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An Aptamer-Based Capacitive Sensing Platform for Specific Detection of Lung Carcinoma Cells in the Microfluidic Chip

机译:基于适体的电容传感平台用于微流控芯片中肺癌细胞的特异性检测

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摘要

Improvement of methods for reliable and early diagnosis of the cellular diseases is necessary. A biological selectivity probe, such as an aptamer, is one of the candidate recognition layers that can be used to detect important biomolecules. Lung cancer is currently a typical cause of cancer-related deaths. In this work, an electrical sensing platform is built based on amine-terminated aptamer modified-gold electrodes for the specific, label-free detection of a human lung carcinoma cell line (A549). The microdevice, that includes a coplanar electrodes configuration and a simple microfluidic channel on a glass substrate, is fabricated using standard photolithography and cast molding techniques. A procedure of self-assembly onto the gold surface is proposed. Optical microscope observations and electrical impedance spectroscopy measurements confirm that the fabricated microchip can specifically and effectively identify A549 cells. In the experiments, the capacitance element that is dominant in the change of the impedance is calculated at the appropriate frequency for evaluation of the sensitivity of the biosensor. Therefore, a simple, inexpensive, biocompatible, and selective biosensor that has the potential to detect early-stage lung cancer would be developed.
机译:有必要改进可靠和早期诊断细胞疾病的方法。生物选择性探针(如适体)是可用于检测重要生物分子的候选识别层之一。当前,肺癌是癌症相关死亡的典型原因。在这项工作中,基于胺末端的适体修饰金电极构建了一个电传感平台,用于特异性,无标记地检测人肺癌细胞系(A549)。使用标准光刻和浇铸成型技术制造的微器件包括共面电极配置和在玻璃基板上的简单微流体通道。提出了一种自组装到金表面的程序。光学显微镜观察和电阻抗光谱测量证实,所制造的微芯片可以特异性和有效地鉴定A549细胞。在实验中,以适当的频率计算出阻抗变化中占主导的电容元件,以评估生物传感器的灵敏度。因此,将开发一种具有检测早期肺癌潜力的简单,廉价,生物相容性和选择性的生物传感器。

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