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Published on: February 3, 2023
Integrin β1-enriched extracellular vesicles mediate monocyte adhesion and promote liver inflammation in murine NASH
Qianqian Guo1, Kunimaro Furuta1, Fabrice Lucien2
1Division of Gastroenterology & Hepatology, Mayo Clinic, Rochester, Minnesota, United States.
Background & Aims:
Hepatic recruitment of monocyte-derived macrophages (MoMFs) contributes to the inflammatory response in non-alcoholic steatohepatitis (NASH). However, how hepatocyte lipotoxicity promotes MoMF inflammation is unclear. Here we demonstrate that lipotoxic hepatocyte-derived extracellular vesicles (LPC-EVs) are enriched with active integrin β1 (ITGβ1), which promotes monocyte adhesion and liver inflammation in murine NASH.
Methods:
Hepatocytes were treated with either vehicle or the toxic lipid mediator lysophosphatidylcholine (LPC); EVs were isolated from the conditioned media and subjected to proteomic analysis. C57BL/6J mice were fed a diet rich in fat, fructose, and cholesterol (FFC) to induce NASH. Mice were treated with anti-ITGβ1 neutralizing antibody (ITGβ1Ab) or control IgG isotype.
Results:
Ingenuity® Pathway Analysis of the LPC-EV proteome indicated that ITG signaling is an overrepresented canonical pathway. Immunogold electron microscopy and nanoscale flow cytometry confirmed that LPC-EVs were enriched with activated ITGβ1. Furthermore, we showed that LPC treatment in hepatocytes activates ITGβ1 and mediates its endocytic trafficking and sorting into EVs. LPC-EVs enhanced monocyte adhesion to liver sinusoidal cells, as observed by shear stress adhesion assay. This adhesion was attenuated in the presence of ITGβ1Ab. FFC-fed, ITGβ1Ab-treated mice displayed reduced inflammation, defined by decreased hepatic infiltration and activation of proinflammatory MoMFs, as assessed by immunohistochemistry, mRNA expression, and flow cytometry. Likewise, mass cytometry by time-of-flight on intrahepatic leukocytes showed that ITGβ1Ab reduced levels of infiltrating proinflammatory monocytes. Furthermore, ITGβ1Ab treatment significantly ameliorated liver injury and fibrosis.
Conclusions:
Lipotoxic EVs mediate monocyte adhesion to LSECs mainly through an ITGβ1-dependent mechanism. ITGβ1Ab ameliorates diet-induced NASH in mice by reducing MoMF-driven inflammation, suggesting that blocking ITGβ1 is a potential anti-inflammatory therapeutic strategy in human NASH.
Lay Summary:
Herein, we report that a cell adhesion molecule termed integrin β1 (ITGβ1) plays a key role in the progression of non-alcoholic steatohepatitis (NASH). ITGβ1 is released from hepatocytes under lipotoxic stress as a cargo of extracellular vesicles, and mediates monocyte adhesion to liver sinusoidal endothelial cells, which is an essential step in hepatic inflammation. In a mouse model of NASH, blocking ITGβ1 reduces liver inflammation, injury and fibrosis. Hence, ITGβ1 inhibition may serve as a new therapeutic strategy for NASH.
Insights
Lipotoxic extracellular vesicles carrying active integrin β1 (ITGβ1) promote liver inflammation in non-alcoholic steatohepatitis (NASH). Blocking ITGβ1 reduces inflammation, injury, and fibrosis in a mouse model, suggesting a potential NASH therapy.
Area of Science:
- Hepatology and Immunology
- Molecular and Cellular Biology
Background:
- Monocyte-derived macrophages (MoMFs) drive inflammation in non-alcoholic steatohepatitis (NASH).
- The precise mechanisms by which hepatocyte lipotoxicity exacerbates MoMF inflammation remain incompletely understood.
Purpose of the Study:
- To investigate the role of hepatocyte-derived extracellular vesicles (EVs) in promoting MoMF inflammation under lipotoxic conditions.
- To identify specific molecular mediators within these EVs that contribute to liver inflammation in NASH.
Main Methods:
- Hepatocytes were exposed to lysophosphatidylcholine (LPC) to induce lipotoxicity, and EVs were isolated for proteomic analysis.
- A murine model of NASH was established using a high-fat, high-fructose, high-cholesterol diet.
- Mice were treated with an anti-integrin β1 (ITGβ1) neutralizing antibody (ITGβ1Ab) or control IgG.
Main Results:
- Lipotoxic hepatocyte-derived EVs (LPC-EVs) were enriched with activated ITGβ1, confirmed by proteomic and nanoscale flow cytometry.
- LPC-EVs significantly enhanced monocyte adhesion to liver sinusoidal endothelial cells (LSECs), an effect attenuated by ITGβ1Ab.
- ITGβ1Ab treatment in NASH mice reduced hepatic MoMF infiltration and activation, ameliorated liver injury, and decreased fibrosis.
Conclusions:
- Lipotoxic EVs mediate monocyte adhesion to LSECs primarily via an ITGβ1-dependent mechanism.
- Blocking ITGβ1 with ITGβ1Ab effectively reduces inflammation, injury, and fibrosis in a diet-induced NASH mouse model.
- ITGβ1 inhibition represents a promising therapeutic strategy for managing NASH.
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