首页> 外文期刊>Life sciences >Inactivation of plasminogen activator inhibitor type 1 by activated factor XII plays a role in the enhancement of fibrinolysis by contact factors in-vitro.
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Inactivation of plasminogen activator inhibitor type 1 by activated factor XII plays a role in the enhancement of fibrinolysis by contact factors in-vitro.

机译:激活因子XII使纤溶酶原激活剂抑制剂1型失活在体外通过接触因子增强纤维蛋白溶解中起作用。

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AIMS: Several activated coagulation factors have been reported to enhance fibrinolysis by inactivating plasminogen activator inhibitor type 1 (PAI-1), a serine protease inhibitor. We analyzed the interaction between PAI-1 and the three serine proteases generated during contact activation of plasma, activated factor XII (FXIIa), FXIa, and kallikrein, and evaluated their effects on fibrinolysis in-vitro. MAIN METHODS: Effects of kaolin on euglobulin clot lysis time (ECLT) and behavior of PAI-1 in factor-depleted plasma were analyzed. KEY FINDINGS: The ECLT of pooled plasma obtained from normal volunteers (designated as 100%) was shortened to 62.1+/-3.1% by Ca(2+) (5 mM) and 29.9+/-3.1% by kaolin. Activated protein C reversed the ECLT shortened by Ca(2+)-supplementation (86.3+/-17.4%), but did not affect the ECLT shortened by kaolin (31.4+/-2.1%). Thus, in contrary to Ca(2+)-supplementation, kaolin appeared to shorten the ECLT by a mechanism independent of thrombin generation. In three kinds of contact factor-depleted plasma, kaolin did not shorten ECLT only in FXII-depleted plasma. PAI-1 was cleaved to its inactive form in the Ca(2+) as well as the kaolin-supplemented euglobulin fraction in normal plasma, the latter of which, however, was not observed in FXII-depleted plasma. Similarly, a high molecular weight complex between FXIIa and PAI-1, as well as a cleaved form of PAI-1, was observed in kaolin-supplemented normal plasma, but neither was found in kaolin-supplemented FXII-depleted plasma. SIGNIFICANCE: PAI-1 inactivation by FXIIa appears to be a mechanism by which contact phase coagulation factors enhance fibrinolysis independently of thrombin generation.
机译:目的:据报道,几种活化的凝血因子可通过使1型纤溶酶原激活物抑制剂(PAI-1)(一种丝氨酸蛋白酶抑制剂)失活来增强纤维蛋白溶解。我们分析了PAI-1与血浆,活化因子XII(FXIIa),FXIa和激肽释放酶的接触活化过程中产生的三种丝氨酸蛋白酶之间的相互作用,并评估了它们对体外纤维蛋白溶解的影响。主要方法:分析高岭土对贫血因子血浆中球蛋白凝块溶解时间(ECLT)和PAI-1行为的影响。主要发现:从正常志愿者(指定为100%)获得的合并血浆的ECLT被Ca(2+)(5 mM)缩短为62.1 +/- 3.1%,而高岭土则缩短为29.9 +/- 3.1%。活化的蛋白C逆转了由Ca(2+)补充(86.3 +/- 17.4%)缩短的ECLT,但不影响由高岭土缩短的ECLT(31.4 +/- 2.1%)。因此,与Ca(2+)补充相反,高岭土似乎通过独立于凝血酶生成的机制缩短了ECLT。在三种接触因子贫化血浆中,高岭土仅在FXII贫血血浆中并未缩短ECLT。在正常血浆中,PAI-1在Ca(2+)和高岭土补充的球蛋白级分中均被切割成非活性形式,但是在FXII缺乏的血浆中未观察到后者。类似地,在补充高岭土的正常血浆中观察到FXIIa和PAI-1之间的高分子量复合物以及PAI-1的裂解形式,但在补充高岭土的FXII中血浆中均未发现。意义:FXIIa使PAI-1失活似乎是接触相凝血因子独立于凝血酶产生而增强纤维蛋白溶解的一种机制。

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