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同表型Aα R 16H纤维蛋白原凝块(金斯波特,纤维蛋白肽A释放比纤维蛋白肽B慢)导致纤溶酶抗性降低。

Decreased plasmin resistance by clots of a homophenotypic Aalpha R 16H fibrinogen (Kingsport, slower fibrinopeptide A than fibrinopeptide B release).

作者信息

Galanakis Dennis K, Neerman-Arbez Marguerite, Kudryk Bohdan, Henschen Agnes

机构信息

State University of New York, Stony Brook University, Niccoll's Road, New York, NY 11794-7530, USA.

出版信息

Blood Coagul Fibrinolysis. 2010 Mar;21(2):135-9. doi: 10.1097/MBC.0b013e3283358163.

Abstract

Reported evidence of a role in fibrinolysis by fibrinopeptide (Fp)B-dependent intermolecular fibrin polymerization contacts and of reversed FpA/FpB release sequence from fibrinogen Kingsport led us to investigate the fibrinolytic properties of Kingsport clots. Clot lysis was induced by either plasmin (pH 7.4) or by a mixture of plasminogen and recombinant tissue plasminogen activator and measured by lysis time and by turbidity (350 nm) time course. Clots were formed by thrombin from plasminogen-free fibrinogen (pH 7.4, 8 mmol/l CaCl2), with or without 40 nmol/l factor XIII or 20% afibrinogenemic plasma. Displaying no differences from corresponding normal controls were (a) lysis of repolymerized fibrin clots, and (b) chromogenic measurements of fibrin-stimulated Glu-plasminogen activation by recombinant tissue plasminogen activator. By contrast, thrombin-induced fine and coarse network clots (n = 7) displayed faster turbidity loss than corresponding normal controls and shorter lysis times ranging 31-55% of controls. Comparison of clots of fibrinogen fractions lacking approximately 90% of their alpha chain carboxyl terminal regions, n = 2, also displayed faster plasmin-induced lysis than corresponding controls. To assess the role of FpB release-dependent intermolecular polymerization contacts, clots were prepared in the presence of three molar excess antibeta 15-42 immunoglobulin G, n = 2, and displayed no differences in plasmin-induced lysis from nonimmune immunoglobulin G controls. The reversed FpA/FpB release sequence from Kingsport fibrinogen resulted in clots with decreased resistance to plasmin. We suggest that both markedly slow polymerization and decreased plasmin resistance played causative roles in the hemorrhagic diathesis associated with this dysfibrinogen.

摘要

有报道称,纤维蛋白肽(Fp)B依赖的分子间纤维蛋白聚合接触在纤维蛋白溶解中起作用,且纤维蛋白原金斯波特的FpA/FpB释放顺序相反,这促使我们研究金斯波特凝块的纤维蛋白溶解特性。通过纤溶酶(pH 7.4)或纤溶酶原与重组组织纤溶酶原激活剂的混合物诱导凝块溶解,并通过溶解时间和吸光度(350 nm)随时间变化的过程进行测量。凝块由凝血酶作用于无纤溶酶原的纤维蛋白原(pH 7.4,8 mmol/L氯化钙)形成,添加或不添加40 nmol/L因子XIII或20%无纤维蛋白原血症血浆。(a) 再聚合纤维蛋白凝块的溶解,以及(b)重组组织纤溶酶原激活剂对纤维蛋白刺激的谷氨酸纤溶酶原激活的显色测量,与相应的正常对照无差异。相比之下,凝血酶诱导的细网和粗网凝块(n = 7)比相应的正常对照显示出更快的吸光度下降,溶解时间更短,为对照的31 - 55%。对缺乏约90%α链羧基末端区域的纤维蛋白原组分的凝块(n = 2)进行比较,也显示出比相应对照更快的纤溶酶诱导溶解。为了评估FpB释放依赖的分子间聚合接触的作用,在存在三倍摩尔过量的抗β15 - 42免疫球蛋白G(n = 2)的情况下制备凝块,其纤溶酶诱导溶解与非免疫免疫球蛋白G对照无差异。金斯波特纤维蛋白原的FpA/FpB释放顺序相反导致凝块对纤溶酶的抗性降低。我们认为,明显缓慢的聚合和对纤溶酶抗性的降低在与这种异常纤维蛋白原相关的出血素质中起了致病作用。

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