Istituto Italiano di Tecnologia, Via Morego 30, Genova, 16163, Italy.
Adv Mater. 2021 Feb;33(7):e2004234. doi: 10.1002/adma.202004234. Epub 2021 Jan 6.
The electrophysiological recording of action potentials in human cells is a long-sought objective due to its pivotal importance in many disciplines. Among the developed techniques, invasiveness remains a common issue, causing cytotoxicity or altering unpredictably cell physiological response. In this work, a new approach for recording intracellular signals of outstanding quality and with noninvasiveness is introduced. By taking profit of the concept of mirror charge in classical electrodynamics, the new proposed device transduces cell ionic currents into mirror charges in a microfluidic chamber, thus realizing a virtual mirror cell. By monitoring mirror charge dynamics, it is possible to effectively record the action potentials fired by the cells. Since there is no need for accessing or interacting with the cells, the method is intrinsically noninvasive. In addition, being based on optical recording, it shows high spatial resolution and high parallelization. As shown through a set of experiments, the presented methodology is an ideal candidate for the next generation devices for the reliable assessment of cardiotoxicity on human-derived cardiomyocytes. More generally, it paves the way toward a new family of in vitro biodevices that will lay a new milestone in the field of electrophysiology.
由于在许多学科中都具有至关重要的作用,因此对人类细胞动作电位的电生理记录一直是人们长期追求的目标。在已开发的技术中,侵入性仍然是一个常见问题,会导致细胞毒性或不可预测地改变细胞生理反应。在这项工作中,引入了一种新的方法来记录具有出色质量且非侵入性的细胞内信号。利用经典电动力学中的镜像电荷概念,新提出的设备将细胞离子电流转换为微流控室内的镜像电荷,从而实现虚拟镜像细胞。通过监测镜像电荷的动态,可以有效地记录细胞发出的动作电位。由于不需要接触或与细胞相互作用,因此该方法本质上是非侵入性的。此外,由于基于光学记录,它具有高空间分辨率和高并行性。通过一系列实验表明,所提出的方法是用于可靠评估人类来源的心肌细胞心脏毒性的下一代设备的理想候选者。更一般地说,它为体外生物设备开辟了新的途径,将在电生理学领域树立新的里程碑。