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悬浮状态及流动条件下血小板与纤维蛋白的相互作用

Platelet-fibrin interaction in the suspension and under flow conditions.

作者信息

Jen C J, Hu S J, Wu H J, Lin T S, Mao C W

机构信息

Department of Physiology, National Cheng-Kung University, Tainan, Taiwan, ROC.

出版信息

Adv Exp Med Biol. 1990;281:277-85. doi: 10.1007/978-1-4615-3806-6_29.

Abstract

Interactions between platelets and fibrin are important in hemostasis but often confused with platelet-fibrinogen interactions. A stirred mixture of solubilized fibrin and washed platelets at neutral pH range showed drastic reduction in turbidity and concomitant platelet adhesion onto newly formed fibrin strands. This platelet-fibrin interaction did not require platelet activation nor did it cause platelet aggregation. A device consisting of a parallel-plate flow chamber mounted on a fluorescence microscope has been constructed to allow direct visualization and recording of platelet-fibrin interaction under flow conditions. Platelets in whole blood adhered to the fibrin-coated portion but not to the uncoated portion of the flow chamber. Slow motion playback of video tapes indicated that the adhesion phenomenon was a dynamic process that involved attaching, detaching, relocation and transient contact. The fibrin coating influenced platelet adhesion both by increasing the number of cells making short-term attachments to the surface and by increasing the duration of cells attached to the surface. These observations provided basic characteristics of platelet-fibrin interaction.

摘要

血小板与纤维蛋白之间的相互作用在止血过程中很重要,但常与血小板-纤维蛋白原相互作用相混淆。在中性pH范围内,将溶解的纤维蛋白与洗涤过的血小板搅拌混合,会使浊度急剧降低,并使血小板附着在新形成的纤维蛋白链上。这种血小板-纤维蛋白相互作用既不需要血小板激活,也不会导致血小板聚集。已构建了一种由安装在荧光显微镜上的平行板流动腔组成的装置,以便在流动条件下直接观察和记录血小板-纤维蛋白相互作用。全血中的血小板附着在流动腔的纤维蛋白包被部分,而不附着在未包被部分。录像带的慢动作回放表明,粘附现象是一个动态过程,涉及附着、分离、重新定位和短暂接触。纤维蛋白包被通过增加与表面进行短期附着的细胞数量以及增加细胞附着在表面的持续时间来影响血小板粘附。这些观察结果提供了血小板-纤维蛋白相互作用的基本特征。

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