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前庭感觉上皮的细胞骨架组织

Cytoskeletal organization of the vestibular sensory epithelia.

作者信息

Takumida M, Miyawaki H, Harada Y

机构信息

Department of Otolaryngology, Hiroshima University School of Medicine, Japan.

出版信息

Acta Otolaryngol Suppl. 1995;519:66-70. doi: 10.3109/00016489509121872.

Abstract

The cytoskeletal organization of the guinea pig vestibular sensory epithelium was investigated by employing the saponin perfusion method and scanning electron microscopy. The skeletal framework of a a cell was found to consist of actin, intermediate filaments and microtubules. The membrane-bound organelles such as nucleus, mitochondria, endoplasmic reticulum, Golgi apparatus, etc. were also well documented. This made it possible to investigate the three-dimensional organization of cytoskeletons as well as their complex interaction with various membrane-bound organelles. The intermediate filaments were demonstrated not only in the supporting cells but also in the sensory cells. They are usually seen surrounding the nucleus and extending through the cytoplasm which connects the nuclear membrane to the plasma membrane, cuticular plate, reticular lamina or other cyto-organelles. The intermediate filaments are also closely related to the desmosomes. These findings suggest that the intermediate filaments provide mechanical support to the cell and its nucleus. In the sensory cells, microtubules are found mainly in the supranuclear portion of the cells, running parallel to the main axis of the cell body, which is directly connected to the cuticular plate. These findings suggest that the microtubules provide the cell with mechanical support and may be closely related to the sensory cell transduction system. Inside the supporting cells, the microtubules are closely related to the secretory granules, Golgi apparatus and intermediate filaments, which supports the idea that the microtubules may control the distribution of intermediate filaments, and also play an important role for transport of the secretory granules.

摘要

采用皂素灌注法和扫描电子显微镜对豚鼠前庭感觉上皮的细胞骨架组织进行了研究。发现细胞的骨架框架由肌动蛋白、中间丝和微管组成。还对细胞核、线粒体、内质网、高尔基体等膜结合细胞器进行了详细记录。这使得研究细胞骨架的三维组织及其与各种膜结合细胞器的复杂相互作用成为可能。中间丝不仅在支持细胞中可见,在感觉细胞中也可见。它们通常围绕细胞核,延伸穿过将核膜与质膜、角质板、网状板或其他细胞器相连的细胞质。中间丝也与桥粒密切相关。这些发现表明中间丝为细胞及其细胞核提供了机械支持。在感觉细胞中,微管主要存在于细胞的核上部分,与细胞体的主轴平行,直接与角质板相连。这些发现表明微管为细胞提供了机械支持,可能与感觉细胞转导系统密切相关。在支持细胞内,微管与分泌颗粒、高尔基体和中间丝密切相关,这支持了微管可能控制中间丝分布的观点,并在分泌颗粒的运输中也起着重要作用。

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