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用于家禽产品中病原体检测的集成阻抗生物传感器平台。

An integrated impedance biosensor platform for detection of pathogens in poultry products.

机构信息

University of Missouri - Columbia, Electrical and Computer Engineering, Columbia, 65211, USA.

University of Missouri - Columbia, School of Veterinary Medicine, Columbia, 65211, USA.

出版信息

Sci Rep. 2018 Oct 31;8(1):16109. doi: 10.1038/s41598-018-33972-0.

Abstract

This paper presents an impedance-based biosensor for rapid and simultaneous detection of Salmonella serotypes B, D, and E with very low concentration. The biosensor consists of a focusing region, and three detection regions. The cells focusing was achieved using a ramp down electroplated vertical electrode pair along with tilted thin film finger pairs that generate p-DEP forces to focus and concentrate the bacterial cells into the center of the microchannel, and direct them toward the detection region. The detection regions consist of three interdigitated electrode arrays (IDEA), each with 20 pairs of finger coated with a mixture of anti-Salmonella antibody and crosslinker to enhance the adhesion to IDEA. The impedance changes as the target Salmonella binds to the antibody. The biosensor has showed excellent performance as proven by the detection of a single Salmonella serotype B, and simultaneous detection of two Salmonella serotypes B and D with a limit of detection (LOD) of 8 Cells/ml in ready-to-eat turkey samples, the addition of focusing capability improved the measured signal by a factor of between 4-4.5, the total detection time of 45 minutes, selectivity of the sensor on different types of bacterial cells, and the ability to distinguish between dead and live cells.

摘要

本文提出了一种基于阻抗的生物传感器,用于快速和同时检测低浓度的沙门氏菌血清型 B、D 和 E。该生物传感器由聚焦区和三个检测区组成。细胞聚焦是通过沿电镀垂直电极对的斜坡下降以及倾斜的薄膜指状对来实现的,它们产生 p-DEP 力将细菌细胞聚焦并集中到微通道的中心,并将它们引导到检测区。检测区由三个叉指电极阵列 (IDEA) 组成,每个 IDEA 都有 20 对涂有抗沙门氏菌抗体和交联剂的指状对,以增强与 IDEA 的附着力。当目标沙门氏菌与抗体结合时,阻抗会发生变化。该生物传感器表现出优异的性能,已通过检测单个沙门氏菌血清型 B 以及同时检测两种沙门氏菌血清型 B 和 D 得到证明,在即食火鸡样品中的检测限 (LOD) 为 8 个细胞/ml,聚焦能力的增加将测量信号提高了 4-4.5 倍,总检测时间为 45 分钟,传感器对不同类型的细菌细胞的选择性,以及区分死活细胞的能力。

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