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Cecal Ligation Puncture Procedure
Published on: May 7, 2011
CLEC-2 Prevents Accumulation and Retention of Inflammatory Macrophages During Murine Peritonitis
Joshua H Bourne1, Nonantzin Beristain-Covarrubias1, Malou Zuidscherwoude1,2
1Institute of Cardiovascular Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, United Kingdom.
Abstract:
Platelets play a key role in the development, progression and resolution of the inflammatory response during sterile inflammation and infection, although the mechanism is not well understood. Here we show that platelet CLEC-2 reduces tissue inflammation by regulating inflammatory macrophage activation and trafficking from the inflamed tissues. The immune regulatory function of CLEC-2 depends on the expression of its ligand, podoplanin, upregulated on inflammatory macrophages and is independent of platelet activation and secretion. Mechanistically, platelet CLEC-2 and also recombinant CLEC-2-Fc accelerates actin rearrangement and macrophage migration by increasing the expression of podoplanin and CD44, and their interaction with the ERM proteins. During ongoing inflammation, induced by lipopolysaccharide, treatment with rCLEC-2-Fc induces the rapid emigration of peritoneal inflammatory macrophages to mesenteric lymph nodes, thus reducing the accumulation of inflammatory macrophages in the inflamed peritoneum. This is associated with a significant decrease in pro-inflammatory cytokine, TNF-α and an increase in levels of immunosuppressive, IL-10 in the peritoneum. Increased podoplanin expression and actin remodelling favour macrophage migration towards CCL21, a soluble ligand for podoplanin and chemoattractant secreted by lymph node lymphatic endothelial cells. Macrophage efflux to draining lymph nodes induces T cell priming. In conclusion, we show that platelet CLEC-2 reduces the inflammatory phenotype of macrophages and their accumulation, leading to diminished tissue inflammation. These immunomodulatory functions of CLEC-2 are a novel strategy to reduce tissue inflammation and could be therapeutically exploited through rCLEC-2-Fc, to limit the progression to chronic inflammation.
Insights
Platelet CLEC-2 reduces tissue inflammation by controlling inflammatory macrophage movement. This immune regulation limits inflammatory cell accumulation and lessens tissue damage, offering a new therapeutic approach.
Area of Science:
- Immunology
- Cell Biology
- Inflammation Research
Background:
- Platelets are crucial in inflammation, but their precise mechanisms remain unclear.
- Understanding platelet roles in sterile inflammation and infection is vital.
Purpose of the Study:
- To investigate the role of platelet CLEC-2 in regulating inflammatory macrophage activation and trafficking.
- To elucidate the mechanism by which CLEC-2 influences macrophage behavior during inflammation.
Main Methods:
- Utilized lipopolysaccharide-induced inflammation models.
- Administered recombinant CLEC-2-Fc (rCLEC-2-Fc) to assess its effects.
- Analyzed macrophage migration, cytokine levels (TNF-α, IL-10), and protein expression (podoplanin, CD44).
Main Results:
- Platelet CLEC-2 reduces tissue inflammation by regulating macrophage activation and emigration.
- CLEC-2 enhances macrophage migration by increasing podoplanin and CD44 expression, facilitating actin rearrangement.
- rCLEC-2-Fc treatment promoted macrophage efflux to lymph nodes, reducing peritoneal inflammation and altering cytokine profiles.
Conclusions:
- Platelet CLEC-2 diminishes the inflammatory phenotype of macrophages, reducing their accumulation and tissue inflammation.
- CLEC-2's immunomodulatory function presents a novel therapeutic strategy for limiting chronic inflammation.
- rCLEC-2-Fc holds potential for therapeutic exploitation to manage inflammatory conditions.

