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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
Cracking the code of HBV persistence: cutting-edge approaches to targeting cccDNA in chronic hepatitis B with or
Umar Saeed1,2, Zahra Zahid Piracha3,4,5,6, Mahmood Khan7
1Operational Research Center in Healthcare, Near East University, Nicosia, Türkiye.
Insights
Chronic Hepatitis B Virus (HBV) infection, driven by viral DNA reservoirs, necessitates novel therapies. This review explores advanced strategies like epigenetic modulation and genome editing to target HBV covalently closed circular DNA (cccDNA) for potential cures.
Area of Science:
- Hepatology and Virology
- Molecular Biology
- Genetics
Background:
- Chronic Hepatitis B Virus (HBV) infection is a major global health issue, leading to severe liver diseases like hepatocellular carcinoma (HCC) and pyogenic liver abscesses (PLA).
- The persistence of HBV is primarily due to covalently closed circular DNA (cccDNA), a viral reservoir that remains active despite current antiviral treatments.
- Managing HBV, especially with co-morbidities such as HCC and PLA, presents significant clinical challenges requiring integrated treatment approaches.
Purpose of the Study:
- To review the molecular mechanisms of HBV cccDNA formation, maintenance, and clearance.
- To highlight innovative therapeutic strategies targeting HBV cccDNA.
- To discuss the clinical management of HBV, including co-infections and co-morbidities, and the role of precision medicine.
Main Methods:
- Review of molecular mechanisms governing cccDNA.
- Exploration of cutting-edge therapeutic strategies including epigenetic modulation, RNA interference (RNAi), and CRISPR/Cas genome editing.
- Analysis of emerging antiviral therapies, immunotherapies, and their clinical application in HBV management.
Main Results:
- Identification of molecular pathways for cccDNA formation, maintenance, and clearance.
- Evaluation of novel therapeutic targets and strategies to disrupt cccDNA.
- Assessment of the efficacy of advanced treatments like nucleos(t)ide analogs, interferon, and genomic interventions.
Conclusions:
- Targeting HBV cccDNA is crucial for achieving functional cures.
- Innovative therapies, including genomic interventions and immunotherapies, offer new hope for HBV treatment.
- Precision medicine and interdisciplinary collaboration are essential for advancing HBV management and improving patient outcomes.
Abstract:
Chronic Hepatitis B Virus (HBV) infection remains a formidable global health challenge, driving severe liver complications such as hepatocellular carcinoma (HCC) and pyogenic liver abscesses (PLA). At the core of HBV persistence lies covalently closed circular DNA (cccDNA), a viral reservoir that fuels ongoing infection despite antiviral treatments. This review highlights molecular mechanisms governing cccDNA formation, maintenance, and clearance, spotlighting innovative therapeutic strategies to disrupt this key viral element. We explore cutting-edge approaches, including epigenetic modulation to silence cccDNA, RNA interference (RNAi) for viral RNA degradation, and CRISPR/Cas genome editing to excise cccDNA directly. Additionally, emerging antiviral therapies and immunotherapies, such as therapeutic vaccines and immune checkpoint inhibitors, offer new avenues for enhanced treatment efficacy. Special attention is given to the clinical complexities of managing HBV in patients with co-morbid conditions like HCC and PLA, emphasizing the necessity of a multidisciplinary approach. The interplay between antibacterial and antiviral therapies in PLA-associated HBV cases is critically examined to prevent treatment antagonism, ensuring optimal patient outcomes. Advanced therapeutic strategies, including nucleos(t)ide analogs, interferon therapy, and novel genomic interventions, are explored in both isolated HBV infection and PLA co-infections. Personalized regimens remain pivotal in enhancing therapeutic efficacy and long-term disease control. Current review advocates for a shift toward precision medicine, highlighting the critical need for interdisciplinary collaboration to bridge molecular discoveries with clinical innovations. Ultimately, these advancements promise to revolutionize the management of chronic HBV, paving the way for potential cures and improved patient outcomes.
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