乙醛固定引起血小板胞吸过程中的膜囊泡:一项冷冻替代研究。

Scanning microscopy. Supplement Pub Date : 1991-01-01
E Morgenstern
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引用次数: 0

摘要

尽管有大量关于胞吐作用释放分泌颗粒的超微结构的报道,但受刺激的血小板释放凝血活性仍然归因于膜囊泡。膜囊泡和髓鞘图形的形成已被证明是戊二醛GA固定的产物。通过直接锇或快速冷冻固定的细胞没有这种结构。然而,快速冷冻是否会干扰囊化过程仍存在疑问。本研究通过检验:(1)冷冻和冷冻取代是否会影响膜囊泡,(2)多聚甲醛固定是否也会引起这种现象,以及(3)醛浓度是否有影响,来解决这一问题。在冲击冷冻和冷冻替代之前进行醛固定。在凝血酶刺激的血小板中,发现膜囊泡和髓鞘图。戊二醛诱导多泡结构,多聚甲醛或低醛浓度仅在血小板表面起泡。膜囊泡与细胞质基质连续。未受刺激的血小板未出现囊泡或髓鞘图。不加醛固定的对照样品显示,颗粒与质膜融合,而不是膜囊泡,或复合颗粒代替髓磷脂图。这证实了膜囊泡和髓鞘图形的形成是由醛类在膜内经历快速结构变化时阻止脂质流动性失败引起的人工产物。尽管血小板中膜囊泡和髓磷脂的出现表明在醛固定的时刻发生了胞吐过程,但在醛固定的血小板中发现膜囊泡并不表明是一种单独的胞吐类型。
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Aldehyde fixation causes membrane vesiculation during platelet exocytosis: a freeze-substitution study.

Despite a plethora of reports on the ultrastructure of secretory granule release by exocytosis, the release of coagulant activity from stimulated platelets is still being attributed to membrane vesiculation. Membrane vesiculation and the formation of myelin figures have been shown to be artifacts of glutaraldehyde GA fixation. Cells fixed by direct osmium or rapid freezing are free of such structures. Yet there is still doubt that rapid freezing interferes with vesiculation process. This study has addressed this issue by examining: (1) whether freezing and freeze-substitution affects membrane vesiculation, (2) whether paraformaldehyde-fixation also induces the phenomenon, and (3) whether the aldehyde concentration is of influence. Aldehyde fixation was carried out prior to impact freezing and freeze-substitution. In thrombin-stimulated platelets, membrane vesiculation and myelin figures were found. Glutaraldehyde induced multivesicular structures, paraformaldehyde or low aldehyde concentrations only blebs on the platelet surface. The membrane vesicles were in continuity with the cytoplasmic matrix. Unstimulated platelets did not show vesiculation or myelin figures. Control samples, without aldehyde fixation, showed instead of membrane vesiculation, granule fusion with the plasmalemma, or, instead of myelin figures, compound granules. This confirms that membrane vesiculation and the formation of myelin figures are artifacts induced by the failure of aldehydes to arrest lipid mobility within membranes undergoing rapid changes in structure. Although the presence of membrane vesiculation and myelin figures in platelets indicates that exocytotic processes were occurring at the moment of aldehyde fixation, the finding of membrane vesiculation in aldehyde-fixed platelets does not indicate a separate type of exocytosis.

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