Disodium Phosphonomycin丨CAS 26016-99-9

Disodium Phosphonomycin丨CAS 26016-99-9
Product Introduction:
Catalog No.: SS083267
CAS No.: 26016-99-9
Assay/Grade: 95.0% to 101.0%/ EP7.0
Product Name: Disodium phosphonomycin
Molecular Formula: C3H5Na2O4P
Molecular Weight: 182.02
Synonym(s): Fosfomycin Sodium
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Technical Parameters
Description

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Specifications of Disodium phosphonomycin丨26016-99-9

 

Property

Specification

Grade

EP7.0

Appearance

White or almost white crystal powder

Assay

95.0% to 101.0%

Identification

Positive

Appearance of Solution

Clear and not more intensely colored than reference solution B9

pH

9.0 to 10.5

Water

1.0% max

Specific Optical Rotation

-13.0° to -15.0°

Heavy Metals

20 ppm max

Disodium 1,2-(Dihydroxypropyl)-Phosphone

1.0% max

Bacterial Endotoxins

0.083 IU/mg max

 

Transport Information of Disodium phosphonomycin丨26016-99-9

 

UN Number

 

Class

 

Packing Group

 

H.S. Code

2941909099999

Stability & Reactivity

Stable

Storage

Keep container tightly closed. Store in a refriger

Condition to Avoid

Heat

Package

 

 

Manufacturing Information of Disodium phosphonomycin丨26016-99-9

 

Parameter

Specification

Capacity

 

Frequency

 

Main Export Countries

 

Capacity/Batch

 

Experience

Production since

Stock

 
Introduction

 

Disodium phosphonomycin丨26016-99-9, also known as Phosphonomycin disodium salt, is a phosphonic acid derivative primarily used in pharmaceutical applications due to its antibacterial properties. It is an antibiotic compound with a structure that includes a phosphonic acid group, which imparts significant biological activity, particularly against Gram-positive and Gram-negative bacteria.

 

Applications of Disodium phosphonomycin丨26016-99-9

 

1. Antibiotic and Antibacterial Treatment
● Broad-Spectrum Antibacterial Agent:
oUsed as a therapeutic agent in the treatment of urinary tract infections (UTIs) and respiratory infections caused by susceptible bacteria.
● Treatment for Resistant Infections:
oEffective against certain drug-resistant bacteria, particularly those that are resistant to beta-lactam antibiotics.
● Inhibition of Bacterial Cell Wall Synthesis:
oPhosphonomycin acts by inhibiting bacterial cell wall synthesis, disrupting bacterial growth and replication.
2. Pharmaceutical and Drug Development
● Precursor for the Synthesis of Other Antibiotics:
oUsed in the synthesis of other antibacterial agents and can be modified for developing new antibiotics.
● Experimental Research in Antibiotic Resistance:
oStudied for its potential use in combating bacterial resistance and for developing novel antibiotic therapies.
3. Agriculture
● Fungicide and Bactericide:
oUsed in agriculture to prevent bacterial and fungal infections in plants, especially in controlling bacterial blight and other plant diseases.
4. Research and Diagnostic Applications
● Laboratory Research:
oUsed in microbiological research to study the mechanism of bacterial resistance and the development of new antibacterial strategies.

 

Benefits of Disodium phosphonomycin丨26016-99-9

 

1. Broad Antibacterial Activity
● Exhibits effective action against a wide range of bacterial infections, including both Gram-positive and Gram-negative organisms.
2. Mechanism of Action
● Its phosphonic acid structure helps inhibit the synthesis of bacterial cell walls, making it a potent antibiotic for several types of resistant bacteria.
3. Low Toxicity
● It has a relatively low toxicity profile compared to some other antibiotics, making it a safer treatment option for certain infections.
4. Potential for Treating Resistant Infections
● Effective against certain antibiotic-resistant strains, making it a useful agent in the fight against multidrug-resistant bacterial strains.
5. Versatile Applications
● Beyond human medicine, it is also utilized in agriculture and research, providing additional value across different sectors.

 

Conclusion

 

Disodium phosphonomycin丨26016-99-9 is a powerful and versatile antibacterial agent with applications in pharmaceuticals, agriculture, and scientific research. Its broad-spectrum antibacterial activity, effectiveness against resistant infections, and low toxicity make it a valuable compound in the ongoing fight against bacterial diseases and in the development of new therapeutic strategies.

 

 

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