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Published on: October 21, 2017
Chronic hepatitis C infection-induced liver fibrogenesis is associated with M2 macrophage activation
Moses T Bility1, Kouki Nio2,3, Feng Li2,3
1Department of Infectious Diseases and Microbiology, Graduate School of Public Health, University of Pittsburgh, Pittsburgh, PA, USA.
Abstract:
The immuno-pathogenic mechanisms of chronic hepatitis C virus (HCV) infection remain to be elucidated and pose a major hurdle in treating or preventing chronic HCV-induced advanced liver diseases such as cirrhosis. Macrophages are a major component of the inflammatory milieu in chronic HCV-induced liver disease, and are generally derived from circulating inflammatory monocytes; however very little is known about their role in liver diseases. To investigate the activation and role of macrophages in chronic HCV-induced liver fibrosis, we utilized a recently developed humanized mouse model with autologous human immune and liver cells, human liver and blood samples and cell culture models of monocyte/macrophage and/or hepatic stellate cell activation. We showed that M2 macrophage activation was associated with liver fibrosis during chronic HCV infection in the livers of both humanized mice and patients, and direct-acting antiviral therapy attenuated M2 macrophage activation and associated liver fibrosis. We demonstrated that supernatant from HCV-infected liver cells activated human monocytes/macrophages with M2-like phenotypes. Importantly, HCV-activated monocytes/macrophages promoted hepatic stellate cell activation. These results suggest a critical role for M2 macrophage induction in chronic HCV-associated immune dysregulation and liver fibrosis.
Insights
Chronic hepatitis C virus (HCV) infection involves M2 macrophage activation, driving liver fibrosis. Antiviral therapy reduced this activation and fibrosis, highlighting macrophages
Area of Science:
- Immunology
- Hepatology
- Virology
Background:
- Chronic hepatitis C virus (HCV) infection mechanisms driving liver disease remain unclear.
- Macrophages, derived from monocytes, are key inflammatory cells in liver disease, but their specific roles are poorly understood.
- Understanding macrophage activation is crucial for treating HCV-induced liver fibrosis and cirrhosis.
Purpose of the Study:
- To investigate the activation and role of macrophages in chronic HCV-induced liver fibrosis.
- To elucidate the contribution of M2 macrophages to liver fibrosis progression in HCV infection.
Main Methods:
- Utilized a humanized mouse model with human immune and liver cells.
- Analyzed human liver and blood samples.
- Employed cell culture models of monocyte/macrophage and hepatic stellate cell activation.
Main Results:
- M2 macrophage activation correlated with liver fibrosis in both humanized mice and HCV patients.
- Direct-acting antiviral therapy decreased M2 macrophage activation and liver fibrosis.
- HCV-infected liver cell supernatant induced M2-like macrophage activation.
- Activated macrophages promoted hepatic stellate cell activation, a key fibrotic process.
Conclusions:
- M2 macrophage induction plays a critical role in chronic HCV-associated immune dysregulation and liver fibrosis.
- Targeting M2 macrophages may offer a therapeutic strategy for HCV-induced liver fibrosis.
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