Record Information
Version1.0
Creation Date2019-07-14 16:37:05 UTC
Last Updated2019-10-01 21:41:32 UTC
CypComp IDCC02146
Compound Information
NamePerhexiline
Structure ImageCyxknkqemfbler gosisdbhsa n
InChIKeyCYXKNKQEMFBLER-GOSISDBHSA-N
PubChem ID38988177
CypCompound Information
SetCypBoM Training Set
Bonds of Metabolism (BoMs)
CYP1A2CYP2A6CYP2B6CYP2C8CYP2C9CYP2C19CYP2D6CYP2E1CYP3A4
  • Not Available
  • Not Available
  • <15,H;Hydroxylation;R1>
  • <16,H;hydroxylation;R2>
  • Not Available
  • Not Available
  • Not Available
  • <15,H;Hydroxylation;R1>
  • <16,H;hydroxylation;R2>
  • Not Available
  • <15,H;Hydroxylation;R1>
  • <16,H;hydroxylation;R2>
References
  1. Davies BJ, Coller JK, Somogyi AA, Milne RW, Sallustio BC: CYP2B6, CYP2D6, and CYP3A4 catalyze the primary oxidative metabolism of perhexiline enantiomers by human liver microsomes. Drug Metab Dispos. 2007 Jan;35(1):128-38. doi: 10.1124/dmd.106.012252. Epub 2006 Oct 18. [PubMed:17050648 ]
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