首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >An impedance biosensor for simultaneous detection of low concentration of Salmonella serogroups in poultry and fresh produce samples
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An impedance biosensor for simultaneous detection of low concentration of Salmonella serogroups in poultry and fresh produce samples

机译:一种阻抗生物传感器,用于同时检测家禽和新鲜农产品样品中的低浓度的沙门氏菌血清群

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摘要

This paper reports the design, fabrication and testing of a microfluidic based impedance biosensor for rapid and simultaneous detection of three Salmonella serogroups. The microfluidic device consists of three microchannels, each one includes a region for focusing the Salmonella cells into the centerline of the microchannel and direct them toward the sensing region to obtain highly concentrated samples using positive dielectrophoresis force. A region for bacteria sensing consists of interdigitated electrode (IDE) array with 10 pairs of fingers. Three types of Salmonella antibodies (type B, D and E) were mixed separately with the cross-linker (Sulfo-LC-SPDP) to enhance the immobalization of the antibodies to the detection electrodes. The electrode surfaces was then functionalized with the three mixtures, one for each channel. As target antigen binds to the antibody, it results in impedance change. The Salmonella samples were spiked with Salmonella type B, introduced into the biosensor via the sample inlet into the focusing region, and then toward the sensing region where they bind to the immobilized antibody, causing a change in the impedance. The performance of the devices was tested using single Salmonella serotype B and two Salmonella serotypes B, and D, with a limit of detection of 7 cells/ml. The biosensor was also able to differentiate live from dead bacteria eliminating the false positive results. Finally, the device was also able to detect Salmonella selectively when other type of pathogen was present.
机译:本文报道了基于微流体的阻抗生物传感器的设计,制造和测试,用于快速和同时检测三种沙门氏菌血清群。微流体装置由三个微通道组成,每个单元包括用于将沙门氏菌细胞聚焦到微通道的中心线中并将它们引导朝向感测区域以获得高度浓缩的样品,以使用正电泳力获得高浓度的样品。用于细菌感测的区域由具有10对手指的互指电极(IDE)阵列组成。将三种类型的沙门氏菌(B,D和E)与交联剂(磺酰-1C-SPDP)分开混合,以增强抗体对检测电极的渗透。然后用三个混合物官能化电极表面,每个通道官能化。作为靶抗原与抗体结合,它导致阻抗变化。将沙门氏菌样品用沙门氏菌B型通过样品入口引入生物传感器中,然后朝向对聚焦区域引入生物传感器中,然后朝向感测区域与固定抗体结合,导致阻抗的变化。使用单个沙门氏菌血清型B和两种沙门氏菌血清型B和D测试器件的性能,其检测为7个细胞/ mL。生物传感器还能够区分死亡细菌的生活,消除了假阳性结果。最后,当存在其他类型的病原体时,该装置也能够选择性地检测沙门氏菌。

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