Yeh Chuan-Feng, Tai Wei, Lin Ching-Hui, Juang Duane S, Wu Chia-Che, Chen Ya-Wen, Hsu Chia-Hsien
IEEE Trans Nanobioscience. 2015 Dec;14(8):835-40. doi: 10.1109/TNB.2015.2455537. Epub 2015 Sep 25.
In vitro cell motility assays are frequently used in the study of cell migration in response to anti-cancer drug treatment. Microfluidic systems represent a unique tool for the in vitro analysis of cell motility. However, they usually rely on using time-lapse microscopy to record the spatial temporal locations of the individual cells being tested. This has created a bottleneck for microfluidic systems to perform high-throughput experiments due to requirement of a costly time-lapse microscopy system. Here, we describe the development of a portable microfluidic device for endpoint analysis of cell motility. The reported device incorporates a cell alignment feature to position the seeded cells on the same initial location, so that the cells' motilities can be analyzed based on their locations at the end of the experiment after the cells have migrated. We show that the device was able to assess cancer cell motility after treatment with a migration inhibitory drug Indole-3-carbinol on MDA-MB-231 breast cancer cells, demonstrating the applicability of our device in screening anti-cancer drug compounds on cancer cells.
体外细胞运动分析常用于研究细胞对抗癌药物治疗的迁移反应。微流控系统是用于体外分析细胞运动的独特工具。然而,它们通常依赖于使用延时显微镜来记录被测试单个细胞的时空位置。由于需要昂贵的延时显微镜系统,这为微流控系统进行高通量实验造成了瓶颈。在此,我们描述了一种用于细胞运动终点分析的便携式微流控装置的开发。所报道的装置具有细胞排列功能,可将接种的细胞定位在相同的初始位置,从而在细胞迁移后,根据实验结束时细胞的位置来分析细胞的运动性。我们表明,在用迁移抑制药物吲哚 - 3 - 甲醇处理MDA - MB - 231乳腺癌细胞后,该装置能够评估癌细胞的运动性,证明了我们的装置在筛选抗癌药物化合物对癌细胞作用方面的适用性。