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适应太空飞行或头低位倾斜的大鼠脉络膜细胞顶端组织的变化。

Changes in apical organization of choroidal cells in rats adapted to spaceflight or head-down tilt.

作者信息

Gabrion J, Maurel D, Clavel B, Davet J, Fareh J, Herbuté S, O'Mara K, Gharib C, Hinds W, Krasnov I, Guell A

机构信息

Dynamique Moléculaire des Interactions Membranaires, URA CNRS 1856, Université de Montpellier II, France.

出版信息

Brain Res. 1996 Sep 23;734(1-2):301-15.

PMID:8896838
Abstract

Structural changes observed in choroid plexuses from rats dissected aboard a space shuttle, on day 13 of an orbital flight (NASA STS-58 mission, SLS-2 Experiments) demonstrated that choroidal epithelial cells display a modified organization in a microgravitational environment. Results were compared with ultrastructural observations of choroid plexus from rats maintained under anti-orthostatic restraint (head-down tilt) for 14 days. In both experiment types, the main alterations observed by transmission electron microscopy, at the level of choroidal epithelial cells from the third and fourth ventricles, concerned the formation and the organization of apical microvilli, whereas pseudopod-like structures appeared. Immunocytochemical distribution of ezrin, a cytoskeletal protein involved in apical cell differentiation in choroid plexus, confirmed the structural alteration of microvilli in head-down tilted rats, Kinocilia tended to disappear from the apical surface, suggesting a partial loss of cell polarization. In addition, large amounts of clear vesicles were gathered in the apical cytoplasm of choroidal epithelial cells. Disorganization of apical microvilli accumulations of apical vesicles and partial loss of cell polarity showed that long-stays in weightlessness induced alterations in the fine structure of choroid plexus, consistent with a marked reduction of cerebrospinal fluid production.

摘要

在航天飞机上解剖的大鼠脉络丛中观察到的结构变化,在轨道飞行的第13天(美国国家航空航天局STS - 58任务,SLS - 2实验)表明,脉络丛上皮细胞在微重力环境中呈现出组织结构的改变。将结果与在反立位约束(头低位倾斜)下维持14天的大鼠脉络丛的超微结构观察结果进行了比较。在这两种实验类型中,通过透射电子显微镜在第三和第四脑室脉络丛上皮细胞水平观察到的主要变化涉及顶端微绒毛的形成和组织,同时出现了伪足样结构。埃兹蛋白(一种参与脉络丛顶端细胞分化的细胞骨架蛋白)的免疫细胞化学分布证实了头低位倾斜大鼠微绒毛的结构改变,动纤毛倾向于从顶端表面消失,表明细胞极性部分丧失。此外,大量透明小泡聚集在脉络丛上皮细胞的顶端细胞质中。顶端微绒毛的紊乱、顶端小泡的聚集以及细胞极性的部分丧失表明,长期处于失重状态会导致脉络丛精细结构的改变,这与脑脊液生成的显著减少是一致的。

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