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A Competent Hepatocyte Model Examining Hepatitis B Virus Entry through Sodium Taurocholate Cotransporting Polypeptide as a Therapeutic Target
Published on: May 10, 2022
Targeting Viral Entry for Treatment of Hepatitis B and C Virus Infections
Che C Colpitts1,2, Eloi R Verrier1,2, Thomas F Baumert1,2,3
1Inserm, U1110, Institut de Recherche sur les Maladies Virales et Hépatiques, 67000 Strasbourg, France.
Insights
Hepatitis B and C viruses cause millions of chronic infections and liver cancer. Novel antiviral strategies targeting viral entry are crucial for preventing and curing these widespread diseases.
Area of Science:
- Hepatology and Viral Immunology
- Drug Discovery and Development
Background:
- Hepatitis B virus (HBV) and hepatitis C virus (HCV) infections affect millions globally, leading to liver cirrhosis and cancer.
- Current HBV treatments inhibit replication but rarely cure, while HCV treatments face access challenges.
Purpose of the Study:
- To review current knowledge of HBV and HCV entry mechanisms.
- To identify novel antiviral targets and compounds for HBV and HCV infections.
Main Methods:
- Summarizing research on viral entry factors and inhibitors for HBV and HCV.
- Analyzing preclinical and clinical data for emerging antiviral therapies.
Main Results:
- HBV entry is mediated by NTCP, with inhibitors like Myrcludex B identified.
- HCV entry involves multiple viral and cellular factors (e.g., E1, E2, CD81, EGFR), with several targeted by clinical-stage compounds.
- Preclinical studies show promise for various entry inhibitors against both viruses.
Conclusions:
- Viral entry is a viable target for developing new antivirals against HBV and HCV.
- Entry inhibitors represent a promising therapeutic strategy for preventing and treating chronic hepatitis infections.
Abstract:
Hepatitis B virus (HBV) and hepatitis C virus (HCV) infections remain major health problems worldwide, with 400-500 million chronically infected people worldwide. Chronic infection results in liver cirrhosis and hepatocellular carcinoma, the second leading cause of cancer death. Current treatments for HBV limit viral replication without efficiently curing infection. HCV treatment has markedly progressed with the licensing of direct-acting antivirals (DAAs) for HCV cure, yet limited access for the majority of patients is a major challenge. Preventative and curative treatment strategies, aimed at novel targets, are needed for both viruses. Viral entry represents one such target, although detailed knowledge of the entry mechanisms is a prerequisite. For HBV, the recent discovery of the NTCP cell entry factor enabled the establishment of an HBV cell culture model and showed that cyclosporin A and Myrcludex B are NTCP-targeting entry inhibitors. Advances in the understanding of HCV entry revealed it to be a complex process involving many factors, offering several antiviral targets. These include viral envelope proteins E1 and E2, virion-associated lipoprotein ApoE, and cellular factors CD81, SRBI, EGFR, claudin-1, occludin, and the cholesterol transporter NPC1L1. Small molecules targeting SR-BI, EGFR, and NPC1L1 have entered clinical trials, whereas other viral- and host-targeted small molecules, peptides, and antibodies show promise in preclinical models. This review summarizes the current understanding of HBV and HCV entry and describes novel antiviral targets and compounds in different stages of clinical development. Overall, proof-of-concept studies indicate that entry inhibitors are a promising class of antivirals to prevent and treat HBV and HCV infections.
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