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血小板从悬浮液黏附到各种底物的动力学和热力学方面。

Kinetic and thermodynamic aspects of platelet adhesion from suspension to various substrates.

作者信息

Neumann A W, Hum O S, Francis D W, Zingg W, van Oss C J

出版信息

J Biomed Mater Res. 1980 Jul;14(4):499-509. doi: 10.1002/jbm.820140416.

Abstract

Kinetics of platelet adhesion from suspension to various substrates leads to Langmuir isotherm types of curves, both for suspensions in which the platelets were isolated by means of gel filtration as well as by centrifuging and washing. The level of platelet adhesion increases with increasing surface tension of the substrate. These results cannot be explained on the basis of the theoretical transport model of Ruckenstein et al. The plot of the platelet adhesion at equilibrium vs. gamma SV brings the observations in yet closer agreement with thermodynamic predictions based on free energy calculations than was found previously for the adhesion of platelets after short contact times between platelet suspension and substrate.

摘要

血小板从悬浮液黏附到各种底物的动力学导致了朗缪尔等温线类型的曲线,这对于通过凝胶过滤以及离心和洗涤分离血小板的悬浮液都是如此。血小板黏附水平随底物表面张力的增加而升高。这些结果无法根据鲁肯斯坦等人的理论传输模型来解释。与血小板悬浮液和底物短接触时间后血小板黏附情况相比,平衡时血小板黏附与γSV的关系图使这些观察结果与基于自由能计算的热力学预测更为接近。

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