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Published on: June 15, 2019
Microparticle alpha-2-macroglobulin enhances pro-resolving responses and promotes survival in sepsis
Jesmond Dalli1, Lucy V Norling, Trinidad Montero-Melendez
1Centre for Biochemical Pharmacology The William Harvey Research Institute, Barts and The London School of Medicine Queen Mary University of London, London, UK.
Abstract:
Incorporation of locally produced signaling molecules into cell-derived vesicles may serve as an endogenous mediator delivery system. We recently reported that levels alpha-2-macroglobulin (A2MG)-containing microparticles are elevated in plasma from patients with sepsis. Herein, we investigated the immunomodulatory actions of A2MG containing microparticles during sepsis. Administration of A2MG-enriched (A2MG-E)-microparticles to mice with microbial sepsis protected against hypothermia, reduced bacterial titers, elevated immunoresolvent lipid mediator levels in inflammatory exudates and reduced systemic inflammation. A2MG-E microparticles also enhanced survival in murine sepsis, an action lost in mice transfected with siRNA for LRP1, a putative A2MG receptor. In vitro, A2MG was functionally transferred onto endothelial cell plasma membranes from microparticles, augmenting neutrophil-endothelial adhesion. A2MG also modulated human leukocyte responses: enhanced bacterial phagocytosis, reactive oxygen species production, cathelicidin release, prevented endotoxin induced CXCR2 downregulation and preserved neutrophil chemotaxis in the presence of LPS. A significant association was also found between elevated plasma levels of A2MG-containing microparticles and survival in human sepsis patients. Taken together, these results identify A2MG enrichment in microparticles as an important host protective mechanism in sepsis.
Insights
Alpha-2-macroglobulin (A2MG)-enriched microparticles protect against sepsis by reducing bacterial load and inflammation. These findings highlight A2MG-containing microparticles as a crucial host defense mechanism in sepsis.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Cell-derived vesicles can deliver signaling molecules.
- Elevated alpha-2-macroglobulin (A2MG)-containing microparticles are observed in sepsis patients.
Purpose of the Study:
- To investigate the immunomodulatory effects of A2MG-containing microparticles in sepsis.
Main Methods:
- Administration of A2MG-enriched microparticles to mice with microbial sepsis.
- Investigated the role of LRP1 receptor using siRNA.
- In vitro studies on endothelial cells and human leukocytes.
- Analyzed association between A2MG microparticles and survival in human sepsis patients.
Main Results:
- A2MG-enriched microparticles reduced hypothermia, bacterial titers, and systemic inflammation in septic mice.
- Enhanced survival in murine sepsis, dependent on LRP1.
- A2MG transferred to endothelial cells, augmenting neutrophil-endothelial adhesion.
- Modulated human leukocyte functions, including phagocytosis and chemotaxis.
- Elevated A2MG-containing microparticles correlated with survival in human sepsis.
Conclusions:
- A2MG enrichment in microparticles is a significant host-protective mechanism in sepsis.
- A2MG-containing microparticles modulate immune responses and improve sepsis outcomes.
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