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siRNA Electroporation to Modulate Autophagy in Herpes Simplex Virus Type 1-Infected Monocyte-Derived Dendritic Cells
Published on: October 28, 2019
Implication of autophagy in the antifibrogenic effect of Rilpivirine: when more is less
Federico Lucantoni1,2, Ana M Benedicto1, Aleksandra Gruevska1,2
1Departamento de Farmacología, Facultad de Medicina, Universidad de Valencia, Valencia, Spain.
Abstract:
As the main extracellular matrix-producing cells, activated hepatic stellate cells (HSC) are fundamental mediators of liver fibrosis (LF), and understanding their activation/inactivation mechanisms is paramount to the search for novel therapeutics. The antiretroviral drug Rilpivirine (RPV) has demonstrated a hepatoprotective effect in several animal models of chronic liver injury that is related to its antifibrogenic and apoptotic action in HSC. In the present study, we evaluated whether autophagy is implicated in the hepatoprotective action of RPV, as autophagy plays an important role in HSC transdifferentiation. We employed two standard mouse models of chronic liver injury - fatty liver disease and carbon tetrachloride (CCl4)-induced hepatotoxicity -and cultured HSC activated with the profibrotic cytokine TGF-β. RPV enhanced autophagy in the whole liver of both mouse models and in activated HSC, evident in the protein expression of autophagy markers, increased autophagosome content and lysosomal mass. Moreover, increased autophagic flux was observed in RPV-exposed HSC as revealed by tandem fluorescence-tagged LC3 and p62 and analysis of LC3-II accumulation in cells exposed to the lysosomal inhibitor chloroquine. Importantly, autophagy was involved in the cytotoxic effect of RPV on HSC, though in a differential manner. Pharmacological inhibition of autophagy by 3-methyladenine (3-MA) did not affect the diminishing effect of RPV on viability, while treatment with wortmannin or depletion of specific autophagy proteins (ATG5, Beclin-1 and SQSTM1/p62) rescued the detrimental effect of high concentrations of RPV on the viability of activated HSC. Finally, we also provide evidence that RPV compromises the viability of TGF-β-induced HSC independently of its antifibrogenic effect, observed as reduced collagen 1A1 synthesis, and that this effect does not include RPV´s modulation of autophagy. In summary, as a contributor to the mechanisms involved in the hepatoprotective action of RPV, autophagy may be a good candidate to explore when developing novel therapeutics for LF.
Insights
Rilpivirine enhances autophagy in liver cells, contributing to its protective effects against liver fibrosis. This mechanism, involving autophagy modulation, offers potential for new liver fibrosis therapies.
Area of Science:
- Hepatology and cell biology
- Molecular mechanisms of liver fibrosis
- Autophagy research
Background:
- Activated hepatic stellate cells (HSCs) drive liver fibrosis (LF) by producing extracellular matrix.
- Understanding HSC activation/inactivation is key for developing LF therapeutics.
- The antiretroviral drug Rilpivirine (RPV) shows hepatoprotective effects via antifibrogenic and apoptotic actions on HSCs.
Purpose of the Study:
- To investigate the role of autophagy in the hepatoprotective effects of Rilpivirine (RPV).
- To determine if RPV modulates autophagy in hepatic stellate cells (HSCs).
- To explore the therapeutic potential of RPV-induced autophagy in liver fibrosis.
Main Methods:
- Utilized mouse models of fatty liver disease and CCl4-induced hepatotoxicity.
- Cultured HSCs activated with TGF-β.
- Assessed autophagy markers, autophagosome content, lysosomal mass, and autophagic flux.
- Examined RPV's effect on HSC viability with and without autophagy modulation (pharmacological inhibitors and protein depletion).
Main Results:
- RPV enhanced autophagy and autophagic flux in both mouse liver models and activated HSCs.
- Autophagy was involved in RPV's cytotoxic effect on HSCs, particularly at higher concentrations.
- RPV reduced collagen 1A1 synthesis in HSCs independently of autophagy modulation.
Conclusions:
- Autophagy is implicated in the hepatoprotective mechanisms of Rilpivirine (RPV).
- RPV modulates autophagy in hepatic stellate cells (HSCs), influencing their viability.
- Targeting RPV-induced autophagy presents a potential therapeutic strategy for liver fibrosis.
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