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Founded in:
1994-09-27 -
Country:
China -
Address:
Gongliu Village, Caijiapo, Qishan County, Baoji City, Shaanxi Province -
Tax NO.:
91610300623155949T -
Registered Funds:
$2.2 million -
Email:
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Sodium acetate |
Regulate water and electrolyte balance to maintain stable body fluid volume and osmotic pressure
More
Regulate water and electrolyte balance to maintain stable body fluid volume and osmotic pressure |
12.24g | 127-09-3 | 34 |
| Sodium chloride |
Regulate water and electrolyte balance to maintain stable body fluid volume and osmotic pressure
More
Regulate water and electrolyte balance to maintain stable body fluid volume and osmotic pressure |
11.7g | 7647-14-5 | 43 |
| Potassium chloride |
Supplement a small amount of potassium ions
More
Supplement a small amount of potassium ions |
0.60g | 7447-40-7 | 39 |
| Calcium chloride |
Supplement a small amount of calcium ions
More
Supplement a small amount of calcium ions |
0.666g | 10043-52-4 | 27 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Sodium lactate |
It is converted into bicarbonate ions in the body to regulate acid-base balance and maintain normal physiological functions; lactate ions can correct metabolic acidosis and allow potassium ions to enter cells from extracellular fluid.
More
It is converted into bicarbonate ions in the body to regulate acid-base balance and maintain normal physiological functions; lactate ions can correct metabolic acidosis and allow potassium ions to enter cells from extracellular fluid. |
3.10g | 312-85-6 | 0 |
| Sodium chloride |
Sodium is the most important cation in extracellular fluid and is the main substance for maintaining constant body fluid osmotic pressure and extracellular volume.
More
Sodium is the most important cation in extracellular fluid and is the main substance for maintaining constant body fluid osmotic pressure and extracellular volume. |
6.00g | 7647-14-5 | 43 |
| Potassium chloride |
Potassium is the main intracellular cation and plays an important role in maintaining normal neuromuscular excitability.
More
Potassium is the main intracellular cation and plays an important role in maintaining normal neuromuscular excitability. |
0.30g | 7447-40-7 | 39 |
| Calcium chloride |
Calcium ions act as second messengers in cells and are closely related to many functions of the body.
More
Calcium ions act as second messengers in cells and are closely related to many functions of the body. |
0.20g | 10043-52-4 | 27 |
| D-Sorbitol |
After entering the human body, most of it is converted into glycogen to provide calories
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After entering the human body, most of it is converted into glycogen to provide calories |
50.0g | 98201-93-5 | 0 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Metronidazole |
This product is a nitroimidazole derivative that can inhibit the redox reaction of amoeba and break the nitrogen chain of the protozoa. It has a killing effect on Amoeba histolytica, a strong killing effect on Trichomonas, and a killing effect on anaerobic microorganisms, interfering with the growth and reproduction of bacteria, and ultimately causing bacterial death.
More
This product is a nitroimidazole derivative that can inhibit the redox reaction of amoeba and break the nitrogen chain of the protozoa. It has a killing effect on Amoeba histolytica, a strong killing effect on Trichomonas, and a killing effect on anaerobic microorganisms, interfering with the growth and reproduction of bacteria, and ultimately causing bacterial death. |
0.2% | 443-48-1 | 39 |
| GLUCOSE |
This product is a nitroimidazole derivative that can inhibit the redox reaction of amoeba and break the nitrogen chain of the protozoa. In vitro tests have shown that when the drug concentration is 1-2 mg/L, the histolytica can undergo morphological changes in 6-20 hours and all are killed within 24 hours. When the concentration is 0.2 mg/L, the histolytica can be killed within 72 hours. This product has a strong effect of killing trichomonas, and its mechanism is unknown. Metronidazole has a killing effect on anaerobic microorganisms, and the metabolites generated when it is reduced in the human body also have anti-anaerobic effects, inhibiting the synthesis of bacterial deoxyribonucleic acid, thereby interfering with the growth and reproduction of bacteria, and ultimately causing bacterial death. Metronidazole is carcinogenic to some animals.
More
This product is a nitroimidazole derivative that can inhibit the redox reaction of amoeba and break the nitrogen chain of the protozoa. In vitro tests have shown that when the drug concentration is 1-2 mg/L, the histolytica can undergo morphological changes in 6-20 hours and all are killed within 24 hours. When the concentration is 0.2 mg/L, the histolytica can be killed within 72 hours. This product has a strong effect of killing trichomonas, and its mechanism is unknown. Metronidazole has a killing effect on anaerobic microorganisms, and the metabolites generated when it is reduced in the human body also have anti-anaerobic effects, inhibiting the synthesis of bacterial deoxyribonucleic acid, thereby interfering with the growth and reproduction of bacteria, and ultimately causing bacterial death. Metronidazole is carcinogenic to some animals. |
5% | 58367-01-4 | 15 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Sodium chloride |
Maintains normal blood and extracellular fluid volume and osmotic pressure in the human body; plays a decisive role in osmotic pressure
More
Maintains normal blood and extracellular fluid volume and osmotic pressure in the human body; plays a decisive role in osmotic pressure |
0.85% | 7647-14-5 | 43 |
| Potassium chloride |
Replenish potassium ions to maintain body fluid volume and electrolyte balance
More
Replenish potassium ions to maintain body fluid volume and electrolyte balance |
0.03% | 7447-40-7 | 39 |
| Calcium chloride |
Supplement calcium ions to maintain body fluid volume and electrolyte balance
More
Supplement calcium ions to maintain body fluid volume and electrolyte balance |
0.033% | 10043-52-4 | 27 |
| Name | Description | Content | CAS NO. | Registered Holders |
|---|---|---|---|---|
| Sodium lactate |
The final metabolite is sodium bicarbonate, which can correct metabolic acidosis; when hyperkalemia is accompanied by acidosis, it can correct acidosis and allow potassium ions to enter the cells from the blood and extracellular fluid.
More
The final metabolite is sodium bicarbonate, which can correct metabolic acidosis; when hyperkalemia is accompanied by acidosis, it can correct acidosis and allow potassium ions to enter the cells from the blood and extracellular fluid. |
3.10g | 312-85-6 | 0 |
| Sodium chloride |
Under normal circumstances, human blood also contains a small amount of lactic acid, which is mainly produced by glucose or glycogenolysis, and comes from muscles, skin, brain and cells. After lactic acid is produced, it may be converted into glycogen or acetic acid, or enter the tricarboxylic acid cycle and be decomposed into water and carbon dioxide. Therefore, the final metabolite of sodium lactate is sodium bicarbonate, which can correct metabolic acidosis. When hyperkalemia is accompanied by acidosis, sodium lactate can correct acidosis and allow potassium ions to enter cells from blood and extracellular fluid. The main organs that degrade lactic acid are liver and kidney. When lactic acid metabolism in the body is abnormal or impaired, the therapeutic effect is poor.
More
Under normal circumstances, human blood also contains a small amount of lactic acid, which is mainly produced by glucose or glycogenolysis, and comes from muscles, skin, brain and cells. After lactic acid is produced, it may be converted into glycogen or acetic acid, or enter the tricarboxylic acid cycle and be decomposed into water and carbon dioxide. Therefore, the final metabolite of sodium lactate is sodium bicarbonate, which can correct metabolic acidosis. When hyperkalemia is accompanied by acidosis, sodium lactate can correct acidosis and allow potassium ions to enter cells from blood and extracellular fluid. The main organs that degrade lactic acid are liver and kidney. When lactic acid metabolism in the body is abnormal or impaired, the therapeutic effect is poor. |
6.00g | 7647-14-5 | 43 |
| Potassium chloride |
When hyperkalemia is accompanied by acidosis, sodium lactate can cause potassium ions to enter cells from the blood and extracellular fluid.
More
When hyperkalemia is accompanied by acidosis, sodium lactate can cause potassium ions to enter cells from the blood and extracellular fluid. |
0.30g | 7447-40-7 | 39 |
| Calcium chloride |
Under normal circumstances, human blood also contains a small amount of lactic acid, which is mainly produced by glucose or glycogenolysis, and comes from muscles, skin, brain and cells. After lactic acid is produced, it may be converted into glycogen or acetic acid, or enter the tricarboxylic acid cycle and be decomposed into water and carbon dioxide. Therefore, the final metabolite of sodium lactate is sodium bicarbonate, which can correct metabolic acidosis. When hyperkalemia is accompanied by acidosis, sodium lactate can correct acidosis and allow potassium ions to enter cells from blood and extracellular fluid. The main organs that degrade lactic acid are liver and kidney. When lactic acid metabolism in the body is abnormal or impaired, the therapeutic effect is poor.
More
Under normal circumstances, human blood also contains a small amount of lactic acid, which is mainly produced by glucose or glycogenolysis, and comes from muscles, skin, brain and cells. After lactic acid is produced, it may be converted into glycogen or acetic acid, or enter the tricarboxylic acid cycle and be decomposed into water and carbon dioxide. Therefore, the final metabolite of sodium lactate is sodium bicarbonate, which can correct metabolic acidosis. When hyperkalemia is accompanied by acidosis, sodium lactate can correct acidosis and allow potassium ions to enter cells from blood and extracellular fluid. The main organs that degrade lactic acid are liver and kidney. When lactic acid metabolism in the body is abnormal or impaired, the therapeutic effect is poor. |
0.2g | 10043-52-4 | 27 |