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Creatine phosphate disodium salt CAS 922-32-7 Pharmaceutical Grade Chemicals

Basic Information
Place of Origin: CHINA
Brand Name: MOSINTER
Certification: COA
Model Number: Circulatory System Drugs API - 14
Minimum Order Quantity: 1KG
Price: Negotiation
Packaging Details: Aluminum foil bag , kraft paper bag
Delivery Time: Within 7 days
Payment Terms: L/C, T/T
Supply Ability: Can be customized according to customer requirements
Detail Information
Name: Creatine Phosphate Disodium Salt CAS: 922-32-7
Form: Powder Molecular Formula: C4H8N3Na2O5P
Molecular Weight: 255.08 PH: 8.3 (20% In Water)
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Product Description

Creatine phosphate disodium salt CAS 922-32-7 Pharmaceutical Grade Chemicals
 

Description:

 

Creatine phosphate is an important energy-supplying substance in muscle contraction metabolism, which is the chemical energy reserve of smooth muscle and striated muscle, and is used for ATP resynthesis.Phosphocreatine disodium is its medicinal form.

Creatine phosphate sodium, chemical called N - [of amino (phosphine amino) methyl] - N - methyl glycine disodium salt, is the xinhui pharmaceutical factory in 1992 Italy a myocardial protective agent, in the form of creatine phosphate in the body play a number of important physiological functions, is widely used in cardiac ischemia or heart surgery in patients with myocardial protection, and heart failure, myocardial infarction, and the treatment of cardiovascular disease such as arrhythmia.

 

Specifications:
 

SPECIFICATION PROPERTIES
STANDARD
Appearance
White powder
Assay,%
≥98.0
PH
8.0-9.0
Transparency,%
≥98.0
Heavy Metals,ppm
≤15
Iron,ppm
≤10
Sulfate,ppm
≤200
Arsenic,ppm
≤1

 
Application: 
 

This product is the chemical energy reserve of myocardium and skeletal muscle, and is used for ATP resynthesis, providing energy for actomyosin contraction process, playing an important role in energy metabolism of muscle contraction.Lack of energy supply is an important factor in the formation and development of cardiac injury.

1. It has a significant protective effect on the systolic function of ischemic myocardium, making the systolic force fully recover and diastolic blood pressure drop rapidly.

2. Maintain the contents of adenosine triphosphate and creatine phosphate in cells, and maintain the energy reserve of myocardium.

3. Reduce the loss of creatine kinase and reduce the damage of cell membrane.

4. Anti-peroxidation.

5. Improve myocardial microcirculation.Since there is a high-energy phosphate bond in phosphocreatine molecule, its high-energy phosphate bond converts ADP directly into ATP under the action of phosphocreatinase, and the direct energy to the body can have an immediate effect.As an intermediate product of glycolysis, fructose sodium diphosphate plays an indirect role through anaerobic metabolism.


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