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Identification of the 4-Position of 3-Alkynyl and 3-Heteroaromatic Substituted Pyridine Methanamines as a Key Modification Site Eliciting Increased Potency and Enhanced Selectivity for Cytochrome P-450 2A6 Inhibition

  • Travis T. Denton
  • , Pramod Srivastava
  • , Zuping Xia
  • , Gang Chen
  • , Christy J.W. Watson
  • , Alec Wynd
  • , Philip Lazarus
  • Washington State University Spokane

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Cigarette smoking causes nearly one in every five deaths in the United States. The development of a specific inhibitor of cytochrome P450 2A6 (CYP2A6), the major nicotine-metabolizing enzyme in humans, which could be prescribed for the cessation of cigarette smoking, has been undertaken. To further refine the structure activity relationship of CYP2A6, previously synthesized 3-alkynyl and 3-heteroaromatic substituted pyridine methanamines were used as lead compounds. Isosteric pyridine replacement and appendage of all available positions around the pyridine ring with a methyl group was performed to identify a modification that would increase CYP2A6 inhibition potency, which led to 4g (IC50 = 0.055 mM) as a primary analogue. Potent compounds were evaluated for CYP selectivity, human liver microsomal half-life, and compliance with the rules of five. Top compounds (i.e., 6i, IC50 = 0.017 mM, >120 min half-life) are poised for further development as treatments for smoking and tobacco use cessation.

Original languageEnglish
Pages (from-to)7065-7086
Number of pages22
JournalJournal of Medicinal Chemistry
Volume61
Issue number16
DOIs
StatePublished - Aug 23 2018

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