Glimepiride

 Glimepiride, is a medication used to treat diabetes mellitus type 2.[1][2] It is less preferred than metformin.[1] Use is recommended together with diet and exercise.[1] It is taken by mouth.[1] Glimepiride takes up to three hours for maximum effect and lasts for about a day.[1]

Glimepiride
Glimepiride.svg
Clinical data
Trade namesAmaryl, others
AHFS/Drugs.comMonograph
MedlinePlusa696016
License data
  • EU EMAby INN
  • US DailyMedGlimepiride
Pregnancy
category
  • AU: C
Routes of
administration
By mouth (tablets)
ATC code
  • A10BB12 (WHO)
Legal status
Legal status
  • AU: S4 (Prescription only)
  • US: ℞-only
  • In general: ℞ (Prescription only)
Pharmacokinetic data
Bioavailability100%
Protein binding>99.5%
MetabolismComplete Liver (1st stage through CYP2C9)
Elimination half-life5–8 hours
ExcretionUrine (~60%), feces (~40%)
Identifiers
IUPAC name
  • 3-Ethyl-4-methyl-N-[2-(4-{[(trans-4-methylcyclohexyl)carbamoyl]sulfamoyl}phenyl)ethyl]-2-oxo-2,5-dihydro-1H-pyrrole-1-carboxamide
CAS Number
  • 93479-97-1 check
PubChem CID
  • 3476
IUPHAR/BPS
  • 6820
DrugBank
  • DB00222 ☒
ChemSpider
  • 16740595 check
UNII
  • 6KY687524K
KEGG
  • D00593 check
ChEBI
  • CHEBI:5383 ☒
ChEMBL
  • ChEMBL1481 check
CompTox Dashboard (EPA)
  • DTXSID5040675 Edit this at Wikidata
ECHA InfoCard100.170.771 Edit this at Wikidata
Chemical and physical data
FormulaC24H34N4O5S
Molar mass490.62 g·mol−1
3D model (JSmol)
  • Interactive image
Melting point207 °C (405 °F)
SMILES
  • O=C3C(/CC)=C(/C)CN3C(=O)NCCc1ccc(cc1)S(=O)(=O)NC(=O)N[C@H]2CC[C@H](C)CC2
InChI
  • InChI=1S/C24H34N4O5S/c1-4-21-17(3)15-28(22(21)29)24(31)25-14-13-18-7-11-20(12-8-18)34(32,33)27-23(30)26-19-9-5-16(2)6-10-19/h7-8,11-12,16,19H,4-6,9-10,13-15H2,1-3H3,(H,25,31)(H2,26,27,30)/t16-,19- check
  • Key:WIGIZIANZCJQQY-RUCARUNLSA-N check
 ☒check (what is this?)  (verify)

Common side effects include headache, nausea, and dizziness.[1] Serious side effects may include low blood sugar.[1] Use during pregnancy and breastfeeding is not recommended.[3] It works mainly by increasing the amount of insulin released from the pancreas.[1] It is classified as a second-generation sulfonylurea.[4]

Glimepiride was patented in 1979 and approved for medical use in 1995.[5] It is available as a generic medication.[2] In 2018, it was the 71st most commonly prescribed medication in the United States, with more than 11 million prescriptions.[6][7]

Medical usesEdit

Two generic oral tablets of glimepiride, 2 mg each

Glimepiride is indicated to treat type 2 diabetes mellitus; its mode of action is to increase insulin secretion by the pancreas. However it requires adequate insulin synthesis as prerequisite to treat appropriately. It is not used for type 1 diabetes because in type 1 diabetes the pancreas is not able to produce insulin.[8]

ContraindicationsEdit

Its use is contraindicated in patients with hypersensitivity to glimepiride or other sulfonylureas.

Adverse effectsEdit

Side effects from taking glimepiride include gastrointestinal tract (GI) disturbances, occasional allergic reactions, and rarely blood production disorders including thrombocytopenialeukopenia, and hemolytic anemia. In the initial weeks of treatment, the risk of hypoglycemia may be increased. Alcohol consumption and exposure to sunlight should be restricted because they can worsen side effects.[8]

InteractionsEdit

Nonsteroidal anti-inflammatory drugs (such as salicylates), sulfonamideschloramphenicolcoumadin and probenecid may potentiate the hypoglycemic action of glimepiride. Thiazides, other diuretics, phothiazides, thyroid products, oral contraceptives, and phenytoin tend to produce hyperglycemia.

Mechanism of actionEdit

Like all sulfonylureas, glimepiride acts as an insulin secretagogue.[9] It lowers blood sugar by stimulating the release of insulin by pancreatic beta cells and by inducing increased activity of intracellular insulin receptors.

Not all secondary sulfonylureas have the same risk of hypoglycemia. Glibenclamide (glyburide) is associated with an incidence of hypoglycemia of up to 20–30%, compared to as low as 2% to 4% with glimepiride. Glibenclamide also interferes with the normal homeostatic suppression of insulin secretion in reaction to hypoglycemia, whereas glimepiride does not. Also, glibenclamide diminishes glucagon secretion in reaction to hypoglycemia, whereas glimepiride does not.[10]

PharmacokineticsEdit

Gastrointestinal absorption is complete, with no interference from meals. Significant absorption can occur within one hour, and distribution is throughout the body, 99.5% bound to plasma protein. Metabolism is by oxidative biotransformation, it is hepatic and complete. First, the medication is metabolized to M1 metabolite by CYP2C9. M1 possesses about ​13 of pharmacological activity of glimepiride, yet it is unknown if this results in clinically meaningful effect on blood glucose. M1 is further metabolized to M2 metabolite by cytosolic enzymes. M2 is pharmacologically inactive. Excretion in the urine is about 65%, and the remainder is excreted in the feces.

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