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An in vivo duck hepatitis B virus model recapitulates key aspects of nucleic acid polymer treatment outcomes in chronic hepatitis B patients.

Authors :
Debing, Yannick
Vanrusselt, Hannah
Degrauwe, Lars
Silva de Oliveira, Daniel Apolônio
Kariuki, Christopher Kinyanjui
Ebwanga, Ebanja Joseph
Bashir, Shahbaz
Merckx, Wouter
Thatikonda, Santhosh Kumar
Rajwanshi, Vivek
Gohil, Vikrant
Hong, Jin
Kum, Dieudonné Buh
Acosta Sanchez, Abel
Chanda, Sushmita
Blatt, Lawrence M.
Jekle, Andreas
Symons, Julian A.
Smith, David B.
Raboisson, Pierre
Source :
Antiviral Research. Apr2024, Vol. 224, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Nucleic acid polymers (NAPs) are an attractive treatment modality for chronic hepatitis B (CHB), with REP2139 and REP2165 having shown efficacy in CHB patients. A subset of patients achieve functional cure, whereas the others exhibit a moderate response or are non-responders. NAP efficacy has been difficult to recapitulate in animal models, with the duck hepatitis B virus (DHBV) model showing some promise but remaining underexplored for NAP efficacy testing. Here we report on an optimized in vivo DHBV duck model and explore several characteristics of NAP treatment. REP2139 was efficacious in reducing DHBV DNA and DHBsAg levels in approximately half of the treated ducks, whether administered intraperitoneally or subcutaneously. Intrahepatic or serum NAP concentrations did not correlate with efficacy, nor did the appearance of anti-DHBsAg antibodies. Furthermore, NAP efficacy was only observed in experimentally infected ducks, not in endogenously infected ducks (vertical transmission). REP2139 add-on to entecavir treatment induced a deeper and more sustained virological response compared to entecavir monotherapy. Destabilized REP2165 showed a different activity profile with a more homogenous antiviral response followed by a faster rebound. In conclusion, subcutaneous administration of NAPs in the DHBV duck model provides a useful tool for in vivo evaluation of NAPs. It recapitulates many aspects of this class of compound's efficacy in CHB patients, most notably the clear division between responders and non-responders. • We report on an optimized in vivo duck hepatitis B virus model. • This model recapitulates the observed clinical response to nucleic acid polymer REP2139. • REP2139 was only efficacious in experimentally infected ducks, not in endogenously infected ducks. • Destabilized REP2165 showed a more homogenous antiviral response followed by a faster rebound. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01663542
Volume :
224
Database :
Academic Search Index
Journal :
Antiviral Research
Publication Type :
Academic Journal
Accession number :
175985081
Full Text :
https://doi.org/10.1016/j.antiviral.2024.105835