A Novel C5a Receptor-Tissue Factor Cross-Talk in Neutrophils Links Innate Immunity to Coagulation Pathways

C5a受体 先天免疫系统 补体系统 免疫学 组织因子 替代补体途径 补体受体 受体 炎症 补体成分5 凝结 经典补体途径 PTX3型 生物 细胞生物学 医学 抗体 免疫系统 内科学 生物化学
作者
Konstantinos Ritis,Michael Doumas,Dimitrios C. Mastellos,Anastasia Micheli,Stavros Giaglis,Paola Magotti,Stavros Rafail,Georgios Kartalis,Paschalis Sideras,John D. Lambris
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:177 (7): 4794-4802 被引量:461
标识
DOI:10.4049/jimmunol.177.7.4794
摘要

Abstract Neutrophils and complement are key sentinels of innate immunity and mediators of acute inflammation. Recent studies have suggested that inflammatory processes modulate thrombogenic pathways. To date, the potential cross-talk between innate immunity and thrombosis and the precise molecular pathway by which complement and neutrophils trigger the coagulation process have remained elusive. In this study, we demonstrate that antiphospholipid Ab-induced complement activation and downstream signaling via C5a receptors in neutrophils leads to the induction of tissue factor (TF), a key initiating component of the blood coagulation cascade. TF expression by neutrophils was associated with an enhanced procoagulant activity, as verified by a modified prothrombin time assay inhibited by anti-TF mAb. Inhibition studies using the complement inhibitor compstatin revealed that complement activation is triggered by antiphospholipid syndrome (APS) IgG and leads to the induction of a TF-dependent coagulant activity. Blockade studies using a selective C5a receptor antagonist and stimulation of neutrophils with recombinant human C5a demonstrated that C5a, and its receptor C5aR, mediate the expression of TF in neutrophils and thereby significantly enhance the procoagulant activity of neutrophils exposed to APS serum. These results identify a novel cross-talk between the complement and coagulation cascades that can potentially be exploited therapeutically in the treatment of APS and other complement-associated thrombotic diseases.
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