Strain-specific responsiveness of hepatitis D virus to interferon-alpha treatment.

JHEP reports : innovation in hepatology(2023)

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摘要
Background & Aims:Pegylated interferon alpha (pegIFNα) is commonly used for the treatment of people infected with HDV. However, its mode of action in HDV-infected cells remains elusive and only a minority of people respond to pegIFNα therapy. Herein, we aimed to assess the responsiveness of three different cloned HDV strains to pegIFNα. We used a previously cloned HDV genotype 1 strain (dubbed HDV-1a) that appeared insensitive to interferon-α in vitro, a new HDV strain (HDV-1p) we isolated from an individual achieving later sustained response to IFNα therapy, and one phylogenetically distant genotype 3 strain (HDV-3). Methods:PegIFNα was administered to human liver chimeric mice infected with HBV and the different HDV strains or to HBV/HDV infected human hepatocytes isolated from chimeric mice. Virological parameters and host responses were analysed by qPCR, sequencing, immunoblotting, RNA in situ hybridisation and immunofluorescence staining. Results:PegIFNα treatment efficiently reduced HDV RNA viraemia (∼2-log) and intrahepatic HDV markers both in mice infected with HBV/HDV-1p and HBV/HDV-3. In contrast, HDV parameters remained unaffected by pegIFNα treatment both in mice (up to 9 weeks) and in isolated cells infected with HBV/HDV-1a. Notably, HBV viraemia was efficiently lowered (∼2-log) and human interferon-stimulated genes similarly induced in all three HBV/HDV-infected mouse groups receiving pegIFNα. Genome sequencing revealed highly conserved ribozyme and L-hepatitis D antigen post-translational modification sites among all three isolates. Conclusions:Our comparative study indicates the ability of pegIFNα to lower HDV loads in stably infected human hepatocytes in vivo and the existence of complex virus-specific determinants of IFNα responsiveness. Impact and implications:Understanding factors counteracting HDV infections is paramount to develop curative therapies. We compared the responsiveness of three different cloned HDV strains to pegylated interferon alpha in chronically infected mice. The different responsiveness of these HDV isolates to treatment highlights a previously underestimated heterogeneity among HDV strains.
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ADAR, adenosine deaminase,ADF, adefovir,AG, antigenomic,Actb, actin beta,Antiviral,BSA, bovine serum albumin,CHD, chronic hepatitis D,CK18, cytokeratin 18,CXCL10, C-X-C motif chemokine ligand 10,Eef2, eukaryotic elongation factor,FCS, foetal calf serum,GAPDH, glyceraldehyde-3-phosphate dehydrogenase,Genotype,HBsAg, hepatitis B virus surface antigen,HDAg, hepatitis delta antigen (S, small, L, large),HDV,HLA, human leucocyte antigen,HSA, uman serum albumin,Human liver chimeric mice,IFNα, interferon α,ISGs, interferon stimulated genes,LAM, lamivudine,LLoD, lower limit of detection,MDA5, melanoma differentiation-associated protein 5,MOI, multiplicity of infection,Mavs, mitochondrial antiviral-signalling protein,MoA, mode of action,MxA, myxovirus resistance gene A,NTCP, sodium (Na+) taurocholate co-transporting polypeptide,NUCs, nucleos(t)ide analogues,OAS1, 2′-5′-oligoadenylatsynthetase 1,PEG, polyethylene glycol,PHHs, primary human hepatocytes,RNP, ribonucleoprotein,Resistance,Rig-I, retinoic acid-inducible gene I,SCID, severe combined immunodeficiency,STAT1, signal transducers and activators of transcription 1,TGFβ, transforming growth factor-β,USG, uPA/SCID/beige/IL2RG-/-,casp, caspase,hAAT, human alpha antitrypsin,pegIFNα, pegylated interferon alpha,pgRNA, pregenomic RNA,qPCR, quantitative real time polymerase chain reaction,uPA, urokinase plasminogen activator
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