Université Perpignan Via Domitia, Institut de Modélisation et d'Analyse en Géo-Environnement et Santé, Perpignan, France.
Anal Chim Acta. 2012 Apr 29;724:92-7. doi: 10.1016/j.aca.2012.02.035. Epub 2012 Feb 28.
Okadaic acid (OA), a lipophilic phycotoxin is mainly produced by toxigenic dinoflagellates. The need to develop high performing methods for OA analysis able to improve the traditional ones is evident. In this work, a novel experimental methodology for label-free detection of OA was developed. Protein G magnetic beads (protein-G-MBs) modified gold electrode was used to immobilize anti-OA monoclonal antibody (anti-OA-MAb). Preliminary, colorimetric tests were performed in order to validate protein-G-MBs and anti-OA-MAb reaction. Electrochemical detection was carried out by differential pulse voltammetry in ferri/ferrocyanide solution. The limit of detection value obtained (0.5 μg L(-1)) validated the developed electrochemical immunosensor as a promising tool for routine use. The matrix effect and the recovery rate were also assessed with real samples, showing a good percentage of recovery.
冈田酸(OA)是一种亲脂性藻毒素,主要由产毒腰鞭毛藻产生。显然,需要开发高性能的 OA 分析方法来改进传统方法。在这项工作中,开发了一种用于 OA 无标记检测的新型实验方法。用蛋白 G 磁珠(protein-G-MBs)修饰的金电极来固定抗 OA 单克隆抗体(anti-OA-MAb)。初步进行了比色试验以验证蛋白 G-MBs 和抗 OA-MAb 反应。在铁氰化钾溶液中通过差分脉冲伏安法进行电化学检测。获得的检测限(0.5 μg L(-1))验证了所开发的电化学生物传感器作为常规用途的有前途的工具。还使用实际样品评估了基质效应和回收率,显示出良好的回收率。