Rapid Detection of Methomyl and Organophosphorous Pesticides with Portable Potentiometric Biosensor

被引:2
作者
Khaled, Elmorsy [1 ]
Kamel, Manal S. [1 ]
Hassan, H.N.A. [1 ]
Malhat, Farag M. [2 ]
Abdel-Gawad, Hassan [3 ]
机构
[1] Microanalysis Laboratory, National Research Centre, 33 El Bohouth St., Dokki, Giza
[2] Pesticide Residues and Environmental Pollution Department, Central Agricultural Pesticide Laboratory, Agricultural Research Centre, Giza, Dokki
[3] Applied Organic Chemistry Department, National Research Centre, 33 El Bohouth St., Dokki, Giza
关键词
Chlorpyrifos; Disposable potentiometric sensor; Field measurement; Methomyl; Pesticide detection; Prothiofos;
D O I
10.1080/22297928.2015.1090332
中图分类号
学科分类号
摘要
Simple portable potentiometric biosensor has been assessed for rapid in-field detection of neurotoxic anticholineesterase pesticides. The proposed biosensor based on inhibition of the acetylcholinesterase enzyme (AChE) by carbamate, organophosphorous pesticides, namely; methomyl, prothiofos and chlorpyrifos. Comprehensive studies were performed for the optimum measuring parameters for each pesticide and its degradation products. Based on the relative inhibition action of pesticide on AChE activity, different sensitivities were recorded ranging between 0.25 ng to 37.5 µg mL-1 depending on the nature of pesticide tested and its detoxification affect (LD). From different degradation products of methomyl, inhibition by methomyl S-oxide and methomyl S,S-dioxide were more potent allowing determination of 0.20 and 0.088 ng mL-1, respectively. Reasonable average recoveries ranging between 96.22±1.98 and 106.02±2.10 % were obtained. The applicability of the proposed method was tested by determination of pesticides in their commercial formulation and agricultural drainage water samples without pre-treatment procedures. Acceptable sensitivity and accuracy were obtained compared with the official chromatographic method indicated by good average recoveries between 94.73±2.74 and 108.3±0.80 %. The proposed sensors are promising and can be used as simple and direct screening devices for pesticide monitoring in field conditions available to unskilled end-users with significant decrease in cost per analysis to complement or replace the classical chromatographic methods. © 2015, Har Krishan Bhalla & Sons.
引用
收藏
页码:117 / 126
页数:9
相关论文
共 37 条
[1]  
Karr J., Dudley D., Ecological perspective on water quality goals, Environ. Manage, 5, pp. 55-68, (1981)
[2]  
Eldefrawi A., References, Comprehensive Insect Physiology, Biochemistry and Pharmacology, (1985)
[3]  
Hassal K., The Chemistry of Pesticides: Their Metabolism, Mode of Action and Uses in Crop Protection, (1983)
[4]  
Baron R., Carbamate insecticides, pp. 3-6, (1991)
[5]  
Stenersen J., Chemical Pesticides: Mode of Action and Toxicology, (2004)
[6]  
Kim T., Kuca K., Jun D., Jung Y., Design and synthesis of new bis-pyridinium oxime reactivators for acetylcholinesterase inhibited by organophosphorous nerve agents, Bioorgan. Med. Chem. Lett, 15, pp. 2914-2917, (2005)
[7]  
Chapalamadugu S., Chaudhry G., Microbiological and biotechnological aspects of metabolism of carbamates and organophosphates, Crit. Rev. Biotechnol, 12, pp. 357-389, (1992)
[8]  
Aspelin L., Pesticides Industry Sales and Usage, 1992 and 1993 Market Estimates. 1210 USEPA, (1994)
[9]  
Agriculture: towards 2010 document. In: Proceedings of the C 93/94Document 1220 of 27th Session of the FAO Conference, (2010)
[10]  
Ali I., Aboul-Enein H.Y., Determination of chiral ratio of o,p-DDT and o,p-DDD pesticides on polysaccharides CSPs by HPLC under reversed phase mode, Environ. Toxicol, 17, pp. 329-333, (2002)