首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Robust and highly specific fluorescence sensing of Salmonella typhimurium based on dual-functional phi29 DNA polymerase-mediated isothermal circular strand displacement polymerization
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Robust and highly specific fluorescence sensing of Salmonella typhimurium based on dual-functional phi29 DNA polymerase-mediated isothermal circular strand displacement polymerization

机译:基于双官能PHI29 DNA聚合酶介导的等温圆链位移聚合的沙门氏菌培尿的鲁棒且高度荧光感测

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摘要

A simple and robust fluorescence sensing strategy has been developed for the detection of pathogenic bacteria by the combination of the dual functionality of phi29 DNA polymerase with isothermal circular strand displacement polymerization (ICSDP). The strategy relies on target-triggered formation of a mature primer that initiates the cyclic strand displacement polymerization reaction with the aid of dual functional phi29; thus, amplified detection of the target can be achieved. To our knowledge, this work is the first report where dual functional phi29-assisted ICSDP has been employed for fluorescence sensing of pathogenic bacteria. It is worth noting that a hairpin pre-primer is introduced that can be trimmed into a mature primer for initiating ICSDP via the 3 ' -> 5 ' proofreading exonuclease activity of phi29, which contributes to the ultrahigh specificity of the strategy owing to the elimination of the unwished nonspecific extension. On the basis of the present amplification strategy, our biosensor exhibits excellent specificity and sensitivity toward S. typhimurium with an excellent detection limit as low as 1.5 cfu mL(-1). In addition, the strategy offers the advantages of a simplified operation, shortened analysis time, and highly sensitive detection of pathogens with only a one-step reaction. Furthermore, by redesigning the corresponding binding molecules, the proposed strategy can be easily extended for the detection of a wide spectrum of analytes. Hence, the dual functional phi29-assisted ICSDP strategy indeed creates a robust and convenient fluorescence sensing platform for the identification of pathogenic bacteria and related food safety analysis.
机译:通过使用具有等温圆链位移聚合(ICSDP)的PHI29 DNA聚合酶的双重功能的组合来检测致病细菌的一种简单且鲁棒的荧光传感策略。该策略依赖于借助双官能PHI29引发循环链位移聚合反应的成熟底漆的目标触发形成;因此,可以实现对目标的放大检测。据我们所知,这项工作是第一个报告,其中双功能PHI29辅助ICSDP已用于致病菌的荧光感测。值得注意的是,将引入发夹预引物,其可以通过PHI29的3' - > 5'校样外切核酸酶活性来修剪成用于启动ICSDP的成熟引物,这有助于由于消除而导致策略的超高特异性未解脱的非特异性延期。在目前的扩增策略的基础上,我们的生物传感器对S. Typhimurium具有优异的特异性和敏感性,具有优异的检测极限,低至1.5 cfu ml(-1)。此外,该策略提供了简化操作,缩短分析时间和对病原体的高敏感性检测的优点,只有一步反应。此外,通过重新设计相应的结合分子,可以容易地扩展所提出的策略以检测到广谱的分析物。因此,双函数PHI29辅助ICSDP策略确实为鉴定致病菌和相关食品安全性分析产生了稳健和方便的荧光传感平台。

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