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Colorimetric detection of Escherichia coli using engineered bacteriophage and an affinity reporter system

机译:使用工程化噬菌体和亲和力记者系统的大肠杆菌的比色性检测

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Reporter phage systems have emerged as a promising technology for the detection of bacteria in foods and water. However, the sensitivity of these assays is often limited by the concentration of the expressed reporter as well as matrix interferences associated with the sample. In this study, bacteriophage T7 was engineered to overexpress mutated alkaline phosphatase fused to a carbohydrate-binding module (ALP*-CBM) following infection of E. coli to enable colorimetric detection in a model system. Magnetic cellulose particles were employed to separate and concentrate the overexpressed ALP*-CBM in bacterial lysate. Infection of E. coli with the engineered phage resulted in a limit of quantitation of 1.2 x 10(5) CFU, equating to 1.2 x 10(3) CFU/mL in 3.5 h when using a colorimetric assay and 100 mL sample volume. When employing an enrichment step, < 10(1) CFU/mL could be visually detected from a 100 mL sample volume within 8 h. These results suggest that affinity tag modified enzymes coupled with a material support can provide a simple and effective means to improve signal sensitivity of phage-based assays.
机译:记者噬菌体系统已成为检测食品和水中细菌的有希望的技术。然而,这些测定的敏感性通常受表达的报告者的浓度的限制以及与样品相关的基质干扰。在本研究中,在感染大肠杆菌后,将噬菌体T7设计成融合到碳水化合物结合模块(ALP * -CBM)的突变碱性磷酸酶,以使模型系统中的比色性检测能够进行比色。用磁性纤维素颗粒分离并浓缩细菌裂解物中过表达的ALP * -CBM。用工程化噬菌体感染大肠杆菌导致定量限制为1.2×10(5)CFU,在使用比色测定和100ml样品体积的3.5小时时等于1.2×10(3)CFU / mL。当使用富集步骤时,可以在8小时内从100ml样品体积直到检测<10(1)CFU / mL。这些结果表明,与材料载体耦合的亲和标签改性酶可以提供简单有效的方法,以提高噬菌体基测定的信号敏感性。

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