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Fluoxazolevir inhibits hepatitis C virus infection in humanized chimeric mice by blocking viral membrane fusion

Authors :
Kazuaki Chayama
Zongyi Hu
Amy Wang
Derek Le
Christopher D. Ma
Daniel C. Talley
Takuro Uchida
Noel Southall
Kelin Li
Adam Rolt
Mitsutaka Osawa
Xin Hu
Seung Bum Park
Tsanyang Jake Liang
Andrés E. Dulcey
Parker H. Irvin
Juan J. Marugan
Yuji Teraoka
Xin Xu
Kevin J. Frankowski
Nishanth Chalasani
Michio Imamura
Source :
Nature microbiology
Publication Year :
2020
Publisher :
Springer Science and Business Media LLC, 2020.

Abstract

Fluoxazolevir is an aryloxazole-based entry inhibitor of hepatitis C virus (HCV). We show that fluoxazolevir inhibits fusion of HCV with hepatic cells by binding HCV envelope protein 1 to prevent fusion. Nine of ten fluoxazolevir resistance-associated substitutions are in envelope protein 1, and four are in a putative fusion peptide. Pharmacokinetic studies in mice, rats and dogs revealed that fluoxazolevir localizes to the liver. A 4-week intraperitoneal regimen of fluoxazolevir in humanized chimeric mice infected with HCV genotypes 1b, 2a or 3 resulted in a 2-log reduction in viraemia, without evidence of drug resistance. In comparison, daclatasvir, an approved HCV drug, suppressed more than 3 log of viraemia but is associated with the emergence of resistance-associated substitutions in mice. Combination therapy using fluoxazolevir and daclatasvir cleared HCV genotypes 1b and 3 in mice. Fluoxazolevir combined with glecaprevir and pibrentasvir was also effective in clearing multidrug-resistant HCV replication in mice. Fluoxazolevir may be promising as the next generation of combination drug cocktails for HCV treatment. Preclinical studies show that fluoxazolevir, which inhibits the fusion of hepatitis C virus (HCV) with hepatic cells by binding viral envelope protein 1, could be useful in drug cocktails to treat HCV.

Details

ISSN :
20585276
Volume :
5
Database :
OpenAIRE
Journal :
Nature Microbiology
Accession number :
edsair.doi.dedup.....3599048514549248633a057456d799d9
Full Text :
https://doi.org/10.1038/s41564-020-0781-2