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Developing a MEMS Device with Built-in Microfluidics for Biophysical Single Cell Characterization

机译:开发具有内置微流控技术的MEMS器件用于生物物理单细胞表征

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摘要

This study combines the high-throughput capabilities of microfluidics with the sensitive measurements of microelectromechanical systems (MEMS) technology to perform biophysical characterization of circulating cells for diagnostic purposes. The proposed device includes a built-in microchannel that is probed by two opposing tips performing compression and sensing separately. Mechanical displacement of the compressing tip (up to a maximum of 14 µm) and the sensing tip (with a quality factor of 8.9) are provided by two separate comb-drive actuators, and sensing is performed with a capacitive displacement sensor. The device is designed and developed for simultaneous electrical and mechanical measurements. As the device is capable of exchanging the liquid inside the channel, different solutions were tested consecutively. The performance of the device was evaluated by introducing varying concentrations of glucose (from 0.55 mM (0.1%) to 55.5 mM (10%)) and NaCl (from 0.1 mM to 10 mM) solutions in the microchannel and by monitoring changes in the mechanical and electrical properties. Moreover, we demonstrated biological sample handling by capturing single cancer cells. These results show three important capabilities of the proposed device: mechanical measurements, electrical measurements, and biological sample handling. Combined in one device, these features allow for high-throughput multi-parameter characterization of single cells.
机译:这项研究将微流体的高通量能力与微机电系统(MEMS)技术的灵敏测量相结合,以进行循环细胞的生物物理表征,以进行诊断。所提出的设备包括一个内置的微通道,该通道由两个分别执行压缩和传感的相对尖端探测。压缩头(最大14 µm)和传感头(质量因数8.9)的机械位移由两个单独的梳齿驱动致动器提供,传感通过电容式位移传感器执行。该设备是为同时进行电气和机械测量而设计和开发的。由于该设备能够交换通道内的液体,因此连续测试了不同的溶液。通过在微通道中引入不同浓度的葡萄糖(从0.55 mM(0.1%)到55.5 mM(10%))和NaCl(从0.1 mM到10 mM)溶液并监测机械的变化来评估设备的性能。和电性能。此外,我们通过捕获单个癌细胞展示了生物样品处理方法。这些结果显示了拟议设备的三个重要功能:机械测量,电学测量和生物样品处理。这些功能组合在一个设备中,可以对单个单元格进行高通量多参数表征。

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