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Hepatitis C virus strategies to evade the specific-T cell response: a possible mission favoring its persistence
Jorge Fabián Quarleri1, José Raúl Oubiña2
1Instituto de Investigaciones Biomédicas en Retrovirus y Sida (INBIRS), Universidad de Buenos Aires-CONICET, Argentina.
Insights
Hepatitis C virus (HCV) employs immune evasion strategies, including mutations and T cell exhaustion, to persist in most infected individuals. Understanding these viral mechanisms is key to controlling chronic HCV infection.
Area of Science:
- Virology
- Immunology
- Hepatology
Background:
- Hepatitis C virus (HCV) infects approximately 200 million people globally, often leading to chronic liver disease.
- Persistent HCV infection results from the failure of host innate and adaptive immune responses.
- HCV infection is linked to severe liver conditions like fibrosis, cirrhosis, and hepatocellular carcinoma.
Purpose of the Study:
- To review the primary T cell immune evasion strategies utilized by Hepatitis C virus.
- To elucidate mechanisms by which HCV achieves viral persistence.
- To understand the interplay between HCV and host immune responses.
Main Methods:
- Review of existing literature on HCV immune evasion.
- Analysis of viral mutations and host immune cell dysfunction.
- Examination of HCV's interference with interferon response pathways.
Main Results:
- HCV utilizes escape mutations to evade T and B cell responses.
- T cell anergy and CD8+ T cell exhaustion contribute to viral persistence.
- HCV manipulates host interferon responses and effector proteins.
Conclusions:
- HCV employs sophisticated T cell immune evasion tactics for long-term persistence.
- Understanding these evasion strategies is crucial for developing effective HCV therapies.
- Targeting viral immune evasion mechanisms may improve control of chronic Hepatitis C.
Abstract:
Hepatitis C virus (HCV) is a small, enveloped RNA virus. The number of HCV-infected individuals worldwide is estimated to be approximately 200 million. The vast majority of HCV infections persist, with up to 80% of all cases leading to chronic hepatitis associated with liver fibrosis, cirrhosis, and hepatocellular carcinoma. The interaction between HCV and the host have a pivotal role in viral fitness, persistence, pathogenicity, and disease progression. The control of HCV infection requires both effective innate and adaptive immune responses. The HCV clearance during acute infection is associated with an early induction of the innate and a delayed initiation of the adaptive immune responses. However, in the vast majority of acute HCV infections, these responses are overcome and the virus persistence almost inexorably occurs. Recently, several host- and virus-related mechanisms responsible for the failure of both the innate and the adaptive immune responses have been recognized. Among the latter, the wide range of escape mutations to evade the specific-T-and B-cell responses as well as the T cell anergy and the CD8+ T cell exhaustion together with the interference with its function after prolonged virus exposure hold a pivotal role. Other HCV strategies include the modification or manipulation of molecules playing key roles in the induction of the interferon response and its induced effector proteins. In this review, we attempt to gain insights on the main T cell immune evasion strategies used by the virus in order to favor its persistence.
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