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在微流控芯片上计数细菌。

Counting bacteria on a microfluidic chip.

机构信息

Department of Marine Engineering, Dalian Maritime University, Dalian 116026, China.

出版信息

Anal Chim Acta. 2010 Nov 29;681(1-2):82-6. doi: 10.1016/j.aca.2010.09.035. Epub 2010 Sep 29.

Abstract

This paper reports a lab-on-a-chip device that counts the number of bacteria flowing through a microchannel. The bacteria number counting is realized by a microfluidic differential Resistive Pulse Sensor (RPS). By using a single microfluidic channel with two detecting arm channels placed at the two ends of the sensing section, the microfluidic differential RPS can achieve a high signal-to-noise ratio. This method is applied to detect and count bacteria in aqueous solution. The detected RPS signals amplitude for Pseudomonas aeruginosa ranges from 0.05 V to 0.17 V and the signal-to-noise ratio is 5-17. The number rate of the bacteria flowing through the sensing gate per minute is a linear function of the sample concentration. Using this experimentally obtained correlation curve, the concentration of bacteria in the sample solution can be evaluated within several minutes by measuring the number rate of the bacteria flowing through the sensing gate of this microfluidic differential RPS chip. The method described in this paper is simple and automatic, and have wide applications in determining the bacteria and cell concentrations for microbiological and other biological applications.

摘要

本文报道了一种用于对微通道中流动细菌数量进行计数的片上实验室芯片设备。细菌数量的计数是通过微流控差分电阻脉冲传感器(RPS)实现的。通过使用具有两个检测臂通道的单个微流通道,将其放置在传感部分的两端,微流控差分 RPS 可以实现高信噪比。该方法应用于检测和计数水溶液中的细菌。铜绿假单胞菌检测到的 RPS 信号幅度在 0.05V 到 0.17V 之间,信噪比为 5-17。每分钟流过传感门的细菌数量与样品浓度呈线性关系。通过测量流过微流控差分 RPS 芯片传感门的细菌数量率,利用实验获得的相关曲线,可以在几分钟内评估样品溶液中细菌的浓度。本文所述的方法简单、自动,在微生物学和其他生物学应用中确定细菌和细胞浓度方面具有广泛的应用。

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