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Updated: Mar 9, 2026

Seven Steps to Stellate Cells
Published on: May 10, 2011
Exosome-Mediated Intercellular Communication between Hepatitis C Virus-Infected Hepatocytes and Hepatic Stellate
Pradip B Devhare1, Reina Sasaki1, Shubham Shrivastava1
1Department of Pathology, Saint Louis University, Saint Louis, Missouri, USA.
Insights
Hepatitis C virus (HCV) infection activates hepatic stellate cells (HSC) through exosomes carrying miR-19a. This intercellular communication promotes liver fibrosis by modulating the SOCS-STAT3 pathway.
Area of Science:
- Hepatology
- Molecular Biology
- Cell Biology
Background:
- Liver fibrosis is a significant complication of chronic hepatitis C virus (HCV) infection.
- Hepatic stellate cells (HSC) are key regulators of liver fibrogenesis, but the mechanisms of their activation by HCV are not fully understood.
- HCV does not replicate in HSC, suggesting indirect activation mechanisms.
Purpose of the Study:
- To investigate the role of exosomes secreted from HCV-infected hepatocytes in activating HSC.
- To elucidate the molecular mechanisms by which HCV-infected hepatocytes communicate with HSC to promote liver fibrosis.
- To identify specific molecules within exosomes that mediate HSC activation.
Main Methods:
- Primary or immortalized human hepatic stellate (LX2) cells were treated with exosomes from HCV-infected hepatocytes (HCV-exo).
- Expression of fibrosis-related genes and profibrotic markers in HSC was analyzed.
- The presence and function of microRNA-19a (miR-19a) in exosomes and its targets (SOCS3) in HSC were investigated.
- The STAT3-mediated transforming growth factor β (TGF-β) signaling pathway was examined.
- miR-19a levels in exosomes and sera from HCV patients were compared to controls.
Main Results:
- HCV-exo were internalized by HSC and increased the expression of profibrotic markers.
- HCV-exo were found to carry miR-19a, which targets SOCS3 in HSC.
- Modulation of SOCS3 by miR-19a activated the STAT3-mediated TGF-β signaling pathway, enhancing fibrosis marker genes.
- Elevated miR-19a levels were observed in exosomes from HCV-infected hepatocytes and in the sera of chronic HCV patients with fibrosis.
Conclusions:
- Exosomes secreted by HCV-infected hepatocytes activate HSC through the transfer of miR-19a.
- Exosomal miR-19a modulates the SOCS-STAT3 axis in HSC, promoting liver fibrosis.
- This study reveals a novel mechanism of exosome-mediated intercellular communication in HCV-associated liver fibrosis pathogenesis.
Abstract:
Fibrogenic pathways in the liver are principally regulated by activation of hepatic stellate cells (HSC). Fibrosis is associated with chronic hepatitis C virus (HCV) infection, although the mechanism is poorly understood. HSC comprise the major population of nonparenchymal cells in the liver. Since HCV does not replicate in HSC, we hypothesized that exosomes secreted from HCV-infected hepatocytes activate HSC. Primary or immortalized human hepatic stellate (LX2) cells were exposed to exosomes derived from HCV-infected hepatocytes (HCV-exo), and the expression of fibrosis-related genes was examined. Our results demonstrated that HCV-exo internalized to HSC and increased the expression of profibrotic markers. Further analysis suggested that HCV-exo carry miR-19a and target SOCS3 in HSC, which in turn activates the STAT3-mediated transforming growth factor β (TGF-β) signaling pathway and enhances fibrosis marker genes. The higher expression of miR-19a in exosomes was also observed from HCV-infected hepatocytes and in sera of chronic HCV patients with fibrosis compared to healthy volunteers and non-HCV-related liver disease patients with fibrosis. Together, our results demonstrated that miR-19a carried through the exosomes from HCV-infected hepatocytes activates HSC by modulating the SOCS-STAT3 axis. Our results implicated a novel mechanism of exosome-mediated intercellular communication in the activation of HSC for liver fibrosis in HCV infection.IMPORTANCE HCV-associated liver fibrosis is a critical step for end-stage liver disease progression. However, the molecular mechanisms for hepatic stellate-cell activation by HCV-infected hepatocytes are underexplored. Here, we provide a role for miR-19a carried through the exosomes in intercellular communication between HCV-infected hepatocytes and HSC in fibrogenic activation. Furthermore, we demonstrate the role of exosomal miR-19a in activation of the STAT3-TGF-β pathway in HSC. This study contributes to the understanding of intercellular communication in the pathogenesis of liver disease during HCV infection.
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