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A Portable Impedance Immunosensing System for Rapid Detection of Salmonella Typhimurium

机译:一种便携式阻抗免疫抑制系统,用于快速检测沙门氏菌血小场

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Salmonella Typhimurium is one of the most dangerous foodborne pathogens and poses a significant threat to human health. The objective of this study was to develop a portable impedance immunosensing system for rapid and sensitive detection of S. Typhimurium in poultry. The developed portable impedance immunosensing system consisted of a gold interdigitated array microelectrode (IDAM), a signal acquisitive interface and a laptop computer with LabVIEWsoftware. The IDAM was first functionalized with 16-Mercaptohexadecanoic acid, and streptavidin was immobilized onto the electrode surface through covalent bonding. Then, biotin-labelled S. Typhimurium-antibody was immobilized onto the IDAM surface. Samples were dropped on the surface of the IDAM and the S. Typhimurium cells in the samples were captured by the antibody on the IDAM. This resulted in impedance changes which were measured and displayed with the LabVIEW software! An equivalent circuit of the immunosensor demonstrated that the largest change in impedance was due to the electron-transfer resistance. The equivalent circuit showed an increase of 35 % for the electron-transfer resistance value compared to the negative control. The calibration result indicated that the portable impedance immunosensing system could be used to measure the standard impedance elements and it had a maximum error of measurement of approximately 13 %. For pure culture detection, the system had a linear relationship between the impedance change and the logarithmic valueof S. Typhimurium cells ranging from 7.6x10' to 7.6*106 CFU (50 yl)~l. The immunosensor also had a correlation coefficient of 0.98, and a high specificity for detection ofS. Typhimurium cells with a limit of detection (LOD) of 102 CFU (50 nl)'1. The detection time from the moment a sample was introduced to the display of the results was 1 h. To conclude, the portable impedance immunosensing system for detection of S. Typhimurium achieved a LOD that is comparable with commercial electrochemical impedanceinstruments. The developed impedance immunosensor has advantages in portability, low cost, rapid detection and label-free feature showing a great potential for in-field detection offoodborne pathogens.
机译:沙门氏菌Typhimurium是最危险的食物丧失的病原体之一,对人类健康构成了重大威胁。本研究的目的是开发一种便携式阻抗免疫抑制系统,可用于禽类中的伤寒伤寒的敏感性。开发的便携式阻抗免疫抑制系统由金色互脱的阵列微电极(IDAM),信号获取接口和带LabViewSoftware的膝上型计算机组成。将IDAM用16-巯基己二酸官能化,并通过共价键合将链霉抗生物素蛋白固定在电极表面上。然后,将生物素标记的S. Typhimurium-抗体固定在抗体表面上。将样品滴在idam的表面上,并通过抗体在idam上捕获样品中的鼠脊柱核细胞。这导致阻抗更改,以LabVIEW软件测量并显示!免疫传感器的等效电路证明阻抗的最大变化是由于电子传递电阻。与阴性对照相比,等效电路的增加对于电子传递电阻值增加35%。校准结果表明,便携式阻抗免疫抑制系统可用于测量标准阻抗元件,并且其最大误差约为13%。对于纯培养检测,该系统在阻抗变化与鼠尾草细胞的对数值之间具有线性关系,从7.6x10'到7.6 * 106 cfu(50 yl)〜l。免疫传感器还具有0.98的相关系数,以及对检测的高特异性。具有102 cfu(50nl)1的检测限(lod)的毛孢菌细胞。将样品引入结果的样品的检测时间为1小时。为了得出结论,用于检测S. Typhimurium的便携式阻抗免疫抑制系统实现了与商业电化学阻抗仪相当的LOD。开发的阻抗免疫传感器具有便携性,低成本,快速检测和无标记特征的优点,显示出对现场检测的潜力的巨大潜力。

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