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An Entity of Type : http://linked.opendata.cz/ontology/drugbank/Drug, within Data Space : linked.opendata.cz associated with source document(s)

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http://linked.open...gbank/description
  • Glisoxepide is one of the sulphonamide-derived oral antidiabetic drugs. It inhibits the uptake of bile acids into isolated rat hepatocytes. However it inhibits taurocholate uptake only in the absence of sodium ions. Glisoxepide uptake could be further inhibited by blockers of the hepatocellular monocarboxylate transporter, by the loop diuretic bumetanide, by 4,4'-diisothiocyano-2,2'-stilbenedisulfonate (DIDS) and by sulphate. These results are consistent with the transport of glisoxepide via the transport system for the unconjugated bile acid cholate. (PMID:1618280, 9017793) (en)
http://linked.open...gy/drugbank/group
  • approved (en)
http://linked.open...ugbank/indication
  • For the treatment of diabetes mellitus type 2. (en)
sameAs
Title
  • Glisoxepide (en)
adms:identifier
http://linked.open...mechanismOfAction
  • Glisoxepide is a hypoglycemic sulphonylurea agent. The sulphonylureas are a family of drugs based on a common sulphonylurea core. These drugs act via augmentation of secretion of insulin from pancreatic beta-cells. Sulphonylureas may also cause a reduction in serum glucagon and potentiate the action of insulin at the extrapancreatic tissues. Glisoxepide functions as a non-selective K(ATP) channel blocker. It is thought to stimulate insulin secretion by closing the ATP-sensitive K(+) (K(ATP)) channels (Kir6.2/SUR1 complex, KATP channels) in pancreatic beta-cells. This inhibits a tonic, hyperpolarizing efflux of potassium, thus causing the electric potential over the membrane to become more positive. This depolarization opens voltage-gated Ca2+ channels. The rise in intracellular calcium leads to increased fusion of insulin granulae with the cell membrane, and therefore increased secretion of (pro)insulin. (en)
http://linked.open.../drugbank/synonym
  • Glisoxepide (en)
  • BAY-b-4231 (en)
  • FBB-4231 (en)
  • RP-22410 (en)
  • SID144205252 (en)
http://linked.open...ynthesisReference
  • U.S. Patent 3,668,215. (en)
http://linked.open...ugbank/IUPAC-Name
http://linked.open...gy/drugbank/InChI
http://linked.open...Molecular-Formula
http://linked.open.../Molecular-Weight
http://linked.open...noisotopic-Weight
http://linked.open...y/drugbank/SMILES
http://linked.open.../Water-Solubility
http://linked.open...ogy/drugbank/logP
http://linked.open...ogy/drugbank/logS
http://linked.open...l/drug/hasATCCode
http://linked.open...nd-Acceptor-Count
http://linked.open...-Bond-Donor-Count
http://linked.open...drugbank/InChIKey
http://linked.open...urface-Area--PSA-
http://linked.open...nk/Polarizability
http://linked.open...bank/Refractivity
http://linked.open...atable-Bond-Count
http://linked.open...casRegistryNumber
  • 25046-79-1 (en)
http://linked.open...k/Bioavailability
http://linked.open...bank/Ghose-Filter
http://linked.open...nk/MDDR-Like-Rule
http://linked.open...ank/Melting-Point
http://linked.open...k/Number-of-Rings
http://linked.open...siological-Charge
http://linked.open...bank/Rule-of-Five
http://linked.open...tional-IUPAC-Name
http://linked.open...strongest-acidic-
http://linked.open...-strongest-basic-
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