CD301b/MGL2+ Mononuclear Phagocytes Orchestrate Autoimmune Cardiac Valve Inflammation and Fibrosis

Lee A Meier1,2,3, Jennifer L Auger1,2, Brianna J Engelson1,3

  • 1Center for Immunology (L.A.M., J.L.A., B.J.E., H.M.C., M.I.G.-T., B.A.B.).

Circulation
|February 2, 2018
PubMed
Abstract

Insights

Mononuclear phagocytes (MNPs) drive autoimmune mitral valve disease (MVD) by expressing inflammatory molecules like TNF and IL-6. Targeting these pathways, including Syk and VLA-4, offers a potential therapeutic strategy for MVD.

Area of Science:

  • Immunology
  • Cardiovascular Biology
  • Pathology

Background:

  • Valvular heart disease, particularly mitral valve disease (MVD), is prevalent but its underlying cellular and molecular mechanisms remain poorly understood.
  • Autoimmune conditions can lead to severe fibroinflammatory MVD, necessitating research into disease initiation and progression pathways.

Purpose of the Study:

  • To elucidate the cellular and molecular drivers of autoimmune MVD in a T-cell receptor transgenic mouse model.
  • To investigate the role of mononuclear phagocytes (MNPs) in the pathogenesis of MVD.
  • To identify potential therapeutic targets by correlating findings in mice to human rheumatic heart disease.

Main Methods:

  • Utilized multiparameter flow cytometry and immunofluorescence to characterize MV-infiltrating cells in K/B.g7 mice.
  • Employed genetic ablation of specific MNP populations (CX3CR1+ or CD301b/MGL2+ MNPs) and conditional gene deletion (Syk, VLA-4) within MNPs.
  • Conducted antibody blockade studies for key inflammatory cytokines (TNF, IL-6) and utilized bone marrow chimeric mice to determine cell origins and responses.

Main Results:

  • MNPs expressing CX3CR1 and CD301b/MGL2 were the predominant infiltrating cells in inflamed MVs, analogous to cells found in human rheumatic heart disease.
  • Ablation of CX3CR1+ or CD301b/MGL2+ MNPs protected mice from MVD development.
  • Inflammatory mediators including Syk, TNF, IL-6, VLA-4, and VCAM-1 were identified as critical drivers, with TNF acting via TNF receptor-1 on valve cells.

Conclusions:

  • CD301b/MGL2+ MNPs are central to autoimmune MVD pathogenesis in this model and are present in human rheumatic heart disease.
  • Key inflammatory molecules (Syk, TNF, IL-6, VLA-4, VCAM-1) orchestrate MVD progression, highlighting their potential as therapeutic targets.

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