Enomoto Umi, Imashiro Chikahiro, Takemura Kenjiro
School of Science for Open and Environmental Systems Graduate School of Science and Technology Keio University Yokohama Kanagawa Japan.
Department of Mechanical Engineering Keio University Yokohama Kanagawa Japan.
Eng Life Sci. 2020 Jul 19;20(9-10):402-411. doi: 10.1002/elsc.202000013. eCollection 2020 Sep.
Regulating the collective migration of cells is an important issue in bioengineering. Enhancing or suppressing cell migration and controlling the migration direction is useful for various physiological phenomena such as wound healing. Several methods of migration regulation based on different mechanical stimuli have been reported. While vibrational stimuli, such as sound waves, show promise for regulating migration, the effect of the vibration direction on collective cell migration has not been studied in depth. Therefore, we fabricated a vibrating system that can apply horizontal vibration to a cell culture dish. Here, we evaluated the effect of the vibration direction on the collective migration of fibroblasts in a wound model comprising two culture areas separated by a gap. Results showed that the vibration direction affects the cell migration distance: vibration orthogonal to the gap enhances the collective cell migration distance while vibration parallel to the gap suppresses it. Results also showed that conditions leading to enhanced migration distance were also associated with elevated glucose consumption. Furthermore, under conditions promoting cell migration, the cell nuclei become elongated and oriented orthogonal to the gap. In contrast, under conditions that reduce the migration distance, cell nuclei were oriented to the direction parallel to the gap.
调控细胞的集体迁移是生物工程中的一个重要问题。增强或抑制细胞迁移以及控制迁移方向对于诸如伤口愈合等各种生理现象是有用的。已经报道了几种基于不同机械刺激的迁移调控方法。虽然诸如声波等振动刺激在调控迁移方面显示出前景,但振动方向对集体细胞迁移的影响尚未得到深入研究。因此,我们制造了一种能够对细胞培养皿施加水平振动的振动系统。在此,我们在由间隙分隔的两个培养区域组成的伤口模型中评估了振动方向对成纤维细胞集体迁移的影响。结果表明,振动方向影响细胞迁移距离:与间隙正交的振动增强集体细胞迁移距离,而与间隙平行的振动则抑制它。结果还表明,导致迁移距离增加的条件也与葡萄糖消耗增加有关。此外,在促进细胞迁移的条件下,细胞核变长并与间隙正交排列。相反,在减少迁移距离的条件下,细胞核沿与间隙平行的方向排列。