School of Mechanical Engineering, and Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments, Southeast University, Nanjing, 211189, China.
School of Mechanical Engineering, and Jiangsu Key Laboratory for Design and Manufacture of Micro-Nano Biomedical Instruments, Southeast University, Nanjing, 211189, China.
Biosens Bioelectron. 2019 Jul 1;136:112-117. doi: 10.1016/j.bios.2019.04.036. Epub 2019 Apr 25.
In this paper, we present a simple strategy to fabricate a sensitive fluorescence microfluidic sensor based on quantum dots (QDs) aerogel and acetylcholinesterase enzyme (AChE) for organophosphate pesticides (OPs) detection The detection is based on the change of fluorescence intensity of QDs aerogel, which will be partly quenched as a consequence of the hydrolytic reaction of acetylthiocholine (ATCh) catalyzed by the AChE, and then the fluorescence of QDs aerogel is recovered due to decreasing of the enzymatic activity in the presence of OPs. The QDs-AChE aerogel based microfluidic arrays sensor provided good sensitivity for rapid detection of OPs with a detection limit of 0.38 pM, while the detection range is from 10 to 10 M. Due to the result of random orientations of AChE in the 3D porous aerogel nano-structure, the sensor presents similar calibration curves to difference pesticides, which promises the ability of the sensor to monitor total OPs of mixture. This determination sensor shows a low detection limit, wide linear range, and highly accurate determination of total OPs and carbamate content. Finally, we show the proposed sensor can be used to monitor of simple OPs and mixture in spiked fruit samples. This novel QDs-AChE aerogel sensor has an extremely high sensitivity and large detection range, it is a promising tool for accurate, rapid and cost-effective detection of various OP residues on agricultural products.
在本文中,我们提出了一种简单的策略,用于制造基于量子点 (QD) 气凝胶和乙酰胆碱酯酶 (AChE) 的灵敏荧光微流控传感器,用于有机磷农药 (OP) 的检测。该检测基于 QD 气凝胶荧光强度的变化,由于 AChE 催化的乙酰硫代胆碱 (ATCh) 的水解反应,QD 气凝胶的荧光会部分猝灭,然后由于存在 OPs 时酶活性的降低,QD 气凝胶的荧光恢复。基于 QD-AChE 气凝胶的微流控阵列传感器提供了快速检测 OPs 的良好灵敏度,检测限为 0.38 pM,检测范围为 10 到 10 M。由于 AChE 在 3D 多孔气凝胶纳米结构中的随机取向的结果,传感器对不同农药呈现相似的校准曲线,这意味着传感器有能力监测混合物中的总 OPs。该测定传感器具有低检测限、宽线性范围以及对总 OPs 和氨基甲酸酯含量的高度准确测定。最后,我们表明,所提出的传感器可用于监测简单 OPs 和混合物在加标水果样品中的残留。这种新型的 QD-AChE 气凝胶传感器具有极高的灵敏度和大的检测范围,是一种用于准确、快速和经济有效地检测农产品上各种 OP 残留的有前途的工具。