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温度对纤维蛋白凝血反应过程中动态粘弹性的影响。

Effect of temperature on dynamic viscoelasticity during the clotting reaction of fibrin.

作者信息

Kaibara M, Fukada E

出版信息

Biochim Biophys Acta. 1977 Oct 25;499(3):352-61. doi: 10.1016/0304-4165(77)90066-6.

Abstract

The dynamic rigidity and loss moduli for fibrinogen-thrombin solution were determined during clotting in the temperature range between 15 and 45 degrees C. The rigidity of fibrin gel decreased with increasing clotting temperature, owing to the dissociation of cross-links. The rate constant of the dissociation of cross-links increased with increasing temperature. The rate constant of the cross-linking reaction increased and then decreased through a maximum with increasing temperature. It is explained by assuming that denaturation of fibrin occurs at high temperature. The irreversible denaturation becomes appreciable at high ionic strength. The activation energy and the enthalpy change for the cross-linking reaction of fibrin is about 35 and 15 kcal/mol, respectively. The enthalpy change for the reversible denaturation is about 46 kcal/mol.

摘要

在15至45摄氏度的温度范围内,测定了纤维蛋白原 - 凝血酶溶液在凝血过程中的动态刚性和损耗模量。由于交联键的解离,纤维蛋白凝胶的刚性随凝血温度的升高而降低。交联键解离的速率常数随温度升高而增加。交联反应的速率常数随温度升高先增加后通过最大值再降低。这是通过假设纤维蛋白在高温下发生变性来解释的。在高离子强度下,不可逆变性变得明显。纤维蛋白交联反应的活化能和焓变分别约为35千卡/摩尔和15千卡/摩尔。可逆变性的焓变约为46千卡/摩尔。

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