-
Founded in:
2002-08-02 -
Country:
China -
Address:
No. 296, Chuqiao Road, Dingmao, Zhenjiang New District -
Tax NO.:
913211917413307793 -
Registered Funds:
12.7 million yuan -
Website:
-
Email:
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Inosine |
Participate in cell energy metabolism and protein synthesis in the body, increase the activity of related metabolic enzymes, improve liver function, and promote the recovery of damaged liver
More
Participate in cell energy metabolism and protein synthesis in the body, increase the activity of related metabolic enzymes, improve liver function, and promote the recovery of damaged liver |
0.2g | 58-63-9 | 8 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Riboflavin |
It is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6, participate in the conversion of tryptophan into niacin, and may be related to maintaining the integrity of red blood cells.
More
It is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6, participate in the conversion of tryptophan into niacin, and may be related to maintaining the integrity of red blood cells. |
83-88-5 | 19 | |
| Riboflavin |
It is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6, participate in the conversion of tryptophan into niacin, and may be related to maintaining the integrity of red blood cells.
More
It is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6, participate in the conversion of tryptophan into niacin, and may be related to maintaining the integrity of red blood cells. |
83-88-5 | 19 | |
| Vitamin E |
Vitamin B2 is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6 and convert amino acids into niacin, and may be related to maintaining the integrity of red blood cells.
More
Vitamin B2 is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6 and convert amino acids into niacin, and may be related to maintaining the integrity of red blood cells. |
2074-53-5 | 11 | |
| L-tert-Leucine |
Vitamin B2 is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6 and convert amino acids into niacin, and may be related to maintaining the integrity of red blood cells.
More
Vitamin B2 is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6 and convert amino acids into niacin, and may be related to maintaining the integrity of red blood cells. |
20859-02-3 | 0 | |
| trace elements |
Vitamin B2 is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6 and convert amino acids into niacin, and may be related to maintaining the integrity of red blood cells.
More
Vitamin B2 is converted into flavin mononucleotide (FMN) and flavin adenine dinucleotide, both of which are important coenzymes for tissue respiration. It can also activate vitamin B6 and convert amino acids into niacin, and may be related to maintaining the integrity of red blood cells. |
0 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Ursodeoxycholic acid |
By inhibiting the reabsorption of cholesterol in the intestine and reducing the secretion of cholesterol into the bile, the saturation of cholesterol in the bile is reduced. Cholesterol stones may be gradually dissolved due to the dispersion of cholesterol and the formation of liquid crystals. The treatment of liver and cholestatic diseases is mainly based on the relative replacement of lipophilic, detergent-like toxic bile acids by hydrophilic, cytoprotective and non-cytotoxic ursodeoxycholic acid, as well as the promotion of hepatocyte secretion and immunomodulation.
More
By inhibiting the reabsorption of cholesterol in the intestine and reducing the secretion of cholesterol into the bile, the saturation of cholesterol in the bile is reduced. Cholesterol stones may be gradually dissolved due to the dispersion of cholesterol and the formation of liquid crystals. The treatment of liver and cholestatic diseases is mainly based on the relative replacement of lipophilic, detergent-like toxic bile acids by hydrophilic, cytoprotective and non-cytotoxic ursodeoxycholic acid, as well as the promotion of hepatocyte secretion and immunomodulation. |
128-13-2 | 39 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Aminotitanium |
Active substances extracted from animal organs can enhance the body's metabolism and disease resistance, help blood cell proliferation, differentiation, maturation and release, and have a good effect on increasing white blood cells and platelets.
More
Active substances extracted from animal organs can enhance the body's metabolism and disease resistance, help blood cell proliferation, differentiation, maturation and release, and have a good effect on increasing white blood cells and platelets. |
0 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Pancreatin |
Pancreatic enzymes contain pancreatic lipase, pancreatic amylase, and trypsin; pancreatic lipase can break down fat into glycerol and fatty acids, pancreatic amylase can convert starch into sugar, and trypsin can convert protein into peptone.
More
Pancreatic enzymes contain pancreatic lipase, pancreatic amylase, and trypsin; pancreatic lipase can break down fat into glycerol and fatty acids, pancreatic amylase can convert starch into sugar, and trypsin can convert protein into peptone. |
300mg | 8049-47-6 | 27 |
| Pepsin |
Pepsin can convert protein into albumen and peptone
More
Pepsin can convert protein into albumen and peptone |
13mg | 9001-75-6 | 21 |