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用于直接测定对硝基苯基取代有机磷酸酯神经毒剂的高灵敏度和高选择性安培型微生物生物传感器。

Highly sensitive and selective amperometric microbial biosensor for direct determination of p-nitrophenyl-substituted organophosphate nerve agents.

作者信息

Lei Yu, Mulchandani Priti, Wang Joseph, Chen Wilfred, Mulchandani Ashok

机构信息

Department of Chemical and Environmental Engineering, University of California, Riverside, California 92521, USA.

出版信息

Environ Sci Technol. 2005 Nov 15;39(22):8853-7. doi: 10.1021/es050720b.

Abstract

We report herein a whole cell-based amperometric biosensor for highly selective, highly sensitive, direct, single-step, rapid, and cost-effective determination of organophosphate pesticides with a p-nitrophenyl substituent. The biosensor was comprised of a p-nitrophenol degrader, Pseudomonas putida JS444, genetically engineered to express organophosphorus hydrolase (OPH) on the cell surface immobilized on the carbon paste electrode. Surface-expressed OPH catalyzed hydrolysis of the p-nitrophenyl substituent organophosphorus pesticides such as paraoxon, parathion, and methyl parathion to release p-nitrophenol, which was subsequently degraded by the enzymatic machinery of P. putida JS444. The electrooxidization current of the intermediates was measured and correlated to the concentration of organophosphates. The best sensitivity and response time were obtained using a sensor constructed with 0.086 mg dry weight of cells operating at 600 mV applied potential (vs Ag/AgCl reference) in 50 mM citrate--phosphate pH 7.5 buffer with 50 microM CoCl2 at room temperature. Under optimum operating conditions the biosensor measured as low as 0.28 ppb of paraoxon, 0.26 ppb of methyl parathion, and 0.29 ppb parathion. These detection limits are comparable to cholinesterase inhibition-based biosensors. Unlike the inhibition-based format, this biosensor manifests a selective response to organophosphate pesticides with a p-nitrophenyl substituent only, has a simplified single-step protocol with short response time, and can be used for repetitive/multiple and on-line analysis. The service life of the microbial amperometric biosensor was 5 days when stored in the operating buffer at 4 degrees C. The new biosensor offers great promise for rapid environmental monitoring of OP pesticides with nitrophenyl substituent.

摘要

我们在此报告一种基于全细胞的安培生物传感器,用于高选择性、高灵敏度、直接、单步、快速且经济高效地测定带有对硝基苯基取代基的有机磷农药。该生物传感器由对硝基苯酚降解菌恶臭假单胞菌JS444组成,通过基因工程改造使其在固定于碳糊电极上的细胞表面表达有机磷水解酶(OPH)。表面表达的OPH催化对硝基苯基取代基有机磷农药(如对氧磷、对硫磷和甲基对硫磷)的水解,释放出对硝基苯酚,随后该对硝基苯酚被恶臭假单胞菌JS444的酶系降解。测量中间体的电氧化电流,并将其与有机磷的浓度相关联。使用由0.086毫克干重细胞构建的传感器,在室温下于含50 microM氯化钴的50 mM柠檬酸盐 - 磷酸盐pH 7.5缓冲液中,施加600 mV的工作电位(相对于Ag/AgCl参比电极)时,可获得最佳灵敏度和响应时间。在最佳操作条件下,该生物传感器可检测低至0.28 ppb的对氧磷、0.26 ppb的甲基对硫磷和0.29 ppb的对硫磷。这些检测限与基于胆碱酯酶抑制的生物传感器相当。与基于抑制的形式不同,该生物传感器仅对带有对硝基苯基取代基的有机磷农药表现出选择性响应,具有简化的单步方案且响应时间短,可用于重复/多次和在线分析。当在4℃的操作缓冲液中储存时,微生物安培生物传感器的使用寿命为5天。这种新型生物传感器为快速环境监测带有硝基苯基取代基的有机磷农药提供了巨大的前景。

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