Efficacy of hepatitis B virus ribonuclease H inhibitors, a new class of replication antagonists, in FRG human liver chimeric mice

Chronic hepatitis B virus infection cannot be cured by current therapies, so new treatments are urgently needed. We recently identified novel inhibitors of the hepatitis B virus ribonuclease H that suppress viral replication in cell culture. Here, we employed immunodeficient FRG KO mice whose livers...

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Veröffentlicht in:Antiviral research 2018-01, Vol.149, p.41-47
Hauptverfasser: Long, Kelly R., Lomonosova, Elena, Li, Qilan, Ponzar, Nathan L., Villa, Juan A., Touchette, Erin, Rapp, Stephen, Liley, R. Matt, Murelli, Ryan P., Grigoryan, Alexandre, Buller, R. Mark, Wilson, Lisa, Bial, John, Sagartz, John E., Tavis, John E.
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Sprache:eng
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Zusammenfassung:Chronic hepatitis B virus infection cannot be cured by current therapies, so new treatments are urgently needed. We recently identified novel inhibitors of the hepatitis B virus ribonuclease H that suppress viral replication in cell culture. Here, we employed immunodeficient FRG KO mice whose livers had been engrafted with primary human hepatocytes to ask whether ribonuclease H inhibitors can suppress hepatitis B virus replication in vivo. Humanized FRG KO mice infected with hepatitis B virus were treated for two weeks with the ribonuclease H inhibitors #110, an α-hydroxytropolone, and #208, an N-hydroxypyridinedione. Hepatitis B virus viral titers and S and e antigen plasma levels were measured. Treatment with #110 and #208 caused significant reductions in plasma viremia without affecting hepatitis B virus S or e antigen levels, and viral titers rebounded following treatment cessation. This is the expected pattern for inhibitors of viral DNA synthesis. Compound #208 suppressed viral titers of both hepatitis B virus genotype A and C isolates. These data indicate that Hepatitis B virus replication can be suppressed during infection in an animal by inhibiting the viral ribonuclease H, validating the ribonuclease H as a novel target for antiviral drug development. •Efficacy of RNaseH inhibitors against in HBV replication in infected animals was demonstrated for the first time.•RNaseH inhibitors from two different chemical classes reduced viremia without affecting HBV S or e antigen levels.•Compound #208 (an N-hydroxypyridinedione) suppressed viral titers of both HBV genotype A and C isolates.
ISSN:0166-3542
1872-9096
DOI:10.1016/j.antiviral.2017.11.008