Macrophage scavenger receptor 1 contributes to pathogenesis of fulminant hepatitis via neutrophil-mediated complement

Yuan Tang1, Huifang Li1, Junru Li1

  • 1Department of Immunology, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong 510515, China.

Journal of Hepatology
|November 21, 2017
PubMed
Abstract

Insights

Macrophage scavenger receptor 1 (Msr1) promotes virus-induced fulminant hepatitis (FH) by enhancing neutrophil NETosis and complement activation. Targeting Msr1 offers a potential new immunotherapy for FH.

Area of Science:

  • Immunology
  • Hepatology
  • Molecular Biology

Background:

  • Macrophage scavenger receptor 1 (Msr1) is a pattern recognition receptor crucial for immune homeostasis.
  • Msr1 expression is upregulated in the livers of patients with fulminant hepatitis (FH).

Purpose of the Study:

  • To investigate the functional mechanism of Msr1 in the pathogenesis of FH.
  • To explore Msr1 as a potential therapeutic target for FH.

Main Methods:

  • Msr1-deficient (Msr1-/-) and wild-type (WT) mice were infected with mouse hepatitis virus strain-A59 (MHV-A59) to induce FH.
  • Levels of tissue damage, serum alanine aminotransferase, inflammatory cytokines, and complement component 5a (C5a) were measured.
  • Liver injury was assessed with and without neutrophil depletion.
  • The effect of a C5a receptor antagonist (C5aRa) was evaluated.

Main Results:

  • Msr1-/- mice exhibited resistance to MHV-induced hepatitis.
  • C5a receptor antagonism diminished inflammatory responses and liver injury differences between WT and Msr1-/- mice.
  • Msr1 enhanced neutrophil transforming growth factor-activated kinase-1 phosphorylation, promoting extracellular signal-regulated kinase pathway activation and NETosis.
  • Blocking Msr1 attenuated MHV-A59-induced liver damage.

Conclusions:

  • Msr1 promotes FH pathogenesis by enhancing neutrophil NETosis and subsequent complement activation.
  • Targeting Msr1 represents a novel immunotherapeutic strategy for FH.
  • Inhibiting Msr1 function may benefit patients with FH.

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