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迈向高通量细胞生长筛选:一种用于生命科学应用的新型CMOS 8×8生物传感器阵列

Towards High Throughput Cell Growth Screening: A New CMOS 8 × 8 Biosensor Array for Life Science Applications.

作者信息

Nabovati Ghazal, Ghafar-Zadeh Ebrahim, Letourneau Antoine, Sawan Mohamad

出版信息

IEEE Trans Biomed Circuits Syst. 2017 Apr;11(2):380-391. doi: 10.1109/TBCAS.2016.2593639. Epub 2016 Nov 14.

Abstract

In this paper we present a CMOS capacitive sensor array as a compact and low-cost platform for high-throughput cell growth monitoring. The proposed biosensor, consists of an array of 8 × 8 CMOS fully differential charge-based capacitive measurement sensors. A DC-input Σ∆ modulator is used to convert the sensors' signals to digital values for reading out the biological/chemical data and further signal processing. To compensate the mismatch variations between the current mirror transistors, a calibration circuitry is proposed which removes the output voltage offset with less than 8.2% error. We validate the chip functionality using various organic solvents with different dielectric constants. Moreover, we show the response of the chip to different concentrations of Polystyrene beads that have the same electrical properties as the living cells. The experimental results show that the chip allows the detection of a wide range of Polystyrene beads concentrations from as low as 10 beads/ml to 100 k beads/ml. In addition, we present the experimental results from H1299 (human lung carcinoma) cell line where we show that the chip successfully allows the detection of cell attachment and growth over capacitive electrodes in a 30 h measurement time and the results are in consistency with the standard cell-based assays. The capability of proposed device for label-free and real-time detection of cell growth with very high sensitivity opens up the important opportunity for utilizing the device in rapid screening of living cells.

摘要

在本文中,我们提出了一种CMOS电容式传感器阵列,作为用于高通量细胞生长监测的紧凑且低成本的平台。所提出的生物传感器由一个8×8的CMOS全差分电荷型电容测量传感器阵列组成。一个直流输入的Σ∆调制器用于将传感器的信号转换为数字值,以读出生物/化学数据并进行进一步的信号处理。为了补偿电流镜晶体管之间的失配变化,提出了一种校准电路,该校准电路能够以小于8.2%的误差消除输出电压偏移。我们使用具有不同介电常数的各种有机溶剂验证了芯片的功能。此外,我们展示了芯片对与活细胞具有相同电学性质的不同浓度聚苯乙烯珠的响应。实验结果表明,该芯片能够检测低至10个珠/毫升到100k个珠/毫升的广泛聚苯乙烯珠浓度范围。此外,我们展示了来自H1299(人肺癌)细胞系的实验结果,结果表明该芯片在30小时的测量时间内成功地检测到了电容电极上细胞的附着和生长,并且结果与基于标准细胞的检测方法一致。所提出的器件具有无标记且以非常高的灵敏度实时检测细胞生长的能力,为在活细胞的快速筛选中利用该器件提供了重要机会。

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