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[从细胞动力学角度研究支持细胞修复柯蒂器的机制——注射对硫磷致耳蜗柯蒂器支持细胞核DNA合成的研究]

[Study of the mechanism of supporting cells repairing the organ of Corti in terms of cell kinetics--nuclear DNA synthesis of supporting cell of the organ of Corti in the cochlea damaged by nitromin administration].

作者信息

Murakami M

机构信息

Department of Otolaryngology, Kyoto Prefectural University of Medicine.

出版信息

Nihon Jibiinkoka Gakkai Kaiho. 1991 Mar;94(3):386-95. doi: 10.3950/jibiinkoka.94.386.

Abstract

3H-thymidine autoradiography in vivo was carried out on normal mature mice, whose organs of Corti were securely damaged by Nitrogen Mustard-N-oxide (nitromin). The cell kinetics of supporting cells of the organ of Corti were examined and relation between these changes and mechanisms of supporting cells to maintain the organ of Corti was discussed in this paper. A few grains in various kinds of supporting cells in S stage, which were not found in control mice without nitromin injection, were discovered. Those were detected in Hensen's cell, Deiters' cell, Claudius' cells, and inner phalangeal cell. Mitosis was seen in one Claudius' cell in addition. Therefore some supporting cells seem to be able to synthesize DNA and proliferate in the acutely damaged organ of Corti even in mature cochlea and those in G0 stage begin to go around cell cycle as occasion demands. Although labelled supporting cells decreased over time, the portion of supporting cell is likely to change in proportion as the extension of damage in the organ of Corti. If this new dynamic change of cell kinetics in the acutely damaged organ of Corti means the reaction to repair the organ of Corti, the supporting cells seem to have a reasonable role to maintain the organ of Corti including repairment of reticular lamina.

摘要

对正常成熟小鼠进行体内³H-胸腺嘧啶核苷放射自显影,其柯蒂氏器被氮芥-N-氧化物(癌得命)严重损伤。本文研究了柯蒂氏器支持细胞的细胞动力学,并探讨了这些变化与支持细胞维持柯蒂氏器机制之间的关系。在未注射癌得命的对照小鼠中未发现的处于S期的各类支持细胞中有少量银粒被发现。这些银粒在亨森氏细胞、代特氏细胞、克劳迪氏细胞和内指细胞中被检测到。此外,在一个克劳迪氏细胞中还观察到了有丝分裂。因此,即使在成熟的耳蜗中,一些支持细胞似乎也能够在急性损伤的柯蒂氏器中合成DNA并增殖,那些处于G0期的支持细胞会根据需要开始进入细胞周期。尽管标记的支持细胞随时间减少,但随着柯蒂氏器损伤范围的扩大,支持细胞的比例可能会相应改变。如果柯蒂氏器急性损伤时这种新的细胞动力学动态变化意味着对柯蒂氏器的修复反应,那么支持细胞似乎在维持柯蒂氏器包括修复网状板方面具有合理的作用。

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