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Guangdong Otsuka Pharmaceutical Co., Ltd.
  • Founded in:

    1993-06-01
  • Country:

    China China
  • Address:

    Foshan Shunde District Ronggui Street High-tech Industrial Development Park
  • Tax NO.:

    91440606617475057M
  • Registered Funds:

    $28.4 million
  • Website:

  • Email:

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Compound Amino Acid Injection (18AA-Ⅱ)
This product is a compound preparation, its components are: 5% aspartic acid 1.5g glutamic acid 2.5g serine 1.9g histidine 3.0g glycine 3.5g threonine 2.5g alanine 7.2g<b
Name Description Content CAS NO. Registered Holders
L-ASPARTIC ACID

Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

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Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

1.5g 6899-03-2 18
L-Glutamic acid

Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

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Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

2.5g 56-86-0 18
DL-Serine

Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

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Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

1.9g 302-84-1 10
L-Histidine

Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

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Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

3.0g 71-00-1 20
Glycine

Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

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Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

3.5g 56-40-6 27
L-Threonine

Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

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Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

2.5g 72-19-5 13
D-Alanine

Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

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Provides a complete and balanced supply of 18 essential and non-essential amino acids, including tyrosine and cystine, to meet the body's needs for protein synthesis and improve nitrogen balance

7.2g 338-69-2 8
Sodium Lactate Ringer's Injection
This product is a compound preparation, and its main components are: 3.10g sodium lactate, 6.00g sodium chloride, 0.30g potassium chloride, and 0.2g calcium chloride (CaCl2·2H2O) per 1000ml.
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 cells from the blood and extracellular fluid.

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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 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.

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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.

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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.

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Sodium Lactate Ringer's Injection
This product is a compound preparation, and its main components are: 3.10g sodium lactate, 6.00g sodium chloride, 0.30g potassium chloride, and 0.2g calcium chloride (CaCl2·2H2O) per 1000ml.
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, potassium ions can 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, potassium ions can 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, potassium ions can enter cells from the blood and extracellular fluid.

More

When hyperkalemia is accompanied by acidosis, potassium ions can 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.

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Fat emulsion injection (C14~24)
This product is a sterile emulsion made by emulsifying soybean oil for injection with lecithin for injection and adding glycerol for injection.
Name Description Content CAS NO. Registered Holders
Soybean oil

Provide essential fatty acids as the body's main energy source; fatty acid oxidation is an important source of energy in the body. When there is sufficient oxygen supply, it can be decomposed into CO2 and H2O and release a large amount of energy, which is used by the body in the form of ATP.

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Provide essential fatty acids as the body's main energy source; fatty acid oxidation is an important source of energy in the body. When there is sufficient oxygen supply, it can be decomposed into CO2 and H2O and release a large amount of energy, which is used by the body in the form of ATP.

8001-22-7 25
Egg phospholipids

Phospholipids are the basic framework of the lipid bilayer of cell biological membranes (cell membranes, nuclear membranes, and mitochondrial membranes). They are the main components of lipoproteins and are involved in the transport of fat and cholesterol. Low levels of phospholipids in plasma may lead to abnormal cholesterol metabolism.

More

Phospholipids are the basic framework of the lipid bilayer of cell biological membranes (cell membranes, nuclear membranes, and mitochondrial membranes). They are the main components of lipoproteins and are involved in the transport of fat and cholesterol. Low levels of phospholipids in plasma may lead to abnormal cholesterol metabolism.

93685-90-6 26
Glycerol

Certain unsaturated fatty acids cannot be synthesized by the body itself and must be taken from vegetable oils. They are indispensable nutrients for the body, so they are called essential fatty acids. They are also the precursors of physiologically active substances such as prostaglandins, thromboxanes and leukotrienes. Fatty acids are the main energy source for the human body, and fatty acid oxidation is an important source of energy in the body. When the oxygen supply is sufficient, fatty acids can be broken down into CO2 and H2O in the body and release a large amount of energy, which is used by the body in the form of ATP. Except for brain tissue, most tissues can oxidize fatty acids, especially the liver and muscles. Phospholipids are the basic skeleton of the lipid bilayer of cell biological membranes (cell membranes, nuclear membranes, mitochondrial membranes), and are also the main components of various lipoproteins. They are involved in the transport of fat and cholesterol. If the phospholipids in plasma are too low, cholesterol will be high.

More

Certain unsaturated fatty acids cannot be synthesized by the body itself and must be taken from vegetable oils. They are indispensable nutrients for the body, so they are called essential fatty acids. They are also the precursors of physiologically active substances such as prostaglandins, thromboxanes and leukotrienes. Fatty acids are the main energy source for the human body, and fatty acid oxidation is an important source of energy in the body. When the oxygen supply is sufficient, fatty acids can be broken down into CO2 and H2O in the body and release a large amount of energy, which is used by the body in the form of ATP. Except for brain tissue, most tissues can oxidize fatty acids, especially the liver and muscles. Phospholipids are the basic skeleton of the lipid bilayer of cell biological membranes (cell membranes, nuclear membranes, mitochondrial membranes), and are also the main components of various lipoproteins. They are involved in the transport of fat and cholesterol. If the phospholipids in plasma are too low, cholesterol will be high.

56-81-5 61
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