Nutritional composition applied to sodium-potassium pump and preparation method of nutritional composition

By providing a nutritional composition containing specific electrolytes, regulators, buffers and energy fluids, the problem of lack of nutritional compositions suitable for sodium and potassium pumps in the prior art is solved, the effect of promoting energy metabolism and electrolyte balance is achieved, and the advantages of phototherapy applications are provided.

CN120052550APending Publication Date: 2025-05-30SHENZHEN YUDU DANSHUI BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510090322.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

There is a lack of nutritional compositions suitable for sodium and potassium pumps in the prior art, which affects the realization of their functions.

Method used

Provided is a nutritional composition comprising a specific concentration of components, including sodium ions, potassium ions, magnesium ions, calcium ions, chloride ions, glucose or fructose, and other components such as vitamin B, vitamin C, vitamin E, auxiliary enzyme Q10 and alpha-lipoic acid, to form an aqueous solution through specific ratios and preparation methods.

Benefits of technology

The nutritional composition can promote energy metabolism, ensure electrolyte balance, and provide additional therapeutic effects through phototherapy applications, and is suitable for improving cellular electrolyte balance and treating diseases caused by electrolyte imbalance.

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Abstract

The invention discloses a nutritional composition applied to a sodium-potassium pump and a preparation method of the nutritional composition, and the nutritional composition comprises the following components in concentration: a first electrolyte: sodium ions with the concentration range of 0.1-0.5 mol / L; the second electrolyte is potassium ions, and the concentration range of the second electrolyte is 0.1-0.5 mol / L; the first conditioning agent is magnesium ions, and the concentration range of the first conditioning agent is 0.01-0.1 mol / L; the second conditioning agent is calcium ions, and the concentration range of the second conditioning agent is 0.01-0.1 mol / L; the buffer solution is chloride ions, and the concentration range of the chloride ions is 0.1-0.5 mol / L. The nutritional composition applied to the sodium-potassium pump and the preparation method of the nutritional composition have the characteristics of promoting energy metabolism and ensuring electrolyte balance and light applicability.
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Description

Technical Field

[0001] The present invention relates to the technical field of sodium-potassium pumps, and specifically refers to a nutritional composition applied to sodium-potassium pumps and a preparation method thereof. Background Art

[0002] The sodium-potassium pump can transport potassium ions with a relatively lower concentration outside the cell into the cell and transport sodium ions with a relatively lower concentration inside the cell outside the cell. By calibrating with radioactive sodium and potassium ions, it can be found that both sodium and potassium ions pass through this channel, and the concentrations of sodium and potassium ions on both sides of the cell membrane are also interdependent, so it shows that both sodium and potassium ions can be transported through this carrier. Currently, it is known that the sodium-potassium pump consumes ATP and can transport three sodium ions out of the cell while transporting two potassium ions into the cell.

[0003] In the sodium-potassium pump, the nutrient solution has an important impact on the realization of its function, and currently, similar products are lacking in the market. Summary of the Invention

[0004] The purpose of the present invention is to provide a nutritional composition applied to sodium-potassium pumps and a preparation method thereof, which have the characteristics of promoting energy metabolism, ensuring electrolyte balance, and being applicable to light.

[0005] The present invention can be realized through the following technical solutions:

[0006] The present invention discloses a nutritional composition applied to sodium-potassium pumps, including components with the following concentrations:

[0007] First electrolyte: sodium ions, with a concentration range of 0.1 - 0.5 mol / L;

[0008] Second electrolyte: potassium ions, with a concentration range of 0.1 - 0.5 mol / L;

[0009] First regulator: magnesium ions, with a concentration range of 0.01 - 0.1 mol / L;

[0010] Second regulator: calcium ions, with a concentration range of 0.01 - 0.1 mol / L;

[0011] Buffer: chloride ions, with a concentration range of 0.1 - 0.5 mol / L;

[0012] Energy liquid: glucose and / or fructose, with a concentration range of 0.1 - 0.3 mol / L;

[0013] Boosting factor: trace amount.

[0014] Furthermore, the ratio of sodium ions to potassium ions is 1:1 - 2:1 to promote the effective movement and balance of internal and external electrolytes.

[0015] Furthermore, the ratio of magnesium ions to calcium ions is 1:1 - 1:2.

[0016] Furthermore, the composition exists in the form of an aqueous solution.

[0017] Furthermore, the boosting factor is vitamin B group, and the concentration range of vitamin B group is 0.001 - 0.01 mol / L.

[0018] Furthermore, the boosting factor is vitamin C group, with a concentration of 0.001 - 0.01 mol / L, for providing antioxidant protection.

[0019] Furthermore, the boosting factor is vitamin E group, with a concentration of 0.001 - 0.01 mol / L, for supporting the bioenergetic metabolism of cells.

[0020] Furthermore, the boosting factors are coenzyme Q10 and alpha - lipoic acid, with a concentration of 0.001 - 0.01 mol / L.

[0021] Another aspect of the present invention lies in protecting a preparation method of the above - mentioned nutritional composition applied to the sodium - potassium pump, comprising the following steps:

[0022] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator and the buffer in deionized water;

[0023] S2. Add the energy solution and stir well;

[0024] S3. Finally, add the boosting factor and continue to stir until completely dissolved.

[0025] A nutritional composition applied to the sodium - potassium pump and its preparation method according to the present invention have the following beneficial effects:

[0026] The nutritional composition of the present invention is used to improve the electrolyte balance of cells and promote the energy metabolism of cells. At the same time, the nutritional composition can be used to treat diseases caused by electrolyte imbalance. In addition, the nutritional composition of the present invention can be prepared into oral solutions, capsules, tablets or powders, which are suitable for direct human intake. Detailed implementation manners

[0027] In order to enable those skilled in the art to better understand the technical solutions of the present invention, the products of the present invention will be further described in detail below in conjunction with embodiments.

[0028] The present invention discloses a nutritional composition applied to the sodium - potassium pump, comprising components with the following concentrations:

[0029] First electrolyte: sodium ions, with a concentration range of 0.1 - 0.5 mol / L;

[0030] Second electrolyte: potassium ions, with a concentration range of 0.1 - 0.5 mol / L;

[0031] First regulator: magnesium ions, with a concentration range of 0.01 - 0.1 mol / L;

[0032] Second regulator: calcium ions, with a concentration range of 0.01 - 0.1 mol / L;

[0033] Buffer: chloride ions, with a concentration range of 0.1 - 0.5 mol / L;

[0034] Energy solution: glucose and / or fructose, with a concentration range of 0.1 - 0.3 mol / L;

[0035] Boosting factor: trace amount.

[0036] Furthermore, the ratio of sodium ions to potassium ions is 1:1 - 2:1.

[0037] Furthermore, the ratio of magnesium ions to calcium ions is 1:1 - 1:2.

[0038] Furthermore, the composition exists in the form of an aqueous solution.

[0039] Furthermore, the boosting factor is vitamin B complex, and the concentration range of vitamin B complex is 0.001 - 0.01 mol / L.

[0040] Furthermore, the boosting factor is vitamin C complex, with a concentration of 0.001 - 0.01 mol / L.

[0041] Furthermore, the boosting factor is vitamin E complex, with a concentration of 0.001 - 0.01 mol / L.

[0042] Furthermore, the boosting factor is coenzyme Q10 and α-lipoic acid, with a concentration of 0.001 - 0.01 mol / L.

[0043] Another aspect of the present invention lies in protecting the preparation method of the above-mentioned nutritional composition applied to the sodium-potassium pump, including the following steps:

[0044] S1. Dissolve the first electrolyte, second electrolyte, first regulator, second regulator, and buffer in deionized water;

[0045] S2. Add the energy solution and stir well;

[0046] S3. Finally, add the boosting factor and continue stirring until completely dissolved.

[0047] Example 1

[0048] This example relates to a nutritional composition applied to the sodium-potassium pump, including components with the following concentrations:

[0049] First electrolyte: sodium ions, with a concentration of 0.5 mol / L;

[0050] Second electrolyte: potassium ions, with a concentration of 0.3 mol / L;

[0051] First regulator: magnesium ions, with a concentration of 0.01 mol / L;

[0052] Second regulator: calcium ions, with a concentration of 0.1 mol / L;

[0053] Buffer: chloride ions, with a concentration of 0.3 mol / L;

[0054] Energy solution: glucose and / or fructose, with a concentration of 0.1 / L;

[0055] Boosting factor: The boosting factor is vitamin B group, and the concentration of vitamin B group is 0.01 mol / L.

[0056] In this embodiment, the ratio of sodium ions to potassium ions is 1.5:1; the ratio of magnesium ions to calcium ions is 1:1; the composition exists in the form of an aqueous solution.

[0057] The preparation method of the nutrient solution composition in this embodiment includes the following steps:

[0058] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator, and the buffer in deionized water;

[0059] S2. Add the energy solution and stir well;

[0060] S3. Finally, add the boosting factor and continue stirring until completely dissolved.

[0061] Example 2

[0062] This embodiment relates to a nutrient composition applied to the sodium-potassium pump, including components with the following concentrations:

[0063] First electrolyte: sodium ions, with a concentration of 0.3 mol / L;

[0064] Second electrolyte: potassium ions, with a concentration of 0.1 mol / L;

[0065] First regulator: magnesium ions, with a concentration of 0.1 mol / L;

[0066] Second regulator: calcium ions, with a concentration of 0.05 mol / L;

[0067] Buffer: chloride ions, with a concentration of 0.1 mol / L;

[0068] Energy liquid: Glucose and / or fructose, with a concentration of 0.3 mol / L;

[0069] Boosting factors: The boosting factors are vitamin B group and vitamin C group. The concentration of vitamin B group is 0.005 mol / L; the concentration of vitamin C group is 0.001 mol / L.

[0070] In this embodiment, the ratio of sodium ions to potassium ions is 1:1; the ratio of magnesium ions to calcium ions is 1:2; the composition exists in the form of an aqueous solution.

[0071] The preparation method of the nutrient solution composition in this embodiment includes the following steps:

[0072] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator and the buffer in deionized water;

[0073] S2. Add the energy liquid and stir well;

[0074] S3. Finally, add the boosting factors and continue to stir until completely dissolved.

[0075] Example 3

[0076] This embodiment relates to a nutrient composition applied to the sodium-potassium pump, including components with the following concentrations:

[0077] First electrolyte: Sodium ions, with a concentration of 0.1 mol / L;

[0078] Second electrolyte: Potassium ions, with a concentration of 0.5 mol / L;

[0079] First regulator: Magnesium ions, with a concentration of 0.05 mol / L;

[0080] Second regulator: Calcium ions, with a concentration of 0.01 mol / L;

[0081] Buffer: Chloride ions, with a concentration of 0.5 mol / L;

[0082] Energy liquid: Glucose and / or fructose, with a concentration of 0.2 mol / L;

[0083] Boosting factors: The boosting factors are vitamin B group and vitamin E group. The concentration of vitamin B group is 0.001 mol / L; the concentration of vitamin E group is 0.01 mol / L.

[0084] In this embodiment, the ratio of sodium ions to potassium ions is 2:1; the ratio of magnesium ions to calcium ions is 1:1.5; the composition exists in the form of an aqueous solution.

[0085] The preparation method of the nutrient solution composition in this embodiment includes the following steps:

[0086] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator and the buffer in deionized water;

[0087] S2. Add the energy solution and stir well;

[0088] S3. Finally, add the boosting factor and continue stirring until completely dissolved.

[0089] Example 4

[0090] This example relates to a nutritional composition applied to the sodium-potassium pump, comprising components with the following concentrations:

[0091] First electrolyte: sodium ion, with a concentration of 0.2 mol / L;

[0092] Second electrolyte: potassium ion, with a concentration of 0.3 mol / L;

[0093] First regulator: magnesium ion, with a concentration of 0.07 mol / L;

[0094] Second regulator: calcium ion, with a concentration of 0.04 mol / L;

[0095] Buffer: chloride ion, with a concentration of 0.4 mol / L;

[0096] Energy solution: glucose and / or fructose, with a concentration of 0.2 mol / L;

[0097] Boosting factor: The boosting factor is coenzyme Q10 and α-lipoic acid, with a concentration of 0.01 mol / L.

[0098] In this example, the ratio of sodium ion to potassium ion is 1.3:1; the ratio of magnesium ion to calcium ion is 1:1.7; the composition exists in the form of an aqueous solution.

[0099] The preparation method of the nutritional composition in this example comprises the following steps:

[0100] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator and the buffer in deionized water;

[0101] S2. Add the energy solution and stir well;

[0102] S3. Finally, add the boosting factor and continue stirring until completely dissolved.

[0103] Example 5

[0104] This example relates to a nutritional composition applied to the sodium-potassium pump, comprising components with the following concentrations:

[0105] First electrolyte: sodium ions, with a concentration of 0.4 mol / L;

[0106] Second electrolyte: potassium ions, with a concentration of 0.2 mol / L;

[0107] First regulator: magnesium ions, with a concentration of 0.06 mol / L;

[0108] Second regulator: calcium ions, with a concentration of 0.03 mol / L;

[0109] Buffer: chloride ions, with a concentration of 0.2 mol / L;

[0110] Energy solution: glucose and / or fructose, with a concentration of 0.2 mol / L;

[0111] Boosting factor: The boosting factor is vitamin E group and coenzyme Q10. The concentration of vitamin E group is 0.005 mol / L; the concentration of coenzyme Q10 is 0.008 mol / L.

[0112] In this example, the ratio of sodium ions to potassium ions is 1:1 - 2:1; the ratio of magnesium ions to calcium ions is 1:1 - 1:2; the composition exists in the form of an aqueous solution.

[0113] The preparation method of the nutrient solution composition in this example includes the following steps:

[0114] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator and the buffer in deionized water;

[0115] S2. Add the energy solution and stir well;

[0116] S3. Finally, add the boosting factor and continue to stir until completely dissolved.

[0117] Example 6

[0118] This example relates to a nutrient composition applied to the sodium-potassium pump, including components with the following concentrations:

[0119] First electrolyte: sodium ions, with a concentration of 0.3 mol / L;

[0120] Second electrolyte: potassium ions, with a concentration of 0.3 mol / L;

[0121] First regulator: magnesium ions, with a concentration of 0.04 mol / L;

[0122] Second regulator: calcium ions, with a concentration of 0.05 mol / L;

[0123] Buffer: chloride ions, with a concentration of 0.5 mol / L;

[0124] Energy liquid: Glucose and / or fructose, with a concentration of 0.4 mol / L;

[0125] Boosting factors: The boosting factors are vitamin B group and alpha-lipoic acid. The concentration of the vitamin B group is 0.007 mol / L; the concentration of alpha-lipoic acid is 0.007 mol / L.

[0126] In this embodiment, the ratio of sodium ions to potassium ions is 1.2:1; the ratio of magnesium ions to calcium ions is 1:1.2; the composition exists in the form of an aqueous solution.

[0127] The preparation method of the nutrient composition in this embodiment includes the following steps:

[0128] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator, and the buffer in deionized water;

[0129] S2. Add the energy liquid and stir well;

[0130] S3. Finally, add the boosting factors and continue stirring until completely dissolved.

[0131] Example 7

[0132] This embodiment relates to a nutrient composition applied to the sodium-potassium pump, including components with the following concentrations:

[0133] First electrolyte: Sodium ions, with a concentration of 0.3 mol / L;

[0134] Second electrolyte: Potassium ions, with a concentration of 0.3 mol / L;

[0135] First regulator: Magnesium ions, with a concentration of 0.05 mol / L;

[0136] Second regulator: Calcium ions, with a concentration of 0.05 mol / L;

[0137] Buffer: Chloride ions, with a concentration of 0.3 mol / L;

[0138] Energy liquid: Glucose and / or fructose, with a concentration of 0.2 mol / L;

[0139] Boosting factors: The boosting factors are vitamin B group, vitamin C group, vitamin E group, and coenzyme Q10. The concentration of the vitamin B group is 0.005 mol / L; the concentration of the vitamin C group is 0.005 mol / L; the concentration of the vitamin E group is 0.005 mol / L; the concentration of coenzyme Q10 is 0.005 mol / L.

[0140] In this embodiment, the ratio of sodium ions to potassium ions is 1:1 - 2:1; the ratio of magnesium ions to calcium ions is 1:1 - 1:2; the composition exists in the form of an aqueous solution.

[0141] The preparation method of the nutrient solution composition in this embodiment includes the following steps:

[0142] S1. Dissolve the first electrolyte, the second electrolyte, the first regulator, the second regulator, and the buffer in deionized water;

[0143] S2. Add the energy solution and stir well;

[0144] S3. Finally, add the boosting factor and continue to stir until completely dissolved.

[0145] The above embodiments are only specific embodiments of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these obvious replacement forms all belong to the protection scope of the present invention.

Claims

1. A nutritional composition for sodium-potassium pump, characterized in that Includes components in the following concentrations: The first electrolyte: sodium ion, with a concentration range of 0.1-0.5 mol / L; The second electrolyte: potassium ion, with a concentration range of 0.1-0.5 mol / L; The first regulator: magnesium ion, the concentration range is 0.01-0.1 mol / L; The second regulator: calcium ion, the concentration range is 0.01-0.1 mol / L; Buffer: Chloride ion, the concentration range is 0.1-0.5 mol / L; Energy liquid: glucose and / or fructose, with a concentration range of 0.1-0.3 mol / L; Supporting factors: trace amounts.

2. The nutritional composition for sodium-potassium pump according to claim 1, characterized in that: The ratio of sodium ions to potassium ions is 1:1-2:

1.

3. The nutritional composition for sodium-potassium pump according to claim 1, characterized in that: The ratio of magnesium ions to calcium ions is 1:1-1:

2.

4. The nutritional composition for sodium-potassium pump according to claim 1, characterized in that: The composition is in the form of an aqueous solution.

5. The nutritional composition for sodium-potassium pump according to claim 1, characterized in that: The boosting factor is vitamin B group, and the concentration range of the vitamin B group is 0.001-0.01 mol / L.

6. The nutritional composition for sodium-potassium pump according to claim 1, characterized in that: The boosting factor is vitamin C group, and the concentration is 0.001-0.01 mol / L.

7. The nutritional composition for sodium-potassium pump according to claim 1, characterized in that: The boosting factor is vitamin E group, and the concentration is 0.001-0.01 mol / L.

8. The nutritional composition for sodium-potassium pump according to claim 1, characterized in that: The auxiliary factors are coenzyme Q10 and α-lipoic acid, with a concentration of 0.001-0.01 mol / L.

9. A method for preparing a nutritional composition for a sodium-potassium pump according to any one of claims 1 to 8, comprising the following steps: S1, dissolving a first electrolyte, a second electrolyte, a first regulator, a second regulator and a buffer in deionized water; S2, add energy liquid and stir thoroughly; S3. Finally, add the booster factor and continue stirring until it is completely dissolved.