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Practical Study into Enhancing IgG Immobilisation on Screen-Printed Electrodes for Environmental Applications
Authors:Eric Moore  Nuria Sanvicens  Miloslav Pravda  George G Guilbault
Institution:1. Chemistry Department University College Western Road Cork Ireland;2. Department of Biological Organic Chemistry IIQAB-CSIC Barcelona Spain
Abstract:This work is focused on the influence of pH and applied potential for the immobilisation of rabbit IgG on a carbon screen-printed electrode. The orientation of IgG molecule at the surface is fundamental for activity and reproducibility of the immunosensor. As the electrode potential is increased a particular order may be brought to the immobilised antibodies, i.e. the antibodies adapt a more favourable arrangement on the surface to facilitate better binding. The response increased when changing the pH from basic to acidic medium and the reverse trend was observed for the limit of detection (LOD). When a potential was applied to the electrode, the response generally decreased and the LOD increased in the order acidic > basic > neutral pH. The LODs obtained from antibodies immobilised at acidic pH and + 100 mV were better than the LODs obtained at other conditions.
Keywords:Immunosensor  Immobilisation  Screen-printed Electrode  Antibody Orientation  Igg  Biosensors  Alkaline Phosphatase  p-Aminophenyl Phosphate
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