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CSPC OUYI Pharmaceutical Co., Ltd.
  • Founded in:

    2001-03-29
  • Country:

    China China
  • Address:

    No. 88, Yangzi Road, Shijiazhuang Economic and Technological Development Zone
  • Tax NO.:

    91130100601289268L
  • Registered Funds:

    298 million yuan
  • Website:

  • Email:

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Azithromycin Tablets
The main ingredient of this product is azithromycin, and its chemical name is (2R, 3S, 4R, 5R, 8R, 10R, 11R, 12S, 13S, 14R)-13-[(2,6-dideoxy-3-C-methyl-3-O-methyl-a-L-core-hexopyranosyl)oxy]-2-ethyl-3,4,10-trihydroxy-3,5,6,8,10,12,14-heptamethyl-11-[[3,4,6-trideoxy-3-(dimethylamino)-beta;-D-xyl-hexopyranosyl]oxy]-1-oxa-6-azacyclopentadecan-15-one. Its chemical structure: Molecular formula: C38H72N2O12 Molecular weight: 749.00.
Name Description Content CAS NO. Registered Holders
Azithromycin

Azithromycin is a 15-membered macrolide antibiotic that inhibits RNA-dependent protein synthesis by binding to the 50S subunit of bacterial ribosomes. It has antibacterial effects on a variety of Gram-positive aerobic bacteria, Gram-negative aerobic bacteria, anaerobic bacteria, sexually transmitted disease microorganisms and other microorganisms.

More

Azithromycin is a 15-membered macrolide antibiotic that inhibits RNA-dependent protein synthesis by binding to the 50S subunit of bacterial ribosomes. It has antibacterial effects on a variety of Gram-positive aerobic bacteria, Gram-negative aerobic bacteria, anaerobic bacteria, sexually transmitted disease microorganisms and other microorganisms.

83905-01-5 39
Azithromycin Dispersible Tablets
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Name Description Content CAS NO. Registered Holders
Azithromycin

It inhibits bacterial protein synthesis by hindering the bacterial transpeptidation process. It has antibacterial effects on a variety of Gram-positive aerobic bacteria, Gram-negative aerobic bacteria, anaerobic bacteria, sexually transmitted disease microorganisms and other microorganisms. The mechanism of action is the same as that of erythromycin, mainly binding to the 50S subunit of the bacterial ribosome to inhibit RNA-dependent protein synthesis.

More

It inhibits bacterial protein synthesis by hindering the bacterial transpeptidation process. It has antibacterial effects on a variety of Gram-positive aerobic bacteria, Gram-negative aerobic bacteria, anaerobic bacteria, sexually transmitted disease microorganisms and other microorganisms. The mechanism of action is the same as that of erythromycin, mainly binding to the 50S subunit of the bacterial ribosome to inhibit RNA-dependent protein synthesis.

83905-01-5 39
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