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Does antiviral therapy for chronic hepatitis B reduce the risk of hepatocellular carcinoma?
Mahmoud Abu-Amara1, Jordan J Feld
1Department of Hepatology, Toronto Western Hospital Liver Centre, McLaughlin Rotman Centre for Global Health, University of Toronto, Toronto, Canada.
Insights
Antiviral therapies for chronic hepatitis B (CHB) can reduce the risk of liver cancer (HCC), particularly in patients with cirrhosis. However, these treatments do not eliminate the persistent viral DNA, necessitating further research.
Area of Science:
- Hepatology
- Virology
- Oncology
Background:
- Chronic hepatitis B infection (CHB) poses significant risks, including liver cirrhosis, failure, and hepatocellular carcinoma (HCC).
- Hepatitis B virus (HBV) lifecycle involves persistent covalently closed circular DNA (cccDNA), a barrier to complete eradication.
- Current treatments, interferon (IFN) and nucleos(t)ide analogues, inhibit viral replication or boost immunity but do not clear cccDNA.
Purpose of the Study:
- To review the HBV lifecycle and its carcinogenic mechanisms.
- To evaluate the efficacy of antiviral therapies in reducing HCC risk in CHB patients.
- To analyze the impact of treatment on cccDNA persistence and HCC development.
Main Methods:
- Literature review of HBV lifecycle and carcinogenicity.
- Analysis of studies on antiviral therapy (IFN, nucleos(t)ide analogues) for CHB.
- Examination of data on HCC incidence in treated CHB patients, stratified by fibrosis and cirrhosis status.
Main Results:
- Interferon (IFN) may reduce HCC risk in cirrhotic patients with sustained response.
- Oral antiviral agents suppress HBV DNA replication, slow fibrosis, and appear to reduce HCC risk in patients with advanced fibrosis or cirrhosis.
- Data on treatment efficacy for HCC prevention are heterogeneous, and mechanisms remain unclear.
Conclusions:
- Antiviral therapy can lower HCC risk in CHB, especially in advanced liver disease.
- Persistent cccDNA remains a challenge for curative treatment.
- Further research is needed to clarify treatment mechanisms and optimize HCC prevention strategies.
Abstract:
Chronic hepatitis B infection (CHB) is common and can lead to serious consequences including liver cirrhosis, failure, and hepatocellular carcinoma (HCC). The hepatitis B virus (HBV) has a simple genome, but a complex lifecycle that includes the production of covalently closed circular DNA (cccDNA). Currently approved antiviral treatments for CHB include interferon (IFN) and nucleos(t)ide analogues. These drugs work either by stimulating the immune system to eliminate virus-infected cells or to inhibit viral replication, respectively. The drugs do not affect the cccDNA pool in the nucleus; therefore, this molecule represents a persistent source of recurrent infection that is difficult to eradicate. With longer-term follow-up of patients treated with antiviral therapy, investigators have looked at whether treatment can prevent the development of HCC. Unfortunately, the data are fairly heterogeneous in terms of both quality and conclusions. IFN appears to reduce the risk of HCC, but the benefit seems to be restricted to cirrhotic patients who have a lasting response to therapy. Oral agents successfully suppress HBV DNA replication and slow or even reverse hepatic fibrosis. Studies suggest that long-term therapy reduces the risk of HCC in patients with active disease and again primarily in those with advanced fibrosis or cirrhosis. The mechanism by which any of the therapies reduce the risk of HCC is not clear. The authors review the lifecycle of HBV and mechanisms by which the virus may be carcinogenic followed by a review of the literature on the efficacy of therapy in reducing the risk of HCC.
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