首页> 外文会议>Conference on Microfluidics, BioMEMS, and Medical Microsystems; 20080121-22; San Jose,CA(US) >Direct Electrical Detection of Target Cells on a Microfluidic Biochip
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Direct Electrical Detection of Target Cells on a Microfluidic Biochip

机译:直接电检测微流控生物芯片上的靶细胞

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Pathogenic bacterial cell detection is currently performed using techniques such as culture enrichment and various plating methods, which are expensive and can take up to several days. In this study, we describe the design, fabrication, and testing of a rapid and inexpensive sensor for detection of target cells electrically in real-time. The sensor operates with the use of microelectrodes integrated in a micro-channel. As a proof of principle, we have successfully demonstrated real-time detection of target yeast cells with a concentration of 10~7 cells/ml. We have also demonstrated the selectivity of our sensors in responding to target cells while remaining irresponsive to non-target cells. We also perform theoretical modeling in order to determine the ultimate detection limit of the sensor. Based on our modeling results, proper optimization of the sensor can yield detection limits approaching the single cell level.
机译:当前,致病细菌细胞检测是使用诸如培养物富集和各种接种方法之类的技术进行的,这些技术很昂贵并且可能需要几天的时间。在这项研究中,我们描述了一种快速,廉价的传感器的设计,制造和测试,用于实时电检测靶细胞。传感器使用集成在微通道中的微电极进行操作。作为原理的证明,我们已经成功地演示了浓度为10〜7个细胞/ ml的目标酵母细胞的实时检测。我们还证明了传感器对靶细胞有反应的选择性,同时对非靶细胞无反应。我们还执行理论建模,以确定传感器的最终检测极限。根据我们的建模结果,对传感器进行适当的优化可以产生接近单个细胞水平的检测限。

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