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Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
Reversing lipopolysaccharide toxicity by ligating the macrophage Fc gamma receptors
1Department of Microbiology and Immunology, Temple University School of Medicine, Philadelphia, PA 19140, USA.
Abstract:
Our laboratory has previously demonstrated that the ligation of phagocytic receptors on macrophages can influence cytokine production. In this study, we examine the cytokine responses to multiple inflammatory stimuli following FcgammaR ligation. Macrophages were stimulated in vitro with LPS, lipoteichoic acid, CD40 ligand, or low molecular mass hyaluronic acid. All of these stimuli were proinflammatory in character, inducing the production of high levels of IL-12, but only modest amounts of IL-10. The coligation of FcgammaR along with these stimuli resulted in an anti-inflammatory profile, abrogating IL-12 production and inducing high levels of IL-10. The modulation of these two cytokines occurred by two independent mechanisms. Whereas the abrogation of IL-12 biosynthesis was a property shared by several macrophage receptors, the induction of IL-10 was specific to the FcgammaR. The biological relevance of these observations was examined in murine models of endotoxemia, in which FcgammaR ligation induced the rapid production of IL-10 and prevented IL-12 synthesis. Mice could be passively immunized with Abs to LPS to reverse inflammatory cytokine production, and the transfer of macrophages whose FcgammaR had been ligated could rescue mice from lethal endotoxemia. Thus, the ligation of the macrophage FcgammaR can be exploited to prevent inappropriate inflammatory cytokine responses.
Insights
Ligating Fc gamma receptors (FcγR) on macrophages shifts inflammatory responses from pro-inflammatory (IL-12) to anti-inflammatory (IL-10). This FcγR ligation effectively prevents lethal endotoxemia in mice.
Area of Science:
- Immunology
- Cell Biology
- Inflammation Research
Background:
- Macrophage activation influences cytokine production.
- Phagocytic receptor ligation can modulate inflammatory responses.
Purpose of the Study:
- To investigate how Fc gamma receptor (FcγR) ligation affects macrophage cytokine responses to inflammatory stimuli.
- To determine the mechanisms and biological relevance of FcγR-mediated cytokine modulation.
Main Methods:
- In vitro stimulation of macrophages with various inflammatory agents (LPS, lipoteichoic acid, CD40 ligand, hyaluronic acid).
- Coligation of FcγR with inflammatory stimuli.
- Assessment of cytokine production (IL-12, IL-10).
- In vivo studies using murine models of endotoxemia.
Main Results:
- Pro-inflammatory stimuli induced high IL-12 and low IL-10.
- FcγR coligation resulted in an anti-inflammatory profile: abrogated IL-12 and induced high IL-10.
- IL-12 abrogation was receptor-non-specific, while IL-10 induction was FcγR-specific.
- FcγR ligation in vivo rapidly produced IL-10, prevented IL-12, and protected mice from lethal endotoxemia.
Conclusions:
- Macrophage FcγR ligation possesses potent anti-inflammatory properties.
- FcγR-mediated IL-10 induction is a key mechanism for suppressing inflammation.
- Targeting macrophage FcγR offers a therapeutic strategy for inflammatory conditions like endotoxemia.
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