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A Chemo-Enzymatic Cascade for the Smart Detection of Nitro- and Halogenated Phenols

机译:用于硝基和卤化酚的智能检测的化学酶级联

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摘要

The flavin-dependent monooxygenase, HadA, catalyzes the dehalogenation and denitration of the toxicants, nitro- and halogenated phenols, to benzoquinone. The HadA reaction can be applied in one-pot reactions towards the de novo synthesis of d-luciferin by coupling with d-Cys condensation. d-luciferin, a valuable chemical widely used in biomedical applications, can be used as a substrate for the reaction of firefly luciferase to generate bioluminescence. As nitro- and halogenated phenols are key indicators of human overexposure to pesticides and pesticide contamination, the technology provides a sensitive and convenient tool for improved biomedical and environmental detection at ppb sensitivity in biological samples without the requirement for any pre-treatment. This dual-pronged method combines the advantages of waste biodetoxification to produce a valuable chemical as well as a smart detection tool for environmental and biomedical detection.
机译:依赖于黄素依赖性单氧基酶,HAVA,催化毒物,硝基和卤代酚的脱卤和脱硝,苯并醌。 通过与D-Cys缩合偶联,可以将HADA反应施用于D-Luciferin的Novo合成。 D-Luciferin是一种广泛用于生物医学应用的有价值的化学物质,可用作萤火虫荧光素酶反应产生生物发光的基材。 作为硝基和卤化酚是人类过度杀虫剂和农药污染的关键指标,该技术为PPB在生物样品中改善了生物医学和环境检测的敏感和方便的工具,而不需要任何预处理的要求。 这种双管化方法结合了废物生物虫氧化的优点,产生了有价值的化学品以及用于环境和生物医学检测的智能检测工具。

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