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Bio-optical gas-sensor (sniffer device) with a fiber optic oxygen sensor

机译:具有光纤氧传感器的生物光学气体传感器(嗅探器装置)

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A bio-optical gas-sensor (sniffer device) was constructed by immobilizing flavin-containing monooxygenase 3 (FMO3, one of xenobiotic metabolizing enzymes for catalyzing the oxidation of odorous substances such as trimethylamine: TMA) onto a tip of a fiber optic oxygen sensor with oxygen sensitive ruthenium organic complex (excitation: 470 nm, fluorescent: 600 nm) with a tube-ring. A reaction unit for circulating buffer solution was applied to the tip of the sniffer device. A substrate regeneration cycle was applied to the FMO3 immobilized sensor in order to amplify the output signal by coupling the monooxygenase with a reducing reagent system of ascorbic acid (AsA) in phosphate buffer. The bio-optical sniffer was possible to detect the oxygen consumption induced by FOM3 enzymatic reaction with TMA application. The sniffer device with 10.0 mmol/1 AsA could be used to measure TMA vapor from 0.31 to 125 ppm, this covers the maximum permissible concentration in the work place (5.0 ppm of Time Weighted Average concentration) and the sensing level-5 of smell in humans (3.0 ppm). The sniffer device possessed high selectivity for TMA being attributable to the FMO3 substrate specificity, continuous measurability.
机译:一种生物光气体传感器(嗅探器装置)中的溶液通过固定构建含有黄素单加氧酶-3(FMO3,异生素代谢的酶催化的有气味的物质,如三甲胺氧化之一:TMA)到光纤氧传感器的末端与氧敏感钌有机络合物(激发:470纳米,荧光:600纳米)与管形环。用于循环缓冲液A反应单元施加到嗅探器设备的尖端。一种基板再生循环施加到FMO3固定传感器,以便通过单加氧酶与在磷酸盐缓冲液抗坏血酸(ASA)还原试剂系统连接到放大的输出信号。所述生物光学嗅探器是可能的,以检测通过用TMA应用FOM3酶促反应引起的耗氧量。与监听设备10.0毫摩尔/升抗坏血酸可用于测量TMA蒸气从0.31至125 ppm时,此罩所允许的最大浓度在工作地点(时间的5.0ppm的加权平均浓度)和气味的感测层-5人类(3.0 ppm)表示。嗅探器装置所具有的高选择性为TMA可归因于FMO3底物特异性,可测连续。

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