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Complement C5a Induces Pro-inflammatory Microvesicle Shedding in Severely Injured Patients.

Abstract

Initially underestimated as platelet dust, extracellular vesicles are continuously gaining interest in the field of inflammation. Various studies addressing inflammatory diseases have shown that microvesicles (MVs) originating from different cell types are systemic transport vehicles carrying distinct cargoes to modulate immune responses. In this study, we focused on the clinical setting of multiple trauma, which is characterized by activation and dysfunction of both, the fluid-phase and the cellular component of innate immunity. Given the sensitivity of neutrophils for the complement anaphylatoxin C5a, we hypothesized that increased C5a production induces alterations in MV shedding of neutrophils resulting in neutrophil dysfunction that fuels posttraumatic inflammation. In a mono-centered prospective clinical study with polytraumatized patients, we found significantly increased granulocyte-derived MVs containing the C5a receptor (C5aR1, CD88) on their surface. This finding was accompanied by a concomitant loss of C5aR1 on granulocytes indicative of an impaired cellular chemotactic and pro-inflammatory neutrophil functions. Furthermore, in vitro exposure of human neutrophils (from healthy volunteers) to C5a significantly increased MV shedding and C5aR1 loss on neutrophils, which could be blocked using the C5aR1 antagonist PMX53. Mechanistic analyses revealed that the interaction between C5aR1 signaling and the small GTPase Arf6 acts as a molecular switch for MV shedding. When neutrophil derived, C5a-induced MV were exposed to a complex ex vivo whole blood model significant pro-inflammatory properties (NADPH activity, ROS and MPO generation) of the MVs became evident. C5a-induced MVs activated resting neutrophils and significantly induced IL-6 secretion. These data suggest a novel role of the C5a-C5aR1 axis: C5a-induced MV shedding from neutrophils results in decreased C5aR1 surface expression on the one hand, on the other hand it leads to profound inflammatory signals which likely are both key drivers of the neutrophil dysfunction which is regularly observed in patients suffering from multiple traumatic injuries.
Copyright © 2020 Karasu, Demmelmaier, Kellermann, Holzmann, Köhl, Schmidt, Kalbitz, Gebhard, Huber-Lang and Halbgebauer.

Authors

Ebru Karasu, Julia Demmelmaier, Stephanie Kellermann, Karlheinz Holzmann, Jörg Köhl, Christoph Q Schmidt, Miriam Kalbitz, Florian Gebhard, Markus S Huber-Lang, Rebecca Halbgebauer

Institute of Clinical and Experimental Trauma Immunology, University Hospital Ulm, Ulm, Germany.

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9 products referenced in this paper

(305126) APC/Cyanine7 anti-human CD66b [G10F5]; Monoclonal

an Antibody by BioLegend

Applications:

FC/FACS

Reactivity:

Homo sapiens (Human)

(MCA2059F) Mouse anti Human CD88:FITC

an Antibody by Bio-Rad (Formerly AbD Serotec)

Applications:

FC/FACS

Reactivity:

Homo sapiens (Human)

(C36950) CountBright™ absolute counting beads for flow cytometry 100 tests

a Kit by Thermo Scientific

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Journal Frontiers in Immunology

Volume 11

Pages 1789

Publication Date 29 September 2020

View on PubMed®

Publication metadata is provided by PubMed®, courtesy of the U.S. National Library of Medicine. Information for this publication was last updated on 2026-02-12 05:11:34 UTC.

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