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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Activation of the contact pathway of blood coagulation on the circulating microparticles may explain blood plasma coagulation induced by dilution
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Activation of the contact pathway of blood coagulation on the circulating microparticles may explain blood plasma coagulation induced by dilution

机译:在循环微粒上的血液凝血的接触通道的激活可以解释通过稀释诱导的血浆凝血

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Abstract Recent studies have shown that the contact activation of blood coagulation can be initiated on the surface of circulating microparticles–particles formed as a result of the activation or apoptosis of blood cells or endothelial cells. In the present work, by means of a mathematical model, we investigated the mechanism of the activation of contact pathway of blood plasma coagulation. The model describes membrane-dependent reactions of the activation of factors XII and XI with account of the presence of blood plasma inhibitors. All reactions were described by ordinary differential equations integrated by an implicit multistep method. The current mathematical model is based on our previous model of factor XII activation on the platelet surface. The initial model is modified by the addition of factor XI, kallikrein, and blood plasma inhibitors. We show that the amidolytic activity of the contact pathway factors associated with the microparticles is proportional to the concentration of microparticles. In previous studies, an increase in the overall solution amidolytic activity after the dilution of plasma was observed. Computational analysis of the contact pathway activation in the diluted plasma shows that the increase in the activation appears from the dilution of blood plasma inhibitors. Thus, a well-known experimental phenomenon of the hypercoagulability of plasma after dilution can be explained by an increased activation of the blood plasma coagulation through the contact pathway on the circulating microparticles. In addition, the computational analysis reveals that a rapid stop of the contact pathway activation on the microparticles observed in the experiments could be explained by the rapid depletion of the free activation surface.
机译:<标题>抽象 ara>最近的研究表明,可以在循环微粒颗粒的表面上引发血液凝固的接触激活,该循环微粒 - 颗粒形成的血细胞或内皮细胞凋亡。在本作工作中,通过数学模型,我们研究了血浆凝血的接触途径激活的机制。该模型描述了血浆抑制剂存在的因子和XI的激活依赖性反应。通过隐式多步骤方法集成的常规方程描述了所有反应。目前的数学模型基于我们以前的血小板表面上的因子XII激活模型。通过添加因子Xi,Kallikrein和血浆抑制剂来修饰初始模型。我们表明,与微粒相关的接触通路因子的酰胺分解活性与微粒的浓度成比例。在先前的研究中,观察到血浆稀释后的总溶液活性的增加。稀释等离子体中接触通路激活的计算分析表明,活化的增加出现血浆抑制剂的稀释剂。因此,通过在循环微粒上的接触通路的激活通道增加,可以通过增加血浆凝血的激活来解释稀释后的血浆超凝血性的公知实验现象。此外,计算分析表明,可以通过快速耗尽自由活化表面的快速消耗来解释在实验中观察到的微粒上的接触通路活化的快速停止。

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