Apilux Amara, Isarankura-Na-Ayudhya Chartchalerm, Tantimongcolwat Tanawut, Prachayasittikul Virapong
Faculty of Medical Technology, Mahidol University, Bangkok 10700, Thailand, Center for Innovation Development and Technology Transfer.
Faculty of Medical Technology, Mahidol University, Bangkok 10700, Thailand, Department of Clinical Microbiology and Applied Technology.
EXCLI J. 2015 Feb 26;14:307-19. doi: 10.17179/excli2014-684. eCollection 2015.
A dramatic increase in pesticide usage in agriculture highlights the need for on-site monitoring for public health and safety. Here, a paper-based sensor combined with a wet system was developed for the simple and rapid screening of organophosphate (OP) and carbamate (CM) pesticides based on the inhibition of acetylcholinesterase (AChE). The paper-based sensor was designed as a foldable device consisting of a cover and detection sheets pre-prepared with indoxyl acetate and AChE, respectively. The paper-based sensor requires only the incubation of a sample on the test zone for 10 minutes, followed by closing of the foldable sheet to initiate the enzymatic reaction. Importantly, the buffer loading hole was additionally designed on the cover sheet to facilitate the interaction of the coated substrate and the immobilized enzyme. This subsequently facilitates the mixing of indoxyl acetate with AChE, resulting in the improved analytical performance of the sensor. The absence or decrease in blue color produced by the AChE hydrolysis of indoxyl acetate can be observed in the presence of OPs and CMs. Under optimized conditions and using image analysis, the limit of detection (LOD) of carbofuran, dichlorvos, carbaryl, paraoxon, and pirimicarb are 0.003, 0.3, 0.5, 0.6, and 0.6 ppm, respectively. The assay could be applied to determine OP and CM residues in spiked food samples. Visual interpretation of the color signal was clearly observed at the concentration of 5 mg/kg. Furthermore, a self-contained sample pre-concentration approach greatly enhanced the detection sensitivity. The paper-based device developed here is low-cost, requires minimal reagents and is easy to handle. As such, it would be practically useful for pesticide screening by non-professional end-users.
农业中农药使用量的急剧增加凸显了对公共卫生和安全进行现场监测的必要性。在此,开发了一种基于纸张的传感器与湿式系统相结合的装置,用于基于乙酰胆碱酯酶(AChE)抑制作用对有机磷(OP)和氨基甲酸酯(CM)农药进行简单快速的筛查。基于纸张的传感器被设计为一种可折叠装置,由一个盖子和分别预先用乙酸吲哚酚和AChE制备的检测片组成。基于纸张的传感器仅需将样品在测试区孵育10分钟,然后合上可折叠片以启动酶促反应。重要的是,在盖板上额外设计了缓冲液加载孔,以促进涂层底物与固定化酶的相互作用。这随后促进了乙酸吲哚酚与AChE的混合,从而提高了传感器的分析性能。在存在OP和CM的情况下,可以观察到乙酸吲哚酚被AChE水解产生的蓝色消失或减弱。在优化条件下并使用图像分析,克百威、敌敌畏、西维因、对氧磷和抗蚜威的检测限(LOD)分别为0.003、0.3、0.5、0.6和0.6 ppm。该测定法可用于测定加标食品样品中的OP和CM残留。在浓度为5 mg/kg时,可以清楚地观察到颜色信号的目视解读。此外,一种独立的样品预浓缩方法大大提高了检测灵敏度。此处开发的基于纸张的装置成本低,所需试剂最少且易于操作。因此,它对于非专业终端用户进行农药筛查将具有实际用途。