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Tracking cancer cell proliferation on a CMOS capacitance sensor chip

机译:在CMOS电容传感器芯片上跟踪癌细胞的增殖

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摘要

We report a novel technique for assessing cell proliferation that employs integrated capacitance sensors for monitoring the growth of anchorage-dependent living cells. The sensors measure substrate coupling capacitances of cells cultured on-chip in a standard in vitro environment. The biophysical phenomenon underlying the capacitive behavior of cells is the counterionic polarization around the insulating cell bodies when exposed to weak, low frequency electric fields. The sensors employ charge sharing for mapping sensed capacitance values in the fF range to output voltage signals. The sensor chip has been fabricated in a commercially available 0.5 mu m, 2-poly 3-metal CMOS technology. We report experimental results demonstrating sensor response to the adhesion of MDA-MB-231 breast cancer cells followed by their proliferation on the chip surface. On-chip capacitance sensing offers a non-invasive, label-free, easy-to-use, miniaturized technique with real-time monitoring capability for tracking cell proliferation in vitro. (C) 2007 Elsevier B.V. All rights reserved.
机译:我们报告了一种新技术,用于评估细胞增殖,该技术采用集成电容传感器来监测锚定依赖性活细胞的生长。传感器测量在标准体外环境下芯片上培养的细胞的底物耦合电容。细胞电容行为背后的生物物理现象是,当暴露于弱的低频电场时,绝缘细胞体周围的反离子极化。传感器采用电荷共享,以将fF范围内的感测电容值映射到输出电压信号。传感器芯片是采用市售的0.5微米2聚3金属CMOS技术制造的。我们报告了实验结果,表明传感器对MDA-MB-231乳腺癌细胞粘附的反应,然后在芯片表面增殖。片上电容感测提供了一种无创,无标签,易于使用的小型化技术,并具有实时监控功能,可在体外追踪细胞增殖。 (C)2007 Elsevier B.V.保留所有权利。

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