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脱颗粒血小板中膜卷曲的起源。正常血小板与“灰色”血小板的比较研究。

The origin of the membrane convolute in degranulating platelets. A comparative study of normal and "gray" platelets.

作者信息

Morgenstern E, Patscheke H, Mathieu G

机构信息

Universität des Saarlandes, Homoburg/Saar, Federal Republic of Germany.

出版信息

Blut. 1990 Jan;60(1):15-22. doi: 10.1007/BF01720197.

Abstract

Thrombin-stimulated normal platelets contain a membrane system of dilated channels with openings to the exterior. Whether these membranes originate from the surface connected system (SCS), the alpha-granules or internalized portions of the plasmalemma has not yet been defined. The present study traces in series of ultrathin sections the rearrangement of these membranes during shape change, degranulation and internalization of surface membranes in washed normal and "gray" platelets upon the stimulation with thrombin (1 IU/ml). Cationized ferritin (CF) was used as a surface marker in order to recognize internalized portions of the plasmalemma. Within the first seconds after stimulation, both normal and gray platelets changed their shape by extrusion of the SCS membranes. Simultaneously they started to internalize surface membrane and formed surface membrane invaginations closely attached to the outer rim of the cytoskeletal sphere which developed during the internal contraction. CF was internalized in these invaginations. CF was not observed within the system of dilated channels of stimulated platelets, however. Thrombin-stimulated gray platelets showed a markedly reduced number of dilated channels or none at all. This observation may be due to the fact "gray" platelets are deficient in alpha-granules. It is concluded that the dilated system of membranes in degranulated normal platelets originates from membranes of the alpha-granules which have performed compound exocytosis.

摘要

凝血酶刺激的正常血小板含有扩张通道的膜系统,这些通道向外开口。这些膜是源自表面连接系统(SCS)、α-颗粒还是质膜的内化部分,目前尚未明确。本研究通过一系列超薄切片追踪了在1 IU/ml凝血酶刺激下,洗涤后的正常血小板和“灰色”血小板在形状改变、脱颗粒以及表面膜内化过程中这些膜的重排情况。使用阳离子铁蛋白(CF)作为表面标记物,以识别质膜的内化部分。在刺激后的最初几秒内,正常血小板和灰色血小板都通过挤出SCS膜来改变形状。同时,它们开始内化表面膜,并形成紧密附着在内部收缩过程中形成的细胞骨架球外缘的表面膜内陷。CF被内化到这些内陷中。然而,在刺激血小板的扩张通道系统内未观察到CF。凝血酶刺激的灰色血小板显示扩张通道的数量明显减少或根本没有。这一观察结果可能是由于“灰色”血小板缺乏α-颗粒。得出的结论是,脱颗粒正常血小板中的扩张膜系统源自已经进行复合胞吐作用的α-颗粒的膜。

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