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PEDOT:PSS 有机电化学晶体管阵列用于心脏细胞的细胞外电生理传感。

PEDOT:PSS organic electrochemical transistor arrays for extracellular electrophysiological sensing of cardiac cells.

机构信息

Department of Informatics and Microsystem Technology, University of Applied Sciences Kaiserslautern, Zweibrücken, Germany.

RAM Group DE GmbH, Research and Development Center, Zweibrücken, Germany.

出版信息

Biosens Bioelectron. 2017 Jul 15;93:132-138. doi: 10.1016/j.bios.2016.09.047. Epub 2016 Sep 14.

Abstract

Electrophysiological biosensors embedded in planar devices represent a state of the art approach to measure and evaluate the electrical activity of biological systems. This measurement method allows for the testing of drugs and their influences on cells or tissues, cytotoxicity, as well as the direct implementation into biological systems in vivo for signal transduction. Multi-electrode arrays (MEAs) with metal or metal-like electrodes on glass substrates are one of the most common, well-established platforms for this purpose. In recent years organic electrochemical transistors (OECTs) made of poly(2,3-dihydrothieno-1,4-dioxin)-poly(styrenesulfonate) (PEDOT:PSS) have as well shown their value in transducing and amplifying the ionic signals in biological systems. We developed OECT devices in a wafer-scale process and used them as electrophysiological biosensors measuring electrophysiological activity of the cardiac cell line HL-1. Our optimized devices show very promising properties such as good signal-to-noise ratio as well as the ability to record fast components of extracellular signals. Combined with an easy, cost effective fabrication and the transparency of the polymer, this platform offers a valuable alternative to traditional MEA systems for future cell sensing applications.

摘要

平面设备中嵌入的电生理生物传感器代表了一种测量和评估生物系统电活动的最新方法。这种测量方法允许测试药物及其对细胞或组织的影响、细胞毒性,以及直接在体内生物系统中实现信号转导。在玻璃衬底上具有金属或类似金属电极的多电极阵列 (MEA) 是为此目的最常用、最成熟的平台之一。近年来,由聚(2,3-二氢噻吩-1,4-二恶英)-聚(苯乙烯磺酸盐)(PEDOT:PSS)制成的有机电化学晶体管 (OECT) 也在生物系统中转换和放大离子信号方面显示出了它们的价值。我们使用晶圆级工艺开发了 OECT 器件,并将其用作测量心脏细胞系 HL-1 电生理活性的电生理生物传感器。我们优化的器件具有非常有前途的特性,例如良好的信噪比以及记录细胞外信号快速分量的能力。结合易于制造、成本效益高以及聚合物的透明性,该平台为未来的细胞传感应用提供了一种有价值的传统 MEA 系统替代方案。

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