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动脉血栓中的可溶性纤维蛋白种类。

Soluble fibrin species in arterial thrombi.

作者信息

Sandbaek G, Bjørnsen S, Sobel J H, Nieuwenhuizen W, Matsueda G, Brosstad F

机构信息

Research Institute for Internal Medicine, The National Hospital (Rikshospitalet), University of Oslo, Norway.

出版信息

Blood Coagul Fibrinolysis. 2000 Jan;11(1):1-5.

Abstract

The aim of this study was to characterize soluble fibrin(ogen) species in human, arterial, in-vivo-formed thrombi, using the immunoblotting technique. Specimens were collected via intra-arterial catheters in six patients scheduled for catheter-directed thrombolysis. Unreduced and reduced samples of the supernatants from the arterial thrombi-derived specimens were electrophoresed on polyacrylamide gels and immunoblotted, using specific mono- and polyclonal anti-fibrin(ogen) antibodies. The reduced samples disclosed substantial amounts of high molecular weight material, consistent with alpha-chain polymers and gammagamma-dimers, as well as lower molecular weight material, such as alpha-, beta- and gamma-chains. No fibrinogen with intact fibrinopeptide A was detectable, and des-AABB fibrin represented a major fibrin derivative in the soluble part of the arterial thrombi. The alpha-chains were C-terminally degraded, most of them distal to position 259. In conclusion, we have demonstrated the presence of cross-linked fibrin derivatives in soluble, arterial thrombus-related material, without signs of fibrinogen-fibrin hybrids. The fibrin derivatives were C-terminally degraded, thus representing X-oligomeric material, most probably originating from plasmin degradation of insoluble thrombus fibrin. The present study supports the hypothesis of a dynamic equilibrium between clotting and lysis in thrombi.

摘要

本研究的目的是使用免疫印迹技术对人体动脉内体内形成的血栓中的可溶性纤维蛋白(原)种类进行表征。通过动脉内导管收集了6例计划进行导管定向溶栓治疗患者的样本。将动脉血栓来源样本的上清液未还原和还原后的样品在聚丙烯酰胺凝胶上进行电泳,并使用特异性单克隆和多克隆抗纤维蛋白(原)抗体进行免疫印迹。还原后的样品显示出大量高分子量物质,与α链聚合物和γγ二聚体一致,以及较低分子量物质,如α、β和γ链。未检测到具有完整纤维蛋白肽A的纤维蛋白原,去AABB纤维蛋白是动脉血栓可溶性部分中的主要纤维蛋白衍生物。α链在C末端降解,大多数在259位远端。总之,我们已经证明在可溶性动脉血栓相关物质中存在交联纤维蛋白衍生物,没有纤维蛋白原 - 纤维蛋白杂合体的迹象。这些纤维蛋白衍生物在C末端降解,因此代表X寡聚体物质,很可能源自不溶性血栓纤维蛋白的纤溶酶降解。本研究支持血栓中凝血和溶解之间动态平衡的假说。

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