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Detection of explosive compounds using Photosystem II-based biosensor

机译:使用基于Photosystem II的生物传感器检测爆炸性化合物

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摘要

The efficacy of a Photosystem II (PS II)-based biosensor for the detection of explosive compounds has been explored. The idea is based on the close similarities in the chemical structures of the widespread explosives and herbicides, with the latter known to inhibit functioning of the PS II by attaching to the binding site of the QB mobile plastoquinone electron acceptor. The gold screen-printed electrodes (Au-SPE) functionalized with PS II-enriched particles were used for the detection of explosives in a droplet biosensor configuration. A crude preparation of PS II produced from spinach leaves, known as BBY particles, was employed to modify the Au-SPE working electrode employing BSA–glutaraldehyde-based immobilization procedure. Inhibition of the PS II functioning was detected by photo-electrochemical measurements in the presence of a mediator (either non-native quinone or ferricyanide). The biosensor was highly responsive to herbicides (as expected) as well as to picric acid, with limits of detection in the nanomolar range, but trace detection of trinitrotoluene (TNT) was not effective. The detection limit for picric acid was 25 nM as compared to -400 nM for TNT with duroquinone mediator. Low affinity of PS II to TNT has been corroborated by means of DCPIP assay; possible reasons for low affinity are discussed.
机译:已经探索了基于光系统II(PS II)的生物传感器检测爆炸性化合物的功效。这个想法是基于广泛的炸药和除草剂在化学结构上的相似性,已知后者通过附着在QB移动质体醌电子受体的结合位点上来抑制PS II的功能。使用富含PS II的颗粒进行功能化的金丝网印刷电极(Au-SPE)用于检测液滴生物传感器配置中的爆炸物。用菠菜叶制成的PS II粗制品,即BBY颗粒,用于采用BSA-戊二醛基固定方法修饰Au-SPE工作电极。在介体(非天然醌或铁氰化物)存在下,通过光电化学测量检测到PS II功能的抑制。该生物传感器对除草剂(如预期的那样)以及苦味酸具有高响应性,检测极限在纳摩尔范围内,但是痕量检测三硝基甲苯(TNT)无效。苦味酸的检出限为25 nM,而使用duroquinone介体的TNT的检出限为-400 nM。通过DCPIP分析证实了PS II对TNT的低亲和力。讨论了低亲和力的可能原因。

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