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Rapid Simultaneous Ultrasensitive Immunodetection of Five Bacterial Toxins

机译:快速同时超灵敏免疫检测五种细菌毒素

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Rapid ultrasensitive detection of gastrointestinal pathogens presents a great interest for medical diagnostics and epidemiologic services. Though conventional immunochemical and polymerase chain reaction (PCR)-based methods are sensitive enough for many applications, they usually require several hours for assay, whereas as sensitive but more rapid methods are needed in many practical cases. Here, we report a new microarray-based analytical technique for simultaneous detection of five bacterial toxins: the cholera toxin, the E. coli heat-labile toxin, and three S. aureus toxins (the enterotoxins A and B and the toxic shock syndrome toxin). The assay involves three major steps: electrophoretic collection of toxins on an antibody microarray, labeling of captured antigens with secondary biotinylated antibodies, and detection of biotin labels by scanning the microarray surface with streptavidin-coated magnetic beads in a shear-flow. All the stages are performed in a single flow cell allowing application of electric and magnetic fields as well as optical detection of microarray-bound beads. Replacement of diffusion with a forced transport at all the recognition steps allows one to dramatically decrease both the limit of detection (LOD) and the assay time. We demonstrate here that application of this "active" assay technique to the detection of bacterial toxins in water samples from natural sources and in food samples (milk and meat extracts) allowed one to perform the assay in less than 10 min and to decrease the LOD to 0.1-1 pg/mL for water and to 1 pg/mL for food samples.
机译:胃肠道病原体的快速超灵敏检测对医学诊断和流行病学服务引起了极大的兴趣。尽管基于常规免疫化学和聚合酶链反应(PCR)的方法对于许多应用足够灵敏,但它们通常需要数小时才能进行分析,而在许多实际情况下,由于需要灵敏但更快速的方法。在这里,我们报告了一种基于微阵列的新分析技术,可同时检测五种细菌毒素:霍乱毒素,大肠杆菌热不稳定毒素和三种金黄色葡萄球菌毒素(肠毒素A和B和中毒性休克综合症毒素)。该测定包括三个主要步骤:电泳收集抗体微阵列上的毒素,用生物素化的二级抗体标记捕获的抗原,以及通过用抗生蛋白链菌素包被的磁珠在剪切流中扫描微阵列表面来检测生物素标记。所有阶段均在单个流通池中进行,从而允许施加电场和磁场以及对微阵列结合的磁珠进行光学检测。在所有识别步骤中用强制运输代替扩散,可以大大降低检测限(LOD)和测定时间。我们在这里证明了这种“主动”检测技术在检测天然来源的水样本和食品样本(牛奶和肉类提取物)中细菌毒素中的应用使得人们可以在不到10分钟的时间内进行检测并降低LOD水分至0.1-1 pg / mL,食品样品至1 pg / mL。

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