Department of System Design Engineering, Keio University, 3-14-1 Hiyoshi, Kohoku, Yokohama, Kanagawa, 223-8522, Japan.
Anal Sci. 2020 Aug 10;36(8):1015-1019. doi: 10.2116/analsci.20A001. Epub 2020 Mar 20.
We report on a novel microdevice to tune the curvature of a cell-adhering surface by controlling the air-pressure and micro-slit. Human aortic smooth muscle cells were cultured on demi-cylindrical concaves formed on a microdevice. Their shape-adapting behavior could be tracked when the groove direction was changed to the orthogonal direction. This microdevice demonstrated live observation of cells responding to dynamic changes of the anisotropic curvature of the adhering surface and could serve as a new platform to pursue mechanobiology on curved surfaces.
我们报告了一种新型微器件,通过控制气压和微缝隙来调节细胞附着表面的曲率。在微器件上形成的半圆形凹痕上培养人主动脉平滑肌细胞,当凹槽方向改变为正交方向时,可以跟踪它们的形状适应行为。该微器件演示了对附着表面各向异性曲率的动态变化的细胞响应的实时观察,并可用作研究曲面力学的新平台。