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在琼脂糖中培养的分离软骨细胞亚群内细胞骨架组织的共聚焦分析。

Confocal analysis of cytoskeletal organisation within isolated chondrocyte sub-populations cultured in agarose.

作者信息

Idowu B D, Knight M M, Bader D L, Lee D A

机构信息

IRC in Biomedical Materials, Institute of Orthopaedics, University College London Medical School, Stanmore, Middlesex, UK.

出版信息

Histochem J. 2000 Mar;32(3):165-74. doi: 10.1023/a:1004095207330.

Abstract

This study reports the cytoskeletal organisation within chondrocytes, isolated from the superficial and deep zones of articular cartilage and seeded into agarose constructs. At day 0, marked organisation of actin microfilaments was not observed in cells from both zones. Partial or clearly organised microtubules and vimentin intermediate filaments cytoskeletal components were present, however, in a proportion of cells. Staining for microtubules and vimentin intermediate filaments was less marked after 1 day in culture however than on initial seeding. For all three cytoskeletal components there was a dramatic increase in organisation between days 3 and 14 and, in general, organisation was greater within deep zone cells. Clear organisation for actin microfilaments was characterised by a cortical network and punctate staining around the periphery of the cell, while microtubules and vimentin intermediate filaments formed an extensive fibrous network. Cytoskeletal organisation within chondrocytes in agarose appears, therefore, to be broadly similar to that described in situ. Variations in the organisation of actin microfilaments between chondrocytes cultured in agarose and in monolayer are consistent with a role in phenotypic modulation. Vimentin intermediate filaments and microtubules form a link between the plasma membrane and the nucleus and may play a role in the mechanotransduction process.

摘要

本研究报告了从关节软骨表层和深层分离并接种到琼脂糖构建体中的软骨细胞内的细胞骨架组织。在第0天,未在两个区域的细胞中观察到肌动蛋白微丝的明显组织。然而,一部分细胞中存在部分或明显组织化的微管和波形蛋白中间丝细胞骨架成分。然而,培养1天后微管和波形蛋白中间丝的染色不如初始接种时明显。对于所有三种细胞骨架成分,在第3天至第14天之间组织化显著增加,并且总体而言,深层区域细胞内的组织化程度更高。肌动蛋白微丝的明显组织化表现为细胞周边的皮质网络和点状染色,而微管和波形蛋白中间丝形成广泛的纤维网络。因此,琼脂糖中软骨细胞内的细胞骨架组织似乎与原位描述的大致相似。在琼脂糖中培养的软骨细胞与单层培养的软骨细胞之间肌动蛋白微丝组织化的差异与表型调节中的作用一致。波形蛋白中间丝和微管在质膜和细胞核之间形成联系,并可能在机械转导过程中发挥作用。

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