Cell Migration Driven by a Mechanical Stiffness Gradient

Juhee Hong, Jinseok Kim, Jeongeun Baek, M. Cha, Junghoon Lee, Sukho Park
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引用次数: 2

Abstract

This paper reports the migration of cells along the gradient of mechanical stiffness when the cells are cultured on a flexible substrate with variable rigidity. The thickness difference of PDMS layer was used to create a stiffness gradient between a stiff (7 mum) and a soft (2 mum) region. A fabrication process was developed to minimize the effect of other factors such as height difference and surface chemistry variation that can affect the pattern of cell migration. A cultured embryonic carcinoma cells on the flexible substrate coated with fibronectin, and observed that most of cells were accumulated on the stiffer region. Patterns in various shapes and sizes with stiffness difference were tested to investigate the migratory behavior of the cells. The results suggest that our approach provides a key technology to study the mechanism of cell migration by durotaxis.
机械刚度梯度驱动的细胞迁移
本文报道了当细胞在可变刚度的柔性基质上培养时,细胞沿机械刚度梯度的迁移。利用PDMS层的厚度差在硬区(7 μ m)和软区(2 μ m)之间产生刚度梯度。开发了一种制造工艺,以尽量减少其他因素的影响,如高度差和表面化学变化,可以影响细胞迁移的模式。在涂有纤维连接蛋白的柔性底物上培养胚胎癌细胞,观察到大部分细胞聚集在较硬的区域。测试了不同形状和大小的具有刚度差异的图案,以研究细胞的迁移行为。结果表明,我们的方法为研究细胞的硬趋向性迁移机制提供了关键技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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