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大鼠肝窦内皮细胞窗孔相关细胞骨架的结构与动力学

Structure and dynamics of the fenestrae-associated cytoskeleton of rat liver sinusoidal endothelial cells.

作者信息

Braet F, De Zanger R, Baekeland M, Crabbé E, Van Der Smissen P, Wisse E

机构信息

Laboratory for Cell Biology and Histology (VUB), Brussels, Belgium.

出版信息

Hepatology. 1995 Jan;21(1):180-9.

PMID:7806153
Abstract

This article describes the cytoskeleton associated with fenestrae and sieve plates of rat liver sinusoidal endothelial cells. Fenestrae control the exchange between the blood and parenchymal cells. We present evidence indicating that several agents that change the fenestrae and sieve plates also cause changes in the cytoskeleton. Cultured liver endothelial cells (LECs) were slightly fixed and treated with cytoskeleton extraction buffer. Detergent-extracted whole mounts of cultured cells were prepared for either scanning electron microscopy (SEM) or transmission electron microscopy (TEM). Extracted cells show an integral intricate cytoskeleton; sieve plates and fenestrae are delineated by cytoskeleton elements. Fenestrae are surrounded by a filamentous, fenestrae-associated cytoskeleton with a mean filament thickness of 16 nm. Sieve plates are surrounded and delineated by microtubuli, which form a network together with additional branching cytoskeletal elements. The addition of ethanol to cultured cells enlarged the diameter for these fenestrae-associated cytoskeleton rings by 5%, whereas serotonin treatment reduced the diameter by 20%. These observations indicate that the fenestrae-associated cytoskeleton probably changes the size of fenestrae after different treatments. After treatment with cytochalasin B the number of fenestrae increased. However, cytochalasin B did not change the structure of the fenestrae-associated cytoskeleton ring, but disperses the microtubuli. In conclusion, LECs have a cytoskeleton that defines and supports sieve plates and fenestrae. Fenestrae-associated cytoskeleton is a dynamic structure and plays a role in maintaining and regulating the size of fenestrae after different treatments. Therefore, the fenestrae-associated cytoskeleton controls the important hepatic function of endothelial filtration.

摘要

本文描述了大鼠肝窦内皮细胞窗孔和筛板相关的细胞骨架。窗孔控制着血液与实质细胞之间的物质交换。我们提供的证据表明,几种能改变窗孔和筛板的物质也会引起细胞骨架的变化。培养的肝内皮细胞(LECs)经轻度固定后,用细胞骨架提取缓冲液处理。制备经去污剂提取的培养细胞整装标本,用于扫描电子显微镜(SEM)或透射电子显微镜(TEM)观察。提取后的细胞显示出完整而复杂的细胞骨架;筛板和窗孔由细胞骨架成分勾勒出来。窗孔被丝状的、与窗孔相关的细胞骨架所包围,其平均丝厚度为16纳米。筛板被微管包围并勾勒出来,微管与其他分支的细胞骨架成分共同形成一个网络。向培养细胞中添加乙醇使这些与窗孔相关的细胞骨架环的直径增大了5%,而血清素处理则使其直径减小了20%。这些观察结果表明,与窗孔相关的细胞骨架在不同处理后可能会改变窗孔的大小。用细胞松弛素B处理后,窗孔数量增加。然而,细胞松弛素B并没有改变与窗孔相关的细胞骨架环的结构,但使微管分散。总之,肝内皮细胞具有一种细胞骨架,它界定并支撑着筛板和窗孔。与窗孔相关的细胞骨架是一种动态结构,在不同处理后对维持和调节窗孔大小起作用。因此,与窗孔相关的细胞骨架控制着内皮过滤这一重要的肝功能。

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