School of Biochemistry and Biotechnology, University of the Punjab, Lahore 54000, Pakistan; Interdisciplinary Research Center in Biomedical Materials (IRCBM), COMSATS University, Islamabad, Lahore Campus, Lahore 54000, Pakistan.
School of Biochemistry and Biotechnology, University of the Punjab, Lahore 54000, Pakistan; Center for Biosensor Research and Development (CBRD), University of the Punjab, Lahore 54000, Pakistan.
Bioelectrochemistry. 2022 Apr;144:107999. doi: 10.1016/j.bioelechem.2021.107999. Epub 2021 Nov 13.
This work describes the development and optimization of an electrochemical method to evaluate pesticide induced inhibition of honey bee (Apis mellifera) acetylcholinesterase (AChE) by means of acetylcholinesterase biosensor. The inhibition assay was based on the detection of changes in electrochemical activity of the enzyme caused by pesticide. As transducer, nitrogen doped carbon dots BSA (N-CD/BSA) nanocomposite electrodeposited on pencil graphite electrode was used to covalently immobilize AChE. The as-synthesized nanocomposite and fabricated electrodes were characterized for the structural, functional and electrochemical properties. Nanocomposite promoted the electron transfer reaction to catalyze the electro-oxidation of thiocholine and a large current response was obtained by cyclic voltammetry at 0.77 V, indicating successful immobilization of AChE. The sensitivity of Diazinon, an OP insecticide, for honeybee AChE was tested under optimal conditions and a linear response ranging 10-250 nM was obtained with a detection limit of 8.9 nM, and sensitivity 9 uA/nM/cm. The method showed a good operational reproducibility and selectivity of biosensor. Further, the molecular docking provided additional support to the experimental data suggesting irreversible nature and contact toxicity of the pesticide for honey bee AChE. The developed biosensor has proved useful for the diazinon detection in wheat samples with 99% recovery rate.
这项工作描述了一种电化学方法的开发和优化,用于通过乙酰胆碱酯酶生物传感器评估农药对蜜蜂(Apis mellifera)乙酰胆碱酯酶(AChE)的抑制作用。抑制测定基于检测农药引起的酶电化学活性变化。作为传感器,在铅笔石墨电极上电沉积氮掺杂碳点 BSA(N-CD/BSA)纳米复合材料用于共价固定 AChE。合成的纳米复合材料和制备的电极用于结构、功能和电化学性质的表征。纳米复合材料促进了电子转移反应,以催化硫代胆碱的电氧化,并通过循环伏安法在 0.77 V 处获得大的电流响应,表明 AChE 的成功固定。在最佳条件下测试了 OP 杀虫剂二嗪农对蜜蜂 AChE 的灵敏度,得到了 10-250 nM 的线性响应,检测限为 8.9 nM,灵敏度为 9 uA/nM/cm。该方法显示出良好的操作重现性和生物传感器的选择性。此外,分子对接为实验数据提供了额外的支持,表明该农药对蜜蜂 AChE 具有不可逆的性质和接触毒性。所开发的生物传感器已被证明可用于小麦样品中二嗪农的检测,回收率为 99%。