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用于哺乳动物细胞增殖测量的可拉伸阻抗传感器。

Stretchable impedance sensor for mammalian cell proliferation measurements.

机构信息

The City College of New York, Mechanical Engineering Department, USA.

出版信息

Lab Chip. 2017 Jun 13;17(12):2054-2066. doi: 10.1039/c7lc00375g.

Abstract

This paper presents the fabrication and testing of a novel stretchable electric cell-substrate impedance sensing (ECIS) lab on a chip device. This is the first time that ECIS electrodes were fabricated on a stretchable polydimethylsiloxane (PDMS) substrate and ECIS measurements were performed on mammalian cells exposed to cyclic strain. The stretchable ECIS biosensors simulate in vitro the dynamic environment of organisms, such as pulsation, bending and stretching, which enables investigations on cell behavior that undergoes mechanical stimuli in biological tissue. Usually cell-based assays used in cell mechanobiology rely on endpoint cell tests, which provide a limited view on dynamic cellular mechanisms. The ECIS technique is a label-free, real-time and noninvasive method to monitor the cellular response to mechanical stimuli. Bovine aortic endothelial cells (BAECs) have been used in this research because the BAECs are exposed in vivo to cyclic physiologic elongation produced by blood circulation in the arteries. These innovative stretchable ECIS biosensors were used to analyze the proliferation of BAECs under different cyclic mechanical stimulations. The results of fluorescence based cell proliferation assays confirmed that the stretchable ECIS sensors were able to analyze in real-time the BAEC proliferation. The novel stretchable ECIS sensor has the ability to analyse cell proliferation, determine the cell number and density, and apply mechanical stimulation at the same time.

摘要

本文介绍了一种新型可拉伸的电细胞-基底阻抗传感(ECIS)实验室芯片设备的制造和测试。这是第一次在可拉伸的聚二甲基硅氧烷(PDMS)基底上制造 ECIS 电极,并对暴露于循环应变的哺乳动物细胞进行了 ECIS 测量。这种可拉伸的 ECIS 生物传感器在体外模拟了生物体的动态环境,如脉动、弯曲和拉伸,这使得可以研究在生物组织中经历机械刺激的细胞行为。通常,细胞机械生物学中使用的基于细胞的测定方法依赖于终点细胞测试,这提供了对动态细胞机制的有限观察。ECIS 技术是一种无标记、实时和非侵入性的方法,可用于监测细胞对机械刺激的反应。本研究中使用了牛主动脉内皮细胞(BAEC),因为 BAEC 在体内会受到动脉血液循环产生的循环生理拉伸的影响。这些创新的可拉伸 ECIS 生物传感器已被用于分析不同循环机械刺激下 BAEC 的增殖情况。基于荧光的细胞增殖测定的结果证实,可拉伸的 ECIS 传感器能够实时分析 BAEC 的增殖情况。新型可拉伸 ECIS 传感器能够分析细胞增殖、确定细胞数量和密度,并且同时施加机械刺激。

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