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模拟低重力条件下单核细胞的细胞骨架变化及运动能力受损

Cytoskeleton changes and impaired motility of monocytes at modelled low gravity.

作者信息

Meloni M A, Galleri G, Pippia P, Cogoli-Greuter M

机构信息

Dipartimento di Scienze Fisiologiche, Biochimiche e Cellulari, Universita di Sassari, Sassari, Italy.

出版信息

Protoplasma. 2006 Dec;229(2-4):243-9. doi: 10.1007/s00709-006-0210-2. Epub 2006 Dec 16.

Abstract

Investigations performed in space have shown that gravity changes affect important cellular mechanisms like proliferation, differentiation, genetic expression, cytoskeletal architecture, and motility in lymphocytes, monocytes, and other mammalian cells. In particular, a dramatic depression of the mitogenic in vitro activation of human peripheral blood lymphocytes was observed at low gravity. The hypothesis of the present work is that a reduced interaction between T lymphocytes and monocytes, essential for the second signalling pathway, might be one of the reasons for the observed depression of the in vitro activation of human lymphocytes. Cell motility and with it a continuous rearrangement of the cytoskeletal network within the cell is essential for cell-to-cell contacts. Whereas nonactivated lymphocytes in suspension are highly motile at low gravity, no data are available so far on the motility of adherent monocytes. It thus can be argued that impaired monocyte locomotion and cytoskeletal changes could be responsible for a reduced interaction of monocytes with T lymphocytes. In this study, the locomotion ability of J-111 cells, an adherent monocyte cell line, attached to colloidal gold particles on coverslips and exposed to modelled low gravity in the random positioning machine was found to be severely reduced compared with that of controls and the structures of actin, tubulin, and vinculin were affected.

摘要

在太空进行的研究表明,重力变化会影响重要的细胞机制,如淋巴细胞、单核细胞和其他哺乳动物细胞的增殖、分化、基因表达、细胞骨架结构及运动性。特别是,在低重力条件下观察到人类外周血淋巴细胞的体外有丝分裂激活显著降低。本研究的假设是,对于第二信号通路至关重要的T淋巴细胞与单核细胞之间相互作用的减少,可能是观察到的人类淋巴细胞体外激活降低的原因之一。细胞运动以及随之而来的细胞内细胞骨架网络的持续重排对于细胞间接触至关重要。悬浮状态下未激活的淋巴细胞在低重力条件下具有高度运动性,但目前尚无关于贴壁单核细胞运动性的数据。因此可以认为,单核细胞运动受损和细胞骨架变化可能导致单核细胞与T淋巴细胞之间的相互作用减少。在本研究中,发现贴壁单核细胞系J-111细胞附着于盖玻片上的胶体金颗粒并在随机定位机中暴露于模拟低重力环境时,其运动能力与对照组相比严重降低,并且肌动蛋白、微管蛋白和纽蛋白的结构受到影响。

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