Glybenzcyclamide 10...

Glybenzcyclamide 10238-21-8

Glybenzcyclamide 10238-21-8

Min.Order / FOB Price:Get Latest Price

1 Kilogram

Negotiable

  • Min.Order :1 Kilogram
  • Purity: 99%
  • Payment Terms : L/C,T/T,Other

Keywords

Glybenzcyclamide Glibenclamide 10238-21-8

Quick Details

  • Appearance:White crystalline powder
  • Application:It is used in the treatment of type II diabetes. Mechanism: The drug works by inhibiting ATP-sensitive potassium channels[5] in pancreatic beta cells. This inhibition causes cell membrane depolariza
  • PackAge:25 kgs/ fiber drum or according to customer's demand
  • ProductionCapacity:10|Metric Ton|Month
  • Storage:2 years if properly stored
  • Transportation:Ordinary and safe chemical, suggestion according to IATA DGR for transportation.

Superiority:

Shanghai SOYOUNG onsite assessment conducted by Bureau Veritas commissioned at June 2018. Assessed Supplier of Shanghai SOYOUNG is a faithful and professional supplier of health raw materials in pharmacy, food, cosmetic and other fields for many years, with own laboratories and GMP standard factories.

1. 12 years specialized in health products field.
2. ISO/GMP standard factories and stable supply.
3. Quality first, strictly control before shipments.
4. Custom synthesis by more than 20 professional chemists.
5. Small order,free sample and one step service available.
6. Rapid delivery, 1-6 business days from China warehouse.
7. Support 7 days refund money in case delay shipment.
8. Assessment conducted by Bureau Veritas at 2018.

Details:

【Product name】Glybenzcyclamide
【Synonyms】Glyburide; Glibenclamide; Glyburide
【CAS No.】10238-21-8
【Molecular formula】C23H28ClN3O5S
【Molecular Weight】494.004
【EINECS】233-570-6 
【Assay】99%
【Appearance】white crystalline powder
【Packing】25kg/drum or at customer's request.
【Storage】Tight container, protect from light

 

Function

It is used in the treatment of type II diabetes.

Mechanism:

The drug works by inhibiting ATP-sensitive potassium channels in pancreatic beta cells. This inhibition causes cell membrane depolarization opening voltage-dependent calcium channel. The results in an increase in intracellular calcium in the beta cell and subsequent stimulation of insulin release.

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