Mulchandani P, Chen W, Mulchandani A, Wang J, Chen L
Department of Chemical and Environmental Engineering, University of California, Riverside, CA 92521, USA.
Biosens Bioelectron. 2001 Sep;16(7-8):433-7. doi: 10.1016/s0956-5663(01)00157-9.
An amperometric microbial biosensor for the direct measurement of organophosphate nerve agents is described. The sensor is based on a carbon paste electrode containing genetically engineered cells expressing organophosphorus hydrolase (OPH) on the cell surface. OPH catalyzes the hydrolysis of organophosphorus pesticides with p-nitrophenyl substituent such as paraoxon, parathion and methyl parathion to p-nitrophenol. The later is detected anodically at the carbon transducer with the oxidation current being proportional to the nerve-agent concentration. The sensor sensitivity was optimized with respect to the buffer pH and loading of cells immobilized using paraoxon as substrate. The best sensitivity was obtained using a sensor constructed with 10 mg of wet cell weight per 100 mg of carbon paste and operating in pH 8.5 buffer. Using these conditions, the biosensor was used to measure as low as 0.2 microM paraoxon and 1 microM methyl parathion with very good sensitivity, excellent selectivity and reproducibility. The microbial biosensor had excellent storage stability, retaining 100% of its original activity when stored at 4 degrees C for up to 45 days.
描述了一种用于直接测量有机磷神经毒剂的电流型微生物生物传感器。该传感器基于一种碳糊电极,其中含有在细胞表面表达有机磷水解酶(OPH)的基因工程细胞。OPH催化具有对硝基苯基取代基的有机磷农药(如对氧磷、对硫磷和甲基对硫磷)水解为对硝基苯酚。后者在碳传感器上进行阳极检测,氧化电流与神经毒剂浓度成正比。针对缓冲液pH值和以对氧磷为底物固定化细胞的负载量,对传感器灵敏度进行了优化。使用每100毫克碳糊中含有10毫克湿细胞重量且在pH 8.5缓冲液中运行的传感器可获得最佳灵敏度。在这些条件下,该生物传感器用于测量低至0.2微摩尔的对氧磷和1微摩尔的甲基对硫磷,具有非常好的灵敏度、出色的选择性和重现性。该微生物生物传感器具有出色的储存稳定性,在4℃下储存长达45天时仍保留其原始活性的100%。