Department of Chemical Sciences, Tezpur University, Tezpur, Assam 784028, India.
Biosens Bioelectron. 2014 Feb 15;52:166-72. doi: 10.1016/j.bios.2013.08.050. Epub 2013 Aug 31.
The work presented here describes a novel, easy and low-cost method of fabrication of a highly sensitive acetylcholinesterase biosensor and its application to detect organophosphate and organocarbamate pesticides. Acetylcholinesterase was electro-immobilized into a thick conducting layer of polypyrrole. Porcine skin gelatin and gluteraldehyde mixture was used for stabilizing the system. Acetylthiocholine chloride was used as the substrate. Polypyrrole catalyzed the electrochemical oxidation of thiocholine and promoted the electron transfer, thus lowering the oxidation potential and increasing the detection sensitivity. Electro oxidation of thiocholine in polypyrrole matrix occurred at 0.1 V under low potential scan rate. The thiocholine sensitivity of the electrode was found to be 143 mA/M. The sensor was applied to detect the sample organophosphate pesticide ethylparaoxon and organocarbamate pesticide carbofuran. The detection limit for paraoxon was found to be 1.1 ppb and that for carbofuran is 0.12 ppb. The sensor showed good intra and inter state precision with relative standard deviation (RSD) 0.742% and 6.56% respectively. Both dry and wet storage stability were studied. The sensor stored at 0°C in dry condition had a good storage stability retaining 70% of its original activity for 4 months. During wet storage, the activity decrease followed the same trend, however, the operational stability at the end of the storage period was found to be less compared to the dry storage case. The developed biosensor is as a promising new tool for analysis of cholinesterase inhibitors.
本文介绍了一种新颖、简单且低成本的乙酰胆碱酯酶生物传感器的制备方法,并将其应用于检测有机磷和有机氮农药。乙酰胆碱酯酶被电固定在聚吡咯的厚导电层中。猪皮明胶和戊二醛混合物用于稳定该系统。乙酰硫代胆碱氯盐被用作底物。聚吡咯催化硫代胆碱的电化学氧化,并促进电子转移,从而降低氧化电位并提高检测灵敏度。在低电位扫描速率下,聚吡咯基质中硫代胆碱的电氧化发生在 0.1 V 处。发现电极对硫代胆碱的灵敏度为 143 mA/M。该传感器被用于检测样品有机磷农药乙基对氧磷和有机氮农药克百威。发现对氧磷的检测限为 1.1 ppb,克百威的检测限为 0.12 ppb。传感器具有良好的内态和外态精度,相对标准偏差(RSD)分别为 0.742%和 6.56%。研究了干态和湿态储存稳定性。在 0°C 干燥条件下储存的传感器具有良好的储存稳定性,可在 4 个月内保留其原始活性的 70%。在湿态储存期间,活性下降遵循相同的趋势,然而,在储存期结束时的操作稳定性发现比干态储存情况差。所开发的生物传感器是分析胆碱酯酶抑制剂的一种很有前途的新工具。