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Fibrinogen protects neutrophils from the cytotoxic effects of histones and delays neutrophil extracellular trap formation induced by ionomycin.纤维蛋白原可保护中性粒细胞免受组蛋白的细胞毒性作用,并延迟由离子霉素诱导的中性粒细胞胞外诱捕网的形成。
Sci Rep. 2020 Jul 16;10(1):11694. doi: 10.1038/s41598-020-68584-0.
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Biorelevant polyanions stabilize fibrin against mechanical and proteolytic decomposition: Effects of polymer size and electric charge.具有生物相关性的聚阴离子可稳定纤维蛋白,抵抗机械和蛋白水解分解:聚合物大小和电荷的影响。
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Novel inhibitor ZED3197 as potential drug candidate in anticoagulation targeting coagulation FXIIIa (F13a).新型抑制剂ZED3197作为靶向凝血因子FXIIIa(F13a)的抗凝潜在候选药物。
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Neutrophil Extracellular Traps: Villains and Targets in Arterial, Venous, and Cancer-Associated Thrombosis.中性粒细胞胞外陷阱:动脉、静脉和癌症相关血栓形成中的罪魁祸首和靶点。
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Neutrophils: back in the thrombosis spotlight.中性粒细胞:重回血栓形成焦点。
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Neutrophil Extracellular Traps in Arterial and Venous Thrombosis.中性粒细胞胞外诱捕网在动脉和静脉血栓形成中的作用。
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7
Fibrinogen and factor XIII: newly recognized roles in venous thrombus formation and composition.纤维蛋白原和因子 XIII:在静脉血栓形成和组成中的新认识作用。
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An international study on the feasibility of a standardized combined plasma clot turbidity and lysis assay: communication from the SSC of the ISTH.一项关于标准化联合血浆凝块浊度和溶解试验可行性的国际研究:来自国际血栓与止血学会科学标准化委员会的通讯
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A new mass spectrometry-based method for the quantification of histones in plasma from septic shock patients.一种基于质谱的新方法,用于定量脓毒性休克患者血浆中的组蛋白。
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细胞外组蛋白通过与纤维蛋白的非共价和共价相互作用抑制纤维蛋白溶解。

Extracellular Histones Inhibit Fibrinolysis through Noncovalent and Covalent Interactions with Fibrin.

机构信息

Biotherapeutics Division, National Institute for Biological Standards and Control, South Mimms, Hertfordshire, United Kingdom.

出版信息

Thromb Haemost. 2021 Apr;121(4):464-476. doi: 10.1055/s-0040-1718760. Epub 2020 Nov 1.

DOI:10.1055/s-0040-1718760
PMID:33131044
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7982298/
Abstract

Histones released into circulation as neutrophil extracellular traps are causally implicated in the pathogenesis of arterial, venous, and microvascular thrombosis by promoting coagulation and enhancing clot stability. Histones induce structural changes in fibrin rendering it stronger and resistant to fibrinolysis. The current study extends these observations by defining the antifibrinolytic mechanisms of histones in purified, plasma, and whole blood systems. Although histones stimulated plasminogen activation in solution, they inhibited plasmin as competitive substrates. Protection of fibrin from plasmin digestion is enhanced by covalent incorporation of histones into fibrin, catalyzed by activated transglutaminase, coagulation factor FXIII (FXIIIa). All histone subtypes (H1, H2A, H2B, H3, and H4) were crosslinked to fibrin. A distinct, noncovalent mechanism explains histone-accelerated lateral aggregation of fibrin protofibrils, resulting in thicker fibers with higher mass-to-length ratios and in turn hampered fibrinolysis. However, histones were less effective at delaying fibrinolysis in the absence of FXIIIa activity. Therapeutic doses of low-molecular-weight heparin (LMWH) prevented covalent but not noncovalent histone-fibrin interactions and neutralized the effects of histones on fibrinolysis. This suggests an additional antithrombotic mechanism for LMWH beyond anticoagulation. In conclusion, for the first time we report that histones are crosslinked to fibrin by FXIIIa and promote fibrinolytic resistance which can be overcome by FXIIIa inhibitors and histone-binding heparinoids. These findings provide a rationale for targeting the FXIII-histone-fibrin axis to destabilize fibrin and prevent potentially thrombotic fibrin networks.

摘要

组蛋白作为中性粒细胞胞外诱捕网释放到循环中,通过促进凝血和增强血栓稳定性,被认为与动脉、静脉和微血管血栓形成的发病机制有关。组蛋白导致纤维蛋白结构发生变化,使其更强壮且不易被纤维蛋白溶解。本研究通过在纯化血浆和全血系统中定义组蛋白的抗纤维蛋白溶解机制,扩展了这些观察结果。尽管组蛋白在溶液中刺激纤溶酶原激活,但它们作为竞争性底物抑制纤溶酶。通过激活的转谷氨酰胺酶(凝血因子 FXIII,FXIIIa)将组蛋白共价掺入纤维蛋白中,增强纤维蛋白免受纤溶酶消化的保护。所有组蛋白亚型(H1、H2A、H2B、H3 和 H4)都与纤维蛋白交联。一种独特的非共价机制解释了组蛋白加速纤维蛋白原原纤维的侧向聚集,导致纤维更厚、质量与长度比更高,从而阻碍纤维蛋白溶解。然而,在没有 FXIIIa 活性的情况下,组蛋白在延迟纤维蛋白溶解方面的效果较差。低分子量肝素(LMWH)的治疗剂量可防止组蛋白与纤维蛋白的共价相互作用,但不能防止非共价相互作用,并中和组蛋白对纤维蛋白溶解的影响。这表明 LMWH 的抗血栓形成机制除了抗凝作用之外还有其他作用。总之,我们首次报道组蛋白通过 FXIIIa 与纤维蛋白交联,并促进纤维蛋白溶解抵抗,FXIIIa 抑制剂和组蛋白结合肝素可克服这种抵抗。这些发现为靶向 FXIII-组蛋白-纤维蛋白轴提供了依据,以破坏纤维蛋白并防止潜在的血栓形成纤维网络。