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人类的纤维蛋白溶解系统。

The fibrinolytic system in man.

作者信息

Collen D, Lijnen H R

出版信息

Crit Rev Oncol Hematol. 1986;4(3):249-301. doi: 10.1016/s1040-8428(86)80014-2.

Abstract

The fibrinolytic system comprises a proenzyme, plasminogen, which can be activated to the active enzyme plasmin, that will degrade fibrin by different types of plasminogen activators. Inhibition of fibrinolysis may occur at the level of plasmin or at the level of the activators. Fibrinolysis in human blood seems to be regulated by specific molecular interactions between these components. In plasma, normally no systemic plasminogen activation occurs. When fibrin is formed, small amounts of plasminogen activator and plasminogen adsorb to the fibrin, and plasmin is generated in situ. The formed plasmin, which remains transiently complexed to fibrin, is only slowly inactivated by alpha 2-antiplasmin, while plasmin, which is released from digested fibrin, is rapidly and irreversibly neutralized. The fibrinolytic process, thus, seems to be triggered by and confined to fibrin. Thrombus formation may occur as the result of insufficient activation of the fibrinolytic system and (or) the presence of excess inhibitors, while excessive activation and/or deficiency of inhibitors might cause excessive plasmin formation and a bleeding tendency. Evidence obtained in animal models suggests that tissue-type plasminogen activator, obtained by recombinant DNA technology, may constitute a specific clot-selective thrombolytic agent with higher specific activity and fewer side effects than those currently in use.

摘要

纤维蛋白溶解系统由一种酶原即纤溶酶原组成,纤溶酶原可被激活成为活性酶纤溶酶,纤溶酶能通过不同类型的纤溶酶原激活剂降解纤维蛋白。纤维蛋白溶解的抑制可发生在纤溶酶水平或激活剂水平。人体血液中的纤维蛋白溶解似乎受这些成分之间特定分子相互作用的调节。在血浆中,通常不会发生全身性纤溶酶原激活。当形成纤维蛋白时,少量的纤溶酶原激活剂和纤溶酶原吸附到纤维蛋白上,并在局部产生纤溶酶。形成的纤溶酶与纤维蛋白短暂结合,仅被α2-抗纤溶酶缓慢灭活,而从被消化的纤维蛋白中释放的纤溶酶则迅速且不可逆地被中和。因此纤维蛋白溶解过程似乎由纤维蛋白触发并局限于纤维蛋白。纤维蛋白溶解系统激活不足和(或)存在过量抑制剂可能导致血栓形成,而激活过度和(或)抑制剂缺乏可能导致纤溶酶生成过多并倾向于出血。在动物模型中获得的证据表明,通过重组DNA技术获得的组织型纤溶酶原激活剂可能构成一种比目前使用的药物具有更高比活性和更少副作用的特异性凝块选择性溶栓剂。

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