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Design and preparation of a potent series of hydroxyethylamine containing β-secretase inhibitors that demonstrate robust reduction of central β-amyloid

  • Matthew M. Weiss
  • , Toni Williamson
  • , Safura Babu-Khan
  • , Michael D. Bartberger
  • , James Brown
  • , Kui Chen
  • , Yuan Cheng
  • , Martin Citron
  • , Michael D. Croghan
  • , Thomas A. Dineen
  • , Joel Esmay
  • , Russell F. Graceffa
  • , Scott S. Harried
  • , Dean Hickman
  • , Stephen A. Hitchcock
  • , Daniel B. Horne
  • , Hongbing Huang
  • , Ronke Imbeah-Ampiah
  • , Ted Judd
  • , Matthew R. Kaller
  • Charles R. Kreiman, Daniel S. La, Vivian Li, Patricia Lopez, Steven Louie, Holger Monenschein, Thomas T. Nguyen, Lewis D. Pennington, Claire Rattan, Tisha San Miguel, E. Allen Sickmier, Robert C. Wahl, Paul H. Wen, Stephen Wood, Qiufen Xue, Bryant H. Yang, Vinod F. Patel, Wenge Zhong

Research output: Contribution to journalArticlepeer-review

61 Scopus citations

Abstract

A series of potent hydroxyethyl amine (HEA) derived inhibitors of β-site APP cleaving enzyme (BACE1) was optimized to address suboptimal pharmacokinetics and poor CNS partitioning. This work identified a series of benzodioxolane analogues that possessed improved metabolic stability and increased oral bioavailability. Subsequent efforts focused on improving CNS exposure by limiting susceptibility to Pgp-mediated efflux and identified an inhibitor which demonstrated robust and sustained reduction of CNS β-amyloid (Aβ) in Sprague-Dawley rats following oral administration.

Original languageEnglish
Pages (from-to)9009-9024
Number of pages16
JournalJournal of Medicinal Chemistry
Volume55
Issue number21
DOIs
StatePublished - 8 Nov 2012
Externally publishedYes

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