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P2-Quinazolinones and Bis-Macrocycles as New Templates for Next-Generation Hepatitis C Virus NS3/4a Protease Inhibitors: Discovery of MK-2748 and MK-6325

Authors :
Anne Taylor
Charles J. Mcintyre
Christine Fandozzi
Carolyn McHale
Jillian DiMuzio
Steven Harper
Steven S. Carroll
Vincenzo Summa
Jeff Fritzen
Aileen Soriano
Marco Ferrara
Joseph J. Romano
David B. Olsen
Kevin Nguyen
Steven W. Ludmerer
Nigel J. Liverton
Robert Chase
Stuart Black
John W. Butcher
Kevin F. Gilbert
Qian Huang
Michael T. Rudd
Adam Gates
Paul J. Coleman
Marcello DiFilippo
Mark Stahlhut
Kimberly J. Bush
John Swestock
Nicole Trainor
Christine Burlein
Stephanie McClain
John A. McCauley
M. Katharine Holloway
Donald J. Graham
Rudd, Mt
Butcher, Jw
Nguyen, Kt
Mcintyre, Cj
Romano, Jj
Gilbert, Kf
Bush, Kj
Liverton, Nj
Holloway, Mk
Harper, S
Ferrara, M
Difilippo, M
Summa, V
Swestock, J
Fritzen, J
Carroll, S
Burlein, C
Dimuzio, Jm
Gates, A
Graham
Qian Huang, Dj
Mcclain, S
Mchale, C
Stahlhut, Mw
Black, S
Chase, R
Soriano, A
Fandozzi, C
Taylor, A
Trainor, N
Olsen, Db
Coleman, Pj
Ludmerer, Sw
Mccauley, Ja
Source :
ChemMedChem. 10:727-735
Publication Year :
2015
Publisher :
Wiley, 2015.

Abstract

With the goal of identifying inhibitors of hepatitis C virus (HCV) NS3/4a protease that are potent against a wide range of genotypes and clinically relevant mutant viruses, several subseries of macrocycles were investigated based on observations made during the discovery of MK-5172. Quinazolinone-containing macrocycles were identified as promising leads, and optimization for superior cross-genotype and mutant enzyme potency as well as rat liver and plasma concentrations following oral dosing, led to the development of MK-2748. Additional investigation of a series of bis-macrocycles containing a fused 18- and 15-membered ring system were also optimized for the same properties, leading to the discovery of MK-6325. Both compounds display the broad genotype and mutant potency necessary for clinical development as next-generation HCV NS3/4a protease inhibitors.

Details

ISSN :
18607179
Volume :
10
Database :
OpenAIRE
Journal :
ChemMedChem
Accession number :
edsair.doi.dedup.....e9e23e37fb44618a041512672388b2e3
Full Text :
https://doi.org/10.1002/cmdc.201402558