Synthesis and structure-activity studies of novel orally active non-terpenoic 2,3-oxidosqualene cyclase inhibitors

J Med Chem. 2003 Jul 17;46(15):3354-70. doi: 10.1021/jm021120f.

Abstract

New orally active non-terpenoic inhibitors of human 2,3-oxidosqualene cyclase (hOSC) are reported. The starting point for the optimization process was a set of compounds derived from a fungicide project, which in addition to showing high affinity for OSC from Candida albicans showed also high affinity for human OSC. Common structural elements of these inhibitors are an amine residue and an electrophilic carbonyl C atom embedded in a benzophenone system, which are at a distance of about 10.7 A. Considering that the keto moiety is in a potentially labile position, modifications of the substitution pattern at the benzophenone as well as annelated heteroaryl systems were explored. Our approach combined testing of the compounds first for increased binding affinity and for increased stability in vitro. Most promising compounds were then evaluated for their efficacy in lowering plasma total cholesterol (TC) and plasma low-density lipoprotein cholesterol (LDL-C) in hyperlipidemic hamsters. In this respect, the most promising compounds are the benzophenone derivative 1.fumarate and the benzo[d]isothiazol 24.fumarate, which lowered TC by 40% and 33%, respectively.

MeSH terms

  • Administration, Oral
  • Allylamine / analogs & derivatives
  • Allylamine / chemical synthesis*
  • Allylamine / chemistry
  • Allylamine / pharmacology
  • Animals
  • Anticholesteremic Agents / chemical synthesis*
  • Anticholesteremic Agents / chemistry
  • Anticholesteremic Agents / pharmacology
  • Benzophenones / chemical synthesis*
  • Benzophenones / chemistry
  • Benzophenones / pharmacology
  • Candida albicans / enzymology
  • Cholesterol / blood
  • Cholesterol, LDL / blood
  • Cricetinae
  • Hepatocytes / drug effects
  • Hepatocytes / metabolism
  • Humans
  • In Vitro Techniques
  • Intramolecular Transferases / antagonists & inhibitors*
  • Rats
  • Structure-Activity Relationship
  • Thiazoles / chemical synthesis*
  • Thiazoles / chemistry
  • Thiazoles / pharmacology

Substances

  • Anticholesteremic Agents
  • Benzophenones
  • Cholesterol, LDL
  • Thiazoles
  • allyl(6-(3-(4-bromophenyl)benzo(d)isothiazol-6-yloxy)hexyl)methylamine
  • Ro 48-8071
  • Allylamine
  • Cholesterol
  • Intramolecular Transferases
  • cycloartenol synthase