Recent developments with advancing gene therapy to treat chronic infection with hepatitis B virus.

Curr Opin HIV AIDS

Wits/SAMRC Antiviral Gene Therapy Research Unit, School of Pathology, Health Sciences Faculty, University of the Witwatersrand, Johannesburg, South Africa.

Published: May 2020

AI Article Synopsis

  • Current vaccines and therapies for hepatitis B struggle to eliminate chronic infections, making improved treatments crucial due to high mortality from complications like cirrhosis and liver cancer.
  • Recent advances in gene therapy, specifically targeting the viral DNA (cccDNA), show promise in inhibiting HBV replication through silencing and editing techniques.
  • While clinical trials for synthetic RNA silencing are underway, gene editing methods like CRISPR still require further evaluation, highlighting the importance of effective delivery and precision in therapeutic strategies for HBV.

Article Abstract

Purpose Of Review: The available vaccine and therapies against hepatitis B virus (HBV) rarely eliminate chronic infection with the virus. High mortality resulting from complicating cirrhosis and hepatocellular carcinoma makes improving anti-HBV therapy an important priority. Recent advances with using gene therapy to counter HBV have potential and are the focus of this review.

Recent Findings: The stable replication-competent HBV intermediate comprising covalently closed circular DNA (cccDNA) is the template for expression of all viral genes. Inactivating cccDNA has thus been a focus of research aimed at achieving cure for HBV infection. Many studies have reported profound inhibition of replication of the virus using silencing and editing techniques. Therapeutic gene silencing with synthetic short interfering RNA is now in clinical trials. Ability to mutate and permanently inactivate cccDNA with engineered gene editors, such as those derived from CRISPR/Cas or TALENs, is particularly appealing but has not yet reached clinical evaluation.

Summary: Gene silencing and gene editing potentially provide the means to cure HBV infection. However, achieving efficient delivery of therapeutic sequences, ensuring their specificity of action and progress with other antiviral strategies are likely to determine utility of gene therapy for chronic HBV infection.

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Source
http://dx.doi.org/10.1097/COH.0000000000000623DOI Listing

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