Department of Mechanical Engineering and Advanced Institute of Manufacturing for High-tech Innovations, National Chung Cheng University, Chia Yi 62102, Taiwan.
Biomicrofluidics. 2011 Sep;5(3):34101-3410110. doi: 10.1063/1.3609263. Epub 2011 Jul 18.
The ability to concentrate biological cells, such as circulating tumor cells, circulating fetal cells, and stem cells, is an important issue in medical diagnostics and characterization. The present study develops a handheld device capable of effectively preconcentrating cancerous cells. Circular microelectrodes were designed to generate a stepping electric field by switching the electric field to an adjacent electrode pair by relays. Cancerous cells with a positive dielectrophoretic response are guided toward the center of the circular microelectrodes due to the region of high electric field between the adjacent electrodes being gradually decreased in the direction of the stepping electric field. Numerical simulations of the electric fields were performed to demonstrate the concept of the proposed design. The preconcentration of HeLa cells, which are a human cervical carcinoma cell line, was achieved in 160 s with an efficiency of around 76%, with an applied peak-to-peak voltage of 16 V at a frequency of 1 MHz.
集中生物细胞(如循环肿瘤细胞、循环胎儿细胞和干细胞)的能力是医学诊断和特征描述中的一个重要问题。本研究开发了一种能够有效浓缩癌细胞的手持设备。圆形微电极通过继电器将电场切换到相邻电极对,从而产生步进电场。具有正介电泳响应的癌细胞由于相邻电极之间的高电场区域在步进电场的方向上逐渐减小,因此被引导到圆形微电极的中心。进行了电场的数值模拟,以证明所提出设计的概念。在 1 MHz 的频率下施加 16 V 的峰峰值电压,用 160 s 的时间实现了大约 76%的效率,浓缩了人宫颈癌细胞系 HeLa 细胞。