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Founded in:
1992-07-23 -
Country:
China -
Address:
No. 1 Haishi Road, Penglai City, Shandong Province -
Tax NO.:
9137068461341859XD -
Registered Funds:
80 million yuan -
Website:
-
Email:
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Urokinase |
This product directly acts on the endogenous fibrinolytic system to catalyze the cleavage of plasminogen into plasmin, which can not only degrade fibrin clots, but also degrade fibrinogen, coagulation factor V and coagulation factor VIII in the blood circulation, thereby exerting a thrombolytic effect. This product has a fast onset and good effect on newly formed thrombi. This product can also increase the activity of vascular ADP enzyme, inhibit ADP-induced platelet aggregation, and prevent thrombosis.
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This product directly acts on the endogenous fibrinolytic system to catalyze the cleavage of plasminogen into plasmin, which can not only degrade fibrin clots, but also degrade fibrinogen, coagulation factor V and coagulation factor VIII in the blood circulation, thereby exerting a thrombolytic effect. This product has a fast onset and good effect on newly formed thrombi. This product can also increase the activity of vascular ADP enzyme, inhibit ADP-induced platelet aggregation, and prevent thrombosis. |
9039-53-6 | 10 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Diisopropylammonium dichloroacetate |
No specific pharmacological information is provided
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No specific pharmacological information is provided |
660-27-5 | 14 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Troxerutin |
It can inhibit platelet aggregation and prevent thrombosis. It can also counteract vascular damage caused by 5-hydroxytryptamine and bradykinin, increase capillary resistance, reduce capillary permeability, and prevent edema caused by increased vascular permeability.
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It can inhibit platelet aggregation and prevent thrombosis. It can also counteract vascular damage caused by 5-hydroxytryptamine and bradykinin, increase capillary resistance, reduce capillary permeability, and prevent edema caused by increased vascular permeability. |
7085-55-4 | 25 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Ondansetron hydrochloride |
This product is a selective 5-HT3 receptor antagonist. Its mechanism of action may be to antagonize the 5-HT3 receptors in the peripheral vagus nerve endings and central chemoreceptor areas, thereby blocking the vomiting reflex caused by factors such as chemotherapy and surgery that promote the release of 5-HT from intestinal chromaffin cells and excite the vagus afferent nerves. This product has high selectivity and no side effects such as extrapyramidal reactions and excessive sedation.
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This product is a selective 5-HT3 receptor antagonist. Its mechanism of action may be to antagonize the 5-HT3 receptors in the peripheral vagus nerve endings and central chemoreceptor areas, thereby blocking the vomiting reflex caused by factors such as chemotherapy and surgery that promote the release of 5-HT from intestinal chromaffin cells and excite the vagus afferent nerves. This product has high selectivity and no side effects such as extrapyramidal reactions and excessive sedation. |
103639-04-9 | 26 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| L-aspartate |
Aspartic acid is the precursor of oxaloacetate in the body and plays an important role in the tricarboxylic acid cycle. At the same time, aspartic acid also participates in the ornithine cycle, promoting the metabolism of ammonia and carbon dioxide, generating urea, and reducing the content of ammonia and carbon dioxide in the blood. Aspartic acid has a strong affinity with cells and can serve as a carrier for potassium and magnesium ions to enter cells, allowing potassium ions to return to cells, promoting cell depolarization and cell metabolism, and maintaining their normal functions.
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Aspartic acid is the precursor of oxaloacetate in the body and plays an important role in the tricarboxylic acid cycle. At the same time, aspartic acid also participates in the ornithine cycle, promoting the metabolism of ammonia and carbon dioxide, generating urea, and reducing the content of ammonia and carbon dioxide in the blood. Aspartic acid has a strong affinity with cells and can serve as a carrier for potassium and magnesium ions to enter cells, allowing potassium ions to return to cells, promoting cell depolarization and cell metabolism, and maintaining their normal functions. |
1.7g | 0 | |
| Potassium |
Magnesium and potassium are important cations in cells and play an important role in various enzyme reactions and muscle contraction processes. The ratio of potassium ion, calcium ion, sodium ion and magnesium ion concentrations inside and outside cells affects myocardial contractility.
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Magnesium and potassium are important cations in cells and play an important role in various enzyme reactions and muscle contraction processes. The ratio of potassium ion, calcium ion, sodium ion and magnesium ion concentrations inside and outside cells affects myocardial contractility. |
0.228g | 0 | |
| Magnesium |
Magnesium and potassium are important cations in cells, playing an important role in a variety of enzyme reactions and muscle contraction. The ratio of potassium ions, calcium ions, sodium ions, and magnesium ions inside and outside cells affects myocardial contractility. Magnesium ions are essential for the production of glycogen and high-energy phosphates.
More
Magnesium and potassium are important cations in cells, playing an important role in a variety of enzyme reactions and muscle contraction. The ratio of potassium ions, calcium ions, sodium ions, and magnesium ions inside and outside cells affects myocardial contractility. Magnesium ions are essential for the production of glycogen and high-energy phosphates. |
0.084g | 0 |