Ceramide-CD300f binding suppresses experimental colitis by inhibiting ATP-mediated mast cell activation

Toshihiro Matsukawa1, Kumi Izawa2, Masamichi Isobe3

  • 1Department of Hematology, Hokkaido University Graduate School of Medicine, Sapporo, Hokkaido, Japan Division of Cellular Therapy, Advanced Clinical Research Center, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.

Gut
|February 13, 2015
PubMed
Abstract

Insights

Leucocyte mono-immunoglobulin-like receptor 3 (LMIR3) deficiency exacerbates inflammatory bowel disease (IBD) by promoting mast cell activation. Ceramide-LMIR3 binding inhibits this activation, suggesting therapeutic potential for ceramide liposomes in treating colitis.

Area of Science:

  • Immunology
  • Gastroenterology
  • Cell Biology

Background:

  • Extracellular ATP triggers mast cell-dependent intestinal inflammation via P2X7 purinoceptors.
  • Leucocyte mono-immunoglobulin-like receptor 3 (LMIR3) normally suppresses allergic responses by binding ceramide.

Purpose of the Study:

  • To investigate the role of the ceramide-LMIR3 interaction in the development of inflammatory bowel disease (IBD).

Main Methods:

  • Utilized a dextran sodium sulfate (DSS)-induced colitis model in wild-type and LMIR3-deficient mice, including mast cell-deficient models.
  • Assessed colitis severity, lamina propria cell populations, and mediator production.
  • Investigated the effects of ceramide-LMIR3 interaction modulation using Fc fusion proteins, antibodies, and ceramide liposomes.

Main Results:

  • LMIR3 deficiency exacerbated DSS-induced colitis, with LMIR3-deficient mast cells worsening colitis severity.
  • The ceramide-LMIR3 interaction inhibited ATP-stimulated mast cell activation.
  • Disrupting ceramide-LMIR3 interaction aggravated colitis, while ceramide liposomes suppressed it.

Conclusions:

  • LMIR3-deficient mast cells are crucial in exacerbating DSS-induced colitis.
  • Ceramide liposomes attenuated DSS-induced colitis by inhibiting ATP-mediated mast cell activation via ceramide-LMIR3 binding.

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