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肌母细胞的特征尺寸动态接触引导和基底形貌的可逆切换:细胞形状、取向和肌动蛋白细胞骨架的向列有序性的协调。

Dynamic Contact Guidance of Myoblasts by Feature Size and Reversible Switching of Substrate Topography: Orchestration of Cell Shape, Orientation, and Nematic Ordering of Actin Cytoskeletons.

机构信息

Physical Chemistry of Biosystems, Institute of Physical Chemistry , Heidelberg University , D69120 Heidelberg , Germany.

Department of Material Engineering Science, Graduate School of Engineering Science , Osaka University , 560-8531 Osaka , Japan.

出版信息

Langmuir. 2019 Jun 11;35(23):7538-7551. doi: 10.1021/acs.langmuir.8b02972. Epub 2018 Nov 8.

Abstract

Biological cells in tissues alter their shapes, positions, and orientations in response to dynamic changes in their physical microenvironments. Here, we investigated the dynamic response of myoblast cells by fabricating substrates displaying microwrinkles that can reversibly change their direction within 60 s by axial compression and relaxation. To quantitatively assess the collective order of cells, we introduced the nematic order parameter of cells that takes not only the distribution of cell-wrinkle angles but also the degree of cell elongation into account. On the subcellular level, we also calculated the nematic order parameter of actin cytoskeletons that takes the rearrangement of actin filaments into consideration. The results obtained on substrates with different wrinkle wavelengths implied the presence of a characteristic wavelength beyond which the order parameters of both cells and actin cytoskeletons level off. Immunofluorescence labeling of vinculin showed that the focal adhesions were all concentrated on the peaks of wrinkles when the wavelength is below the characteristic value. On the other hand, we found focal adhesions on both the peaks and the troughs of wrinkles when the wavelength exceeds the characteristic level. The emergence of collective ordering of cytoskeletons and the adaptation of cell shapes and orientations were monitored by live cell imaging after the seeding of cells from suspensions. After the cells had reached the steady state, the orientation of wrinkles was abruptly changed by 90°. The dynamic response of myoblasts to the drastic change in surface topography was monitored, demonstrating the coordination of the shape and orientation of cells and the nematic ordering of actin cytoskeletons. The "dynamic" substrates established in this study can be used as a powerful tool in mechanobiology that helps us understand how cytoskeletons, cells, and cell ensembles respond to dynamic contact guidance cues.

摘要

组织中的生物细胞会根据其物理微环境的动态变化改变其形状、位置和方向。在这里,我们通过制造显示微皱纹的基底来研究成肌细胞的动态响应,这些微皱纹可以通过轴向压缩和松弛在 60 秒内可逆地改变其方向。为了定量评估细胞的集体有序性,我们引入了细胞的向列有序参数,该参数不仅考虑了细胞-皱纹角度的分布,还考虑了细胞伸长的程度。在亚细胞水平上,我们还计算了考虑到肌动蛋白丝重排的肌动蛋白细胞骨架的向列有序参数。在具有不同皱纹波长的基底上获得的结果表明,存在一个特征波长,超过该波长后,细胞和肌动蛋白细胞骨架的有序参数趋于平稳。使用 vinculin 的免疫荧光标记显示,当波长低于特征值时,所有的粘着斑都集中在皱纹的峰上。另一方面,当波长超过特征值时,我们发现粘着斑出现在皱纹的峰和谷上。在细胞从悬浮液中接种后,通过活细胞成像监测细胞骨架的集体有序出现和细胞形状和取向的适应。当细胞达到稳定状态后,突然将皱纹的取向改变 90°。监测成肌细胞对表面形貌剧烈变化的动态响应,展示了细胞形状和取向以及肌动蛋白细胞骨架的向列有序的协调。本研究中建立的“动态”基底可以作为机械生物学的有力工具,帮助我们了解细胞骨架、细胞和细胞集合如何响应动态接触导向线索。

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