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Porous Silicon-Based Biosensors: Towards Real-Time Optical Detection of Target Bacteria in the Food Industry

机译:多孔硅基生物传感器:实现食品工业中目标细菌的实时光学检测

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Rapid detection of target bacteria is crucial to provide a safe food supply and to prevent foodborne diseases. Herein, we present an optical biosensor for identification and quantification of Escherichia coli (E. coli, used as a model indicator bacteria species) in complex food industry process water. The biosensor is based on a nanostructured, oxidized porous silicon (PSi) thin film which is functionalized with specific antibodies against E. coli. The biosensors were exposed to water samples collected directly from process lines of fresh-cut produce and their reflectivity spectra were collected in real time. Process water were characterized by complex natural micro-flora (microbial load of 10(7)?cell/mL), in addition to soil particles and plant cell debris. We show that process water spiked with culture-grown E. coli, induces robust and predictable changes in the thin-film optical interference spectrum of the biosensor. The latter is ascribed to highly specific capture of the target cells onto the biosensor surface, as confirmed by real-time polymerase chain reaction (PCR). The biosensors were capable of selectively identifying and quantifying the target cells, while the target cell concentration is orders of magnitude lower than that of other bacterial species, without any pre-enrichment or prior processing steps.
机译:快速检测目标细菌对于提供安全的食物供应和预防食源性疾病至关重要。在此,我们介绍了一种光学生物传感器,用于鉴定和定量复杂食品工业过程用水中的大肠杆菌(大肠杆菌,用作模型指示菌)。该生物传感器基于纳米结构的氧化多孔硅(PSi)薄膜,该薄膜已用针对大肠杆菌的特异性抗体进行了功能化。将生物传感器暴露于直接从鲜切农产品生产线收集的水样品中,并实时收集其反射光谱。除土壤颗粒和植物细胞碎片外,工艺用水还具有复杂的天然微生物区系(微生物负荷> 10(7)?cell / mL)。我们显示过程水与文化生长的大肠杆菌加标,诱导生物传感器的薄膜光学干涉谱中的强大和可预测的变化。后者归因于实时聚合酶链反应(PCR)证实了靶细胞高度特异性地捕获到生物传感器表面上。该生物传感器能够选择性地鉴定和定量靶细胞,而靶细胞的浓度要比其他细菌物种的浓度低几个数量级,而无需任何预富集或先前的处理步骤。

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