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Alumina sol-gel/sonogel-carbon electrode based on acetylcholinesterase for detection of organophosphorus pesticides
Authors:Zejli Hanane  Hidalgo-Hidalgo de Cisneros José Luis  Naranjo-Rodriguez Ignacio  Liu Baohong  Temsamani Khalid Riffi  Marty Jean-Louis
Affiliation:a Centre de phytopharmacie, Université de Perpignan-Biomem, Perpignan Cedex, France
b Department of Analytical Chemistry, Faculty of Sciences, University of Cádiz, Spain
c Equipe de Recherche Bioelectrochemie et Systèmes Interfaciaux, University Abdelmalek Essaadi, Morocco
d Department of Chemistry, Fudan University, Shanghai 200433, China
Abstract:Two new amperometric biosensors based on immobilization of acetylcholinesterase on a sonogel-carbon electrode for detection of organophosphorous compounds are proposed. The electrodes were prepared applying high-energy ultrasounds directly to the precursors. The first biosensor was obtained by simple entrapping acetylcholinesterase in Al2O3 sol-gel matrix on the sonogel-carbon. The second biosensor was produced in a sandwich configuration. Its preparation involved adsorption of the enzyme and modification via a polymeric membrane such as polyethylene glycol and the ion-exchanger Nafion. The optimal enzyme loading was found to be 0.7 mIU. Both biosensors showed optimal activity in 0.2 M phosphate buffer, pH 7.0, at an operating potential of 210 mV. The detection limit achieved for chlorpyriphos-ethyl-oxon was 2.5 × 10−10 M at a 10-min incubation time.
Keywords:sonogel-carbon electrode   Enzymatic inhibition   Organophosphorus pesticides
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