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微管稳定剂对血小板结构生理学的影响。

Influence of a microtubule stabilizing agent on platelet structural physiology.

作者信息

White J G, Rao G H

出版信息

Am J Pathol. 1983 Aug;112(2):207-17.

Abstract

Unstimulated blood platelets have a characteristic discoid form supported by a circumferential band of microtubules. After exposure to aggregating agents, platelets lose their lentiform shape and become irregularly convoluted, with many pseudopods. The changes in surface contour are associated with a process of internal transformation. Randomly dispersed granules are concentrated in cell centers and enclosed within tight-fitting rings of microtubules and microfilaments. The mechanism involved in the shift of circumferential microtubules into rings encircling clumped granules is uncertain. Recent studies have suggested that microtubules are disassembled shortly after stimulation and reassemble in new locations a few minutes later. Taxol, a microtubule stabilizing agent, has been used in the present study to evaluate the disassembly-reassembly hypothesis of internal transformation in activated platelets. Stabilization of microtubules by taxol did not injure platelet biochemistry or structure. Concentrations of taxol that protected platelet microtubules from dissociation by cold or vincristine did not inhibit platelet shape change, pseudopod formation, internal transformation, secretion, aggregation, or clot retraction. The number of microtubules wrapped around centrally clumped granules, present in pseudopods or spread through the cytoplasm, was equal to or greater than that found in untreated platelets following activation and aggregation. Though it is possible that microtubules dissolve in platelets following activation, the results of this study demonstrate that such an event is not essential for any aspect of the physiologic response of platelets in hemostasis.

摘要

未受刺激的血小板呈特征性的盘状,由一圈微管支撑。在接触聚集剂后,血小板失去其双凸透镜形状,变得不规则卷曲,有许多伪足。表面轮廓的变化与内部转化过程相关。随机分散的颗粒集中在细胞中心,并被紧密排列的微管和微丝环包围。外周微管转变为围绕聚集颗粒的环所涉及的机制尚不清楚。最近的研究表明,微管在刺激后不久就会解体,几分钟后在新的位置重新组装。紫杉醇是一种微管稳定剂,在本研究中被用于评估活化血小板内部转化的解体-重新组装假说。紫杉醇对微管的稳定作用不会损害血小板的生物化学或结构。能保护血小板微管不被低温或长春新碱解离的紫杉醇浓度,不会抑制血小板形状改变、伪足形成、内部转化、分泌、聚集或血块回缩。在伪足中或散布在细胞质中的围绕中央聚集颗粒的微管数量,等于或大于活化和聚集后未处理血小板中的微管数量。虽然激活后微管可能在血小板中溶解,但本研究结果表明,这样的事件对于血小板在止血过程中的生理反应的任何方面都不是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e76/1916265/b66ed7206c40/amjpathol00191-0082-a.jpg

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