor comparable to conventional meat inevitably increases production costs. Therefore, there is a need to enable mass production of cultured meat while reducing production costs. For this reason, for example, Patent Document 1 and Patent Document 2 propose methods for mass-producing cultured meat. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Special Publication No. 2022-532498 [Patent Document 2] Japanese Patent Application Publication No. 2023-47559 Summary of the Invention [Problem to be solved by the invention]
[0005] Conventionally, studies have been conducted to reproduce the three-dimensional structure of muscle cells like steak meat using cultured meat and to utilize the cultured meat as edible meat. However, the inventors' studies have led to the discovery that by focusing on the fact that cultured meat is a single cell, it is possible to find a different way to utilize cultured meat than conventional methods.
[0006] Therefore, the inventors conducted further research into the use of cultured meat, which is a single cell, and as a result, completed the present invention. [Means for solving the problem]
[0007] The cultured meat filling spray according to the present invention is equipped with an aerosol container, and is configured to be filled with a cultured meat dispersion liquid obtained by mixing cultured meat obtained by culturing animal cells with a preservative liquid for preserving the cultured meat in a dispersed state, and a propellant for ejecting the cultured meat dispersion liquid from the aerosol container. [Effects of the Invention]
[0008] According to the present invention, a cultured meat filling spray can be provided that allows cultured meat to be utilized in unprecedented ways. [Brief explanation of the drawings]
[0009] [Figure 1] FIG. 1 is an explanatory diagram showing an outline of a cultured meat filling spray according to an example of this embodiment. [Figure 2] An explanatory diagram showing an outline of a cultured meat filling spray according to another example of this embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0010] Hereinafter, preferred embodiments of the present invention will be described with reference to the drawings.
[0011] [First embodiment] First, a first embodiment of the present invention will be described.
[0012] FIG. 1 is an explanatory diagram showing an outline of a cultured meat filling sprayer 1 according to this embodiment, and shows a schematic side view of the cultured meat filling sprayer 1.
[0013] Cultured meat filling spray 1 includes an aerosol container 3. Aerosol container 3 is filled with cultured meat dispersion 7, which is a mixture of cultured meat 4 obtained by culturing animal cells and preservation liquid 5 for preserving cultured meat 4 in a dispersed state, and propellant 6 for discharging cultured meat dispersion 7 from aerosol container 3. Cultured meat 4 is cultured meat intended for human consumption.
[0014] Examples of animal cells used to culture cultured meat 4 include mammals such as monkeys, cows, horses, pigs, sheep, goats, dogs, cats, guinea pigs, rats, and mice; birds such as ostriches, chickens, ducks, and sparrows; reptiles such as snakes, crocodiles, lizards, and turtles; amphibians such as frogs, newts, and salamanders; fish such as salmon, tuna, sharks, sea bream, and carp; crustaceans such as shrimp and crab; and mollusks such as squid and octopus.
[0015] The aerosol container 3 is a pressure-resistant container made of a metal such as an aluminum alloy. The aerosol container 3 is equipped with an aerosol valve 13. The aerosol valve 13 is provided with a stem 9 that is movable up and down within a housing 8. An actuator 10 is provided above the stem 9. A dip tube 11 is provided at the lower end of the housing 8. One end of the dip tube 11 is connected to the stem passage of the stem 9, and the other end extends toward the bottom of the aerosol container 3. The actuator 10 is equipped with an outlet 12. The outlet 12 is connected to the stem passage of the stem 9.
[0016] When actuator 10 is not pressed down and inactive, stem 9 is pushed upward by a spring (not shown), blocking the stem passage of stem 9 from the inside of aerosol container 3. When actuator 10 is pressed down and in operation, stem 9 is pushed down, connecting the stem passage to the inside of aerosol container 3. As a result, the pressure of propellant 6 causes human-edible cultured meat dispersion 7 to pass through dip tube 11 and be discharged from outlet 12 in the form of a paste, mist, or foam.
[0017] A low-adhesion layer that inhibits adhesion of the cultured meat dispersion liquid 7 is provided on the surface of the aerosol container 3 that comes into contact with the cultured meat dispersion liquid 7. The low-adhesion layer is provided, for example, by coating with a low cell-adhesion polymer. Coating of the low cell-adhesion polymer can be suitably carried out using, for example, a bar coater or gravure coater. Examples of low cell-adhesion polymers include phospholipid polymers, polyvinyl alcohol derivatives, phospholipid-polymer complexes, polyhydroxyethyl methacrylate, polyvinyl alcohol, agarose, chitosan, polyethylene glycol, and albumin. These may also be used in combination. The low-adhesion layer is not limited to this embodiment, and can be formed by known methods such as coating, vapor deposition, and coating, as long as it can be formed in a manner that is suitable for food applications.
[0018] Here, when discharging a foamy cultured meat dispersion 7, additives such as surfactants and thickeners are blended into the cultured meat dispersion 7. It is preferable to use an inert gas such as carbon dioxide gas or nitrous oxide gas as the propellant 6. When carbon dioxide gas or nitrous oxide gas is used as the propellant 6, inside the aerosol container 3, the propellant 6 exists in the gas phase above the cultured meat dispersion 7 and also dissolves in the cultured meat dispersion 7. Then, when the cultured meat dispersion 7 is discharged, the propellant 6 in the depressurized cultured meat dispersion 7 expands and becomes a gas phase, allowing the foamy cultured meat dispersion 7 to be discharged. The foaming power and shape retention of the foam can be adjusted appropriately by the type and amount of surfactant or thickener added.
[0019] Furthermore, in either the case of ejecting a mist of cultured meat dispersion 7 or a paste of cultured meat dispersion 7, it is preferable to use an inert gas such as nitrogen gas as the propellant 6. When nitrogen gas is used as the propellant 6, inside the aerosol container 3, the propellant 6 exists as a gas phase above the cultured meat dispersion 7. Then, by forming a groove in the actuator 10 for turning the cultured meat dispersion 7 into a mist or paste, it is possible to eject the cultured meat dispersion 7 in a mist or paste form.
[0020] Furthermore, in aerosol containers 3 that are filled without separating cultured meat dispersion liquid 7 and propellant 6, the filling ratio of cultured meat dispersion liquid 7 and propellant 6 is preferably cultured meat dispersion liquid 7: 92-99.9 wt% and propellant 6: 0.1-8 wt%.
[0021] Here, in an aerosol container 3 which is filled with the cultured meat dispersion liquid 7 and the propellant 6 without separating them, it is preferable to use water, edible oil, ethanol, or a mixture thereof as preservation solution 5 in order to maintain the dispersed state of the cultured meat dispersion liquid 7 while preserving it so that it can be discharged from the aerosol container 3. Additionally, the osmotic pressure of preservation solution 5 is preferably about 28 to 6000 mOsm / kg, and more preferably about 56 to 560 mOsm / kg.
[0022] Furthermore, in order to discharge the cultured meat dispersion liquid 7 in a mist form from the aerosol container 3, an inert gas such as nitrogen gas is used as the propellant 6, and the viscosity of the cultured meat dispersion liquid 7 is preferably 500 mPa·s or less, and more preferably 100 mPa·s or less. Furthermore, in order to discharge the cultured meat dispersion liquid 7 in a foam form from the aerosol container 3, an inert gas such as carbon dioxide gas or nitrous oxide gas is used as the propellant 6, and the viscosity of the cultured meat dispersion liquid 7 is preferably 50,000 mPa·s or less, and more preferably 10,000 mPa·s or less. Furthermore, in order to discharge the cultured meat dispersion liquid 7 in a paste form from the aerosol container 3, an inert gas such as nitrogen gas is used as the propellant 6, and the viscosity of the cultured meat dispersion liquid 7 is preferably 100,000 mPa·s or less, and more preferably 10,000 mPa·s or less.
[0023] There are limits to how finely pulverized conventional meat can be, making it difficult to spray. However, because cultured meat 4 is a single cell, it can be dispensed from an aerosol container 3. Furthermore, the amount filled into the aerosol container 3 can be controlled in units of a few milliliters. In this way, by focusing on the fact that cultured meat 4 is a single cell, cultured meat 4 can be used in unprecedented ways without having to be processed into steak-like form.
[0024] Then, by spraying cultured meat dispersion 7 directly from aerosol container 3 onto, for example, cooked rice or salad, the food can be eaten with the added flavor of meat.
[0025] [Second embodiment] A second embodiment of the present invention will be described below. Note that the same components as those in the first embodiment will be designated by the same reference numerals and detailed descriptions thereof will be omitted.
[0026] FIG. 2 is an explanatory diagram showing an outline of the cultured meat filling sprayer 20 according to this embodiment, and shows a schematic side view of the cultured meat filling sprayer 20.
[0027] Cultured meat filling sprayer 20 comprises aerosol container 21. Aerosol container 21 is a pressure-resistant container made of metal such as an aluminum alloy. Aerosol container 21 comprises aerosol valve 22. Aerosol container 21 comprises aluminum pouch 23 inside. The inside of aluminum pouch 23 is cultured meat dispersion filling space 24 for filling with cultured meat dispersion 7. It is preferable that cultured meat 4 is uniformly dispersed in cultured meat dispersion 7. The gap between aerosol container 21 and aluminum pouch 23 is propellant filling space 25 for filling with propellant 6. Aerosol valve 22 is provided with stem 27 that can move up and down within housing 26. The inner edge along the opening at the top end of aluminum pouch 23 is adhered to the outer periphery of housing 26. Actuator 28 is provided above stem 27. A dip tube 29 is provided at the bottom end of housing 26. One end of dip tube 29 communicates with the stem passage of stem 27, and the other end extends toward the bottom of aluminum pouch 23 within cultured meat dispersion filling space 24.
[0028] Actuator 28 has a discharge port 30. Discharge port 30 is in communication with the stem passage of stem 27. In this way, by providing actuator 28 on stem 27, which is in communication with cultured meat filling space 24 via dip tube 29, a discharge mechanism is formed for discharging cultured meat dispersion liquid 7 filled in cultured meat filling space 24.
[0029] Then, when propellant filling space 25 is filled with propellant 6, aluminum pouch 23 is constantly pressurized by propellant 6. When actuator 28 is not pressed down and inactive, stem 27 is pushed upward, and the stem passage of stem 35 is blocked from the interior of aerosol container 20. When actuator 28 is pressed down and active, stem 27 is pushed down, and the stem passage is connected to the interior of aerosol container 20. This causes aluminum pouch 23 to contract due to the pressure of propellant 6. When aluminum pouch 23 contracts, human-edible cultured meat dispersion 7 filled in cultured meat filling space 24 passes through dip tube 29 and is discharged in the form of a mist or paste from discharge port 30.
[0030] A low-adhesion layer that inhibits adhesion of the cultured meat dispersion liquid 7 is provided on the surface of the aerosol container 3 that comes into contact with the cultured meat dispersion liquid 7. The low-adhesion layer is provided, for example, by coating with a low cell-adhesion polymer. Coating of the low cell-adhesion polymer can be suitably carried out using, for example, a bar coater or gravure coater. Examples of low cell-adhesion polymers include phospholipid polymers, polyvinyl alcohol derivatives, phospholipid-polymer complexes, polyhydroxyethyl methacrylate, polyvinyl alcohol, agarose, chitosan, polyethylene glycol, and albumin. These may also be used in combination. The low-adhesion layer is not limited to this embodiment, and can be formed by known methods such as coating, vapor deposition, and coating, as long as it can be formed in a manner that is suitable for food applications.
[0031] Here, in either the case of ejecting a mist of cultured meat dispersion 7 or a paste of cultured meat dispersion 7, it is preferable to use an inert gas such as nitrogen gas as propellant 6. Then, by forming a groove in actuator 28 for turning cultured meat dispersion 7 into a mist or paste, it is possible to eject cultured meat dispersion 7 in a mist or paste form.
[0032] The pressure (gauge pressure) inside aerosol container 20, which is equipped with cultured meat filling space 24 and propellant filling space 25, is preferably 0.1 MPa to 1.0 MPa, and more preferably 0.2 MPa to 0.9 MPa, when filled with a specified amount of cultured meat dispersion liquid 7 and at 25°C.
[0033] Here, in aerosol container 20 equipped with filling space 24 for cultured meat and filling space 25 for propellant, in order to create cultured meat dispersion liquid 7 that can be stored so as to be discharged from aerosol container 3 while maintaining cultured meat 4 in a dispersed state, it is preferable to use water, edible oil, ethanol, or a mixture thereof as preservation solution 5 that is mixed as a solvent for cultured meat 4. Furthermore, the osmotic pressure of preservation solution 5 is preferably about 28 to 6000 mOsm / kg, and more preferably about 56 to 560 mOsm / kg.
[0034] Furthermore, in order to eject cultured meat dispersion 7 in a mist form from aerosol container 21, an inert gas such as nitrogen gas is used as propellant 6, and the viscosity of cultured meat dispersion 7 is preferably 500 mPa·s or less, and more preferably 100 mPa·s or less. Furthermore, in order to eject cultured meat dispersion 7 in a paste form from aerosol container 21, an inert gas such as nitrogen gas is used as propellant 6, and the viscosity of cultured meat dispersion 7 is preferably 100,000 mPa·s or less, and more preferably 10,000 mPa·s or less.
[0035] In addition, in the cultured meat filling spray 20 according to the second embodiment, the cultured meat filling space 24 may be filled with a propellant 6, and configured to eject a foamy cultured meat dispersion liquid 7, similar to the cultured meat filling spray 1 according to the first embodiment.
[0036] Cultured meat filling sprayer 20 according to the second embodiment can achieve the same effects as cultured meat filling sprayer 1 according to the first embodiment. Furthermore, because cultured meat dispersion 7 is dispensed by pressurizing aluminum pouch 23, it is possible to dispense a cultured meat dispersion 7 with a higher viscosity than cultured meat filling spray 1. Also, because cultured meat dispersion 7 and propellant 6 are separated, it is possible to prevent the cultured meat dispersion 7 from being altered by the influence of propellant 6. Furthermore, by varying the size of aluminum pouch 23, it is possible to increase the variety of content volumes. Furthermore, cultured meat dispersion 7 can be dispensed regardless of the orientation of aerosol container 20.
[0037] In this embodiment, the cultured meat and cultured meat dispersion have been described as being edible by humans or pets, but pets are not limited to the following, and suitable pets include, for example, dogs, cats, and fish.
[0038] Although the first and second embodiments have been described with reference to examples in which the aerosol container is made of metal, a pressure-resistant container made of resin or glass may also be used as the aerosol container.
[0039] Furthermore, in the first and second embodiments, an example was given in which a dip tube was provided in the aerosol container, but it is not limited to a tubular shape and any known shape may be used, or a dip tube may not be provided.
[0040] In the second embodiment, an example in which the aluminum pouch 23 is provided has been described, but the layer structure of the pouch may be multi-layered or single-layered, and a pouch without an aluminum layer may be used. Also, a resin inner bag may be used instead of the pouch. The pouch and the resin inner bag preferably include a gas barrier layer.
[0041] Furthermore, in the second embodiment, an example was given in which the filling space 24 for cultured meat is filled with a cultured meat dispersion liquid 7 obtained by mixing cultured meat 4 and preservation solution 5, but the filling space 24 for cultured meat may also be filled with a foaming agent.
[0042] Furthermore, in the second embodiment, an example in which one aluminum pouch 23 is provided has been described, but multiple aluminum pouches 23 may be provided, and different types (flavors, viscosities, etc.) may be simultaneously discharged from multiple cultured meat filling spaces 24. For example, one of the multiple cultured meat filling spaces 24 may be filled with cultured meat dispersion liquid 7, and the other cultured meat filling spaces 24 may be filled with a seasoning to flavor the cultured meat dispersion liquid 7. [Explanation of symbols]
[0043] 1. Cultured meat filling spray 3. Aerosol containers 4 Cultured meat 5 Preservation solution 6. Propellant 7 Cultured meat dispersion 20 Cultured Meat Filling Spray 21 Aerosol containers 24 Filling space for cultured meat 25 Propellant filling space
Claims
1. An aerosol container is provided, The aerosol container a cultured meat dispersion obtained by mixing cultured meat obtained by culturing animal cells with a preservation solution for preserving the cultured meat in a dispersed state; and a propellant for discharging the cultured meat dispersion from the aerosol container. Cultured meat filling spray.
2. The aerosol container comprises: a propellant filling space for filling the propellant; A filling space for the cultured meat dispersion liquid for filling the cultured meat dispersion liquid; a discharge mechanism for discharging the cultured meat dispersion filled in the cultured meat filling space. The cultured meat filling spray of claim 1.
3. The propellant contains nitrogen gas, and the viscosity of the cultured meat dispersion is 500 mPa s or less. The cultured meat filling spray of claim 1.
4. The propellant contains carbon dioxide gas or nitrous oxide gas, and the viscosity of the cultured meat dispersion is 50,000 mPa s or less. The cultured meat filling spray of claim 1.
5. The cultured meat mixed into the cultured meat dispersion is cultured meat for human or pet consumption. The cultured meat filling spray of claim 1.
6. A low-adhesion layer that suppresses adhesion of the cultured meat dispersion is provided on the surface of the aerosol container that comes into contact with the cultured meat dispersion. The cultured meat filling spray of claim 1.
Citation Information
Patent Citations
Cultivation system and method for mass production of cultured foods
JP2022532498A
Gels for cell culture, methods for producing cell culture gels with cells, methods for producing cells, three-dimensional muscle tissues and cultured meat produced with the methods for producing cells
JP2023047559A