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贴壁细胞分裂过程中沟纹硬化的直接高分辨率测量。

Direct, high-resolution measurement of furrow stiffening during division of adherent cells.

作者信息

Matzke R, Jacobson K, Radmacher M

机构信息

Center for Nanoscience, Ludwig Maximilians Universität München, Amalienstrasse 54, D-80799 München, Germany.

出版信息

Nat Cell Biol. 2001 Jun;3(6):607-10. doi: 10.1038/35078583.

Abstract

It is unclear whether cell division is driven by cortical relaxation outside the equatorial region or cortical contractility within the developing furrow alone. To approach this question, a technique is required that can monitor spatially-resolved changes in cortical stiffness with good time resolution. We employed atomic force microscopy (AFM), in force-mapping mode, to track dynamic changes in the stiffness of the cortex of adherent cultured cells along a single scan-line during M phase, from metaphase to cytokinesis. Video microscopy, which we used to correlate the AFM data with mitotic events identified by light microscopy, indicated that the AFM force-mapping technique does not perturb dividing cells. Here we show that cortical stiffening occurs over the equatorial region about 160 seconds before any furrow appears, and that this stiffening markedly increases as the furrow starts. By contrast, polar relaxation of cells does not seem to be an obligatory event for cell division to occur.

摘要

尚不清楚细胞分裂是由赤道区域外的皮质松弛驱动,还是仅由发育中的沟内的皮质收缩力驱动。为了解决这个问题,需要一种能够以良好的时间分辨率监测皮质硬度空间分辨变化的技术。我们采用原子力显微镜(AFM)的力映射模式,在M期(从中期到胞质分裂)沿着单条扫描线跟踪贴壁培养细胞皮质硬度的动态变化。我们使用视频显微镜将AFM数据与通过光学显微镜识别的有丝分裂事件相关联,结果表明AFM力映射技术不会干扰分裂细胞。在这里,我们表明皮质硬化在任何沟出现前约160秒在赤道区域发生,并且随着沟的开始,这种硬化明显增加。相比之下,细胞的极性松弛似乎不是细胞分裂发生的必要事件。

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