Liang Wenfeng, Yang Xieliu, Wang Junhai, Wang Yuechao, Yang Wenguang, Liu Lianqing
School of Mechanical Engineering, Shenyang Jianzhu University, Shenyang 110168, China.
State Key Laboratory of Robotics, Shenyang Institute of Automation, Chinese Academy of Sciences, Shenyang 110016, China.
Micromachines (Basel). 2020 May 19;11(5):513. doi: 10.3390/mi11050513.
Cell dielectric properties, a type of intrinsic property of cells, can be used as electrophysiological biomarkers that offer a label-free way to characterize cell phenotypes and states, purify clinical samples, and identify target cancer cells. Here, we present a review of the determination of cell dielectric properties using alternating current (AC) electrokinetic-based microfluidic mechanisms, including electro-rotation (ROT) and dielectrophoresis (DEP). The review covers theoretically how ROT and DEP work to extract cell dielectric properties. We also dive into the details of differently structured ROT chips, followed by a discussion on the determination of cell dielectric properties and the use of these properties in bio-related applications. Additionally, the review offers a look at the future challenges facing the AC electrokinetic-based microfluidic platform in terms of acquiring cell dielectric parameters. Our conclusion is that this platform will bring biomedical and bioengineering sciences to the next level and ultimately achieve the shift from lab-oriented research to real-world applications.
细胞介电特性作为细胞的一种固有特性,可作为电生理生物标志物,提供一种无标记的方式来表征细胞表型和状态、纯化临床样本以及识别靶癌细胞。在此,我们综述了利用基于交流(AC)电动微流控机制(包括电旋转(ROT)和介电电泳(DEP))来测定细胞介电特性的方法。该综述从理论上阐述了ROT和DEP如何用于提取细胞介电特性。我们还深入探讨了不同结构的ROT芯片的细节,接着讨论了细胞介电特性的测定以及这些特性在生物相关应用中的使用。此外,该综述还审视了基于交流电动微流控平台在获取细胞介电参数方面面临的未来挑战。我们的结论是,该平台将把生物医学和生物工程科学提升到一个新水平,并最终实现从实验室导向研究到实际应用的转变。