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Founded in:
1997-03-12 -
Country:
China -
Address:
Wuhan Economic and Technological Development Zone 3MA plot (No. 29, Chuangye 3rd Road) -
Tax NO.:
91420100300244592T -
Registered Funds:
208 million yuan -
Website:
-
Email:
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Angelicae Sinensis Radix |
|
0 | ||
| Riligustilide |
|
89354-45-0 | 0 | |
| DGL |
|
0 | ||
| PERSICAE SEMEN |
|
0 | ||
| Dried ginger (charcoal) |
|
0 | ||
| Motherwort Herb P.E. |
|
0 | ||
| CARTHAMI FLOS |
|
0 | ||
| CYNANCHI PANICULATI RADIX ET RHIZOMA |
|
0 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Sodium 3-phosphoglycerate |
Sodium glycerophosphate is a phosphorus supplement used to meet the body's daily phosphorus needs. Phosphorus is involved in bone formation and in the composition of cell membranes in the form of phospholipids. Phosphorus is also related to the activity of many metabolic enzymes and plays a vital role in energy metabolism.
More
Sodium glycerophosphate is a phosphorus supplement used to meet the body's daily phosphorus needs. Phosphorus is involved in bone formation and in the composition of cell membranes in the form of phospholipids. Phosphorus is also related to the activity of many metabolic enzymes and plays a vital role in energy metabolism. |
10.5g | 17603-42-8 | 9 |
| Caffeine |
Caffeine can increase the content of cyclic adenosine monophosphate (cAMP) in cells. Small doses can enhance the excitation process of the cerebral cortex, invigorate the spirit, and relieve fatigue. Large doses can excite the medulla oblongata center.
More
Caffeine can increase the content of cyclic adenosine monophosphate (cAMP) in cells. Small doses can enhance the excitation process of the cerebral cortex, invigorate the spirit, and relieve fatigue. Large doses can excite the medulla oblongata center. |
1.5g | 0 | |
| Microorganism B1 |
Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate, which is a necessary coenzyme for carbohydrate metabolism. Vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, the activity of cholinesterase is enhanced, the hydrolysis of acetylcholine is accelerated, and the conduction of nerve impulses is impaired, affecting gastrointestinal and myocardial functions.
More
Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate, which is a necessary coenzyme for carbohydrate metabolism. Vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, the activity of cholinesterase is enhanced, the hydrolysis of acetylcholine is accelerated, and the conduction of nerve impulses is impaired, affecting gastrointestinal and myocardial functions. |
10.3g | 0 | |
| Phosphoric acid |
The caffeine in this product can increase the intracellular cyclic adenosine monophosphate (cAMP) content. Small doses can enhance the excitation process of the cerebral cortex, invigorate the spirit, and relieve fatigue. Large doses can excite the medulla oblongata center. Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate, which is a coenzyme necessary for carbohydrate metabolism. Vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, the activity of cholinesterase is enhanced, and the hydrolysis of acetylcholine is accelerated, causing nerve impulse conduction disorders and affecting gastrointestinal and myocardial function. Nicotinic acid can be converted into nicotinamide in the body, and then combined with riboadenine to form nicotinamide adenine dinucleotide (coenzyme I) and nicotinamide adenine dinucleotide phosphate (coenzyme II), which are necessary for lipid, amino acid, protein, purine metabolism, tissue respiration oxidation and glycogenolysis. Nicotinic acid can reduce the effect of coenzyme A; it affects the transportation of cholesterol in the blood by inhibiting the synthesis of very low density lipoprotein (VLDL). Nicotine also has a peripheral vasodilation effect. Sodium glycerophosphate is a phosphorus supplement used to meet the body's daily phosphorus needs. Phosphorus is involved in bone formation and in the composition of cell membranes in the form of phospholipids. Phosphorus is also related to the activity of many metabolic enzymes and plays a vital role in energy metabolism.
More
The caffeine in this product can increase the intracellular cyclic adenosine monophosphate (cAMP) content. Small doses can enhance the excitation process of the cerebral cortex, invigorate the spirit, and relieve fatigue. Large doses can excite the medulla oblongata center. Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate, which is a coenzyme necessary for carbohydrate metabolism. Vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, the activity of cholinesterase is enhanced, and the hydrolysis of acetylcholine is accelerated, causing nerve impulse conduction disorders and affecting gastrointestinal and myocardial function. Nicotinic acid can be converted into nicotinamide in the body, and then combined with riboadenine to form nicotinamide adenine dinucleotide (coenzyme I) and nicotinamide adenine dinucleotide phosphate (coenzyme II), which are necessary for lipid, amino acid, protein, purine metabolism, tissue respiration oxidation and glycogenolysis. Nicotinic acid can reduce the effect of coenzyme A; it affects the transportation of cholesterol in the blood by inhibiting the synthesis of very low density lipoprotein (VLDL). Nicotine also has a peripheral vasodilation effect. Sodium glycerophosphate is a phosphorus supplement used to meet the body's daily phosphorus needs. Phosphorus is involved in bone formation and in the composition of cell membranes in the form of phospholipids. Phosphorus is also related to the activity of many metabolic enzymes and plays a vital role in energy metabolism. |
0.27g | 7664-38-2 | 7 |
| Nicotinic acid |
Nicotinic acid can be converted into nicotinamide in the body, and then combined with riboadenin to form nicotinamide adenine dinucleotide (coenzyme I) and nicotinamide adenine dinucleotide phosphate (coenzyme II), which are necessary for lipid, amino acid, protein, purine metabolism, tissue respiration oxidation and glycogenolysis. Nicotinic acid can reduce the effect of coenzyme A; it affects the transport of cholesterol in the blood by inhibiting the synthesis of very low density lipoprotein (VLDL). Nicotine also has the effect of peripheral vasodilation.
More
Nicotinic acid can be converted into nicotinamide in the body, and then combined with riboadenin to form nicotinamide adenine dinucleotide (coenzyme I) and nicotinamide adenine dinucleotide phosphate (coenzyme II), which are necessary for lipid, amino acid, protein, purine metabolism, tissue respiration oxidation and glycogenolysis. Nicotinic acid can reduce the effect of coenzyme A; it affects the transport of cholesterol in the blood by inhibiting the synthesis of very low density lipoprotein (VLDL). Nicotine also has the effect of peripheral vasodilation. |
0.03g | 59-67-6 | 15 |