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Cefixime And Clavulanate Tablet Cefixime And Clavulanate Tablet
Cefixime And Clavulanate Tablet
Cefixime And Clavulanate Tablet

Cefixime And Clavulanate Tablet

1.00 - 1.25 USD ($)/Box

Product Details:

  • Molecular Formula C12H15N3O2S
  • Medicine Type Tablet
  • Appearance Tablet
  • Grade A
  • Usage Antibiotic
  • Dosage As Per Direction By Physician.
  • CAS No 113-98-4, 3810-74-0
  • Supply Ability : 10000 Box Per Day
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Price And Quantity

  • 1.00 - 1.25 USD ($)/Box
  • 500 Box

Product Specifications

  • C12H15N3O2S
  • Tablet
  • Tablet
  • Antibiotic
  • As Per Direction By Physician.
  • A
  • 113-98-4, 3810-74-0
  • Store at dry And Cool Place

Trade Information

  • Nhavasheva Port, Mundra Port, Hajira Port.
  • Western Union, Telegraphic Transfer (T/T), Letter of Credit (L/C), Cash in Advance (CID), Cash Advance (CA)
  • 10000 Box Per Day
  • 5-7 Days
  • Yes
  • If order is confirmed we will reimburse the sample cost
  • Alualu/Blister pack.
  • Africa, Middle East, Western Europe, Eastern Europe, South America, North America, Central America, Australia, Asia
  • All India
  • EUGMP/WHOGMP/GMP.

Product Description

Cefixime And Clavulanate Tablet 

Cefixime is a semisynthetic, third generation cephalosporin antibiotic, effective against a wide spectrum of sensitive Gram positive, Gram negative and anaerobic bacterial pathogens including beta-lactamase producing strains. It has high affinity for penicillin binding proteins with varying site of activity.

Clavulanic acid is a naturally derived beta lactamase inhibitor produced by Streptomyces clavuligerus. Clavulanic acid is an irreversible inhibitor of intracellular and extracellular ²-lactamases, demonstrating concentration-dependent and competitive inhibition.

Rationale for combination: Although Clavulanic acid does have some degree of bacterial activity, its principal role is as a beta-lactamase inhibitor. Beta-lactam antibiotics, such as the penicillins and cephalosporins, act by disrupting the development of bacterial cells walls thus causing the disintegration of the bacteria. However, some bacteria acquire the genes to produce enzymes which inactivate this mode of action - so called beta-lactamases - drastically reducing the efficacy of this class of antibiotics.

Clavulanic acid has a similar structure to the beta-lactam antibiotics but binds irreversibly to the beta-lactamase enzymes. Used in combination with the beta-lactam antibiotics, it has become one of the most prescribed antibiotics prolonging the effective life of antibiotics.

 


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