Sidelmann J J, Gram J, Jespersen J, Kluft C
Department for Thrombosis Research, University of Southern Denmark, Esbjerg.
Semin Thromb Hemost. 2000;26(6):605-18. doi: 10.1055/s-2000-13216.
The hemostatic balance, introduced more than 40 years ago, addresses the components and reactions involved in fibrin turnover. Fibrin is placed in the core of this delicate balance. Defects in the mechanisms responsible for fibrin turnover might lead to thrombosis or bleeding, and fibrin consequently is an important substrate in the physiology of hemostasis. This review describes the components and processes involved in fibrin formation and fibrin degradation. Particular emphasis is put on the reactions involved in the conversion of fibrinogen to fibrin, the polymerization of fibrin molecules induced by coagulation factor XIII (FXIII), and the degradation of fibrinogen and fibrin mediated by plasmin and elastase. Furthermore, factors influencing fibrin structure and fibrin breakdown are addressed; in particular polymorphisms in the genes coding for fibrinogen and FXIII, but also the physical and biochemical conditions in which fibrin is formed. The past decades have produced a bulk of biochemical publications reviewing fibrin turnover and fibrin structure, and it has been shown that alterations in fibrin structure are important for the development of various disease conditions, whereas, the architecture of fibrin can be modified by certain drugs and chemical compounds. However, these topics deserve increased attention in clinical settings. Of particular importance might be more detailed clinical studies that review the influence of polymorphisms in the genes coding for the key factors involved in fibrin metabolism on the development of hemostatic diseases, but also the role of elastase-induced fibrin degradation deserves increased attention.
40多年前提出的止血平衡概念,涉及纤维蛋白周转过程中的各种成分和反应。纤维蛋白处于这种微妙平衡的核心位置。负责纤维蛋白周转的机制出现缺陷可能导致血栓形成或出血,因此纤维蛋白是止血生理过程中的重要底物。本综述描述了纤维蛋白形成和降解过程中涉及的成分和过程。特别强调了纤维蛋白原转化为纤维蛋白的反应、凝血因子 XIII(FXIII)诱导的纤维蛋白分子聚合,以及纤溶酶和弹性蛋白酶介导的纤维蛋白原和纤维蛋白的降解。此外,还讨论了影响纤维蛋白结构和纤维蛋白降解的因素;特别是纤维蛋白原和FXIII编码基因中的多态性,以及纤维蛋白形成时的物理和生化条件。在过去几十年里,已经有大量关于纤维蛋白周转和纤维蛋白结构的生化文献发表,研究表明纤维蛋白结构的改变对各种疾病状态的发展很重要,而且某些药物和化合物可以改变纤维蛋白的结构。然而,这些主题在临床环境中值得更多关注。特别重要的可能是更详细的临床研究,这些研究既要审视纤维蛋白代谢关键因子编码基因中的多态性对止血疾病发展的影响,同时弹性蛋白酶诱导的纤维蛋白降解作用也值得更多关注。