College of Information Science and Technology, Beijing University of Chemical Technology, Beijing, P. R. China.
School of Automobile and Traffic Engineering, Guilin University of Aerospace Technology, Guilin, Guangxi, P. R. China.
Electrophoresis. 2021 Aug;42(14-15):1507-1515. doi: 10.1002/elps.202000195. Epub 2021 May 27.
Cell medium exchange is a crucial step for life science and medicine. However, conventional cell medium exchange methods, including centrifuging and filtering, show limited ability for micro-volume cell samples such as circulating tumor cell (CTC) and circulating fetal cell (CFC). In this paper, we proposed an automatic medium exchange method for micro-volume cell samples based on dielectrophoresis (DEP) in microfluidic chip. Fresh medium and cell suspension were introduced into the microfluidic channel as the laminar flow. Plane stair-shaped interdigital electrodes were employed to drive the cells from the cell suspension to fresh media directly by DEP force. Additionally, we characterized and optimized the cell medium exchange according to both the theory and experiments. In the end, we achieved a 96.9% harvest rate of medium exchange for 0.3 μL samples containing micro-volume cells. For implementing an automatic continuous cell medium exchange, the proposed method can be integrated into the automatic cell processing system conveniently. Furthermore, the proposed method is a great candidate in micro-volume cell analysis and processing, cell electroporation, single cell sequencing, and other scenarios.
细胞培养液的更换是生命科学和医学领域的关键步骤。然而,传统的细胞培养液更换方法,包括离心和过滤,对于循环肿瘤细胞(CTC)和循环胎儿细胞(CFC)等微体积细胞样本的能力有限。在本文中,我们提出了一种基于微流控芯片中的介电泳(DEP)的微体积细胞样本自动培养液更换方法。新鲜培养基和细胞悬浮液作为层流被引入微流控通道。平面阶梯状叉指电极用于通过 DEP 力直接将细胞从细胞悬浮液驱赶到新鲜培养基中。此外,我们根据理论和实验对细胞培养液的更换进行了表征和优化。最后,我们实现了对含有微体积细胞的 0.3μL 样本的 96.9%的培养液交换收获率。为了实现自动连续细胞培养液更换,该方法可以方便地集成到自动细胞处理系统中。此外,该方法是微体积细胞分析和处理、细胞电穿孔、单细胞测序和其他场景的理想选择。