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Evanescent Wave Fiber Optic Biosensor for Salmonella Detection in Food

机译:用于食品中沙门氏菌检测的van逝波光纤生物传感器

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Salmonella enterica is a major food-borne pathogen of world-wide concern. Sensitive and rapid detection methods to assess product safety before retail distribution are highly desirable. Since Salmonella is most commonly associated with poultry products, an evanescent wave fiber-optic assay was developed to detect Salmonella in shell egg and chicken breast and data were compared with a time-resolved fluorescence (TRF) assay. Anti-Salmonella polyclonal antibody was immobilized onto the surface of an optical fiber using biotin-avidin interactions to capture Salmonella. Alexa Fluor 647-conjugated antibody (MAb 2F-11) was used as the reporter. Detection occurred when an evanescent wave from a laser (635 nm) excited the Alexa Fluor and the fluorescence was measured by a laser-spectrofluorometer at 710 nm. The biosensor was specific for Salmonella and the limit of detection was established to be 103 cfu/mL in pure culture and 104 cfu/mL with egg and chicken breast samples when spiked with 102 cfu/mL after 2–6 h of enrichment. The results indicate that the performance of the fiber-optic sensor is comparable to TRF, and can be completed in less than 8 h, providing an alternative to the current detection methods.
机译:肠沙门氏菌是引起全球关注的主要食源性病原体。非常需要灵敏,快速的检测方法来评估零售分销之前的产品安全性。由于沙门氏菌最常与家禽产品相关,因此开发了一种van逝波光纤测定法来检测带壳蛋和鸡胸肉中的沙门氏菌,并将数据与时间分辨荧光(TRF)测定法进行了比较。使用生物素-亲和素相互作用捕获沙门氏菌,将抗沙门氏菌多克隆抗体固定在光纤表面。使用Alexa Fluor 647偶联抗体(MAb 2F-11)作为报告基因。当来自激光器(635 nm)的van逝波激发Alexa Fluor时发生检测,并通过激光分光荧光计在710 nm处测量荧光。该生物传感器对沙门氏菌具有特异性,在纯培养物中检测限为10 3 cfu / mL,在鸡蛋和鸡胸肉样品中检测限为10 4 cfu / mL。浓缩2–6小时后加标10 2 cfu / mL。结果表明,光纤传感器的性能与TRF相当,并且可以在不到8小时的时间内完成,为当前的检测方法提供了另一种选择。

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