School of Agricultural Engineering and Food Science, Shandong University of Technology, No.266 Xincun Xilu, Zibo, Shandong 255049, China; Shandong Provincial Engineering Research Center of Vegetable Safety and Quality Traceability, No.266 Xincun Xilu, Zibo, Shandong 255049, China; Zibo City Key Laboratory of Agricultural Product Safety Traceability, No.266 Xincun Xilu, Zibo, Shandong 255049, China.
School of Agricultural Engineering and Food Science, Shandong University of Technology, No.266 Xincun Xilu, Zibo, Shandong 255049, China; Shandong Provincial Engineering Research Center of Vegetable Safety and Quality Traceability, No.266 Xincun Xilu, Zibo, Shandong 255049, China; Zibo City Key Laboratory of Agricultural Product Safety Traceability, No.266 Xincun Xilu, Zibo, Shandong 255049, China.
Bioelectrochemistry. 2022 Dec;148:108227. doi: 10.1016/j.bioelechem.2022.108227. Epub 2022 Aug 11.
In this work, an interference-resistant electrochemical aptasensor that could detect profenofos in vegetables was constructed based on complexes of graphene oxide and polyaniline (GO@PANI) and gold nanoparticles-tetrahedral DNA nanostructure (Au-TDN). Compared with a single chain aptamer, the tetrahedral DNA nanostructure is highly stable and allows the aptamer on this structure to stand in a highly ordered position on an electrode surface. Moreover, the AuNPs are biocompatible and can protect the activity of the aptamer, which can improve the assembly success rate of Au-TDN. Besides, the conductivity of PANI had been tremendously enhanced thanks to the existence of GO, which improved the dispersion of PANI. The GO@PANI was prepared by a chemical synthesis method, which had a large surface area and was able to adsorb many Au-TDN. Under optimal working parameters, the constructed aptasensor exhibited good electrochemical sensing performance with a detection limit of 10.50 pg/mL and a linear range of 1.0 × 10-1.0 × 10 pg/mL. In addition, it was employed in detecting profenofos in vegetables with a good recovery rate of 90.41-116.37 %. More importantly, the aptasensor also has excellent stability and high selectivity. This study provides a promising method to avoid interference in the detection of profenofos by sensors.
在这项工作中,构建了基于氧化石墨烯和聚苯胺(GO@PANI)复合物与金纳米粒子-四面体型 DNA 纳米结构(Au-TDN)的抗干扰电化学适体传感器,用于检测蔬菜中的丙溴磷。与单链适体相比,四面体型 DNA 纳米结构高度稳定,使该结构上的适体能够在电极表面处于高度有序的位置。此外,金纳米粒子具有生物相容性并且可以保护适体的活性,从而提高 Au-TDN 的组装成功率。此外,由于存在 GO,PANI 的电导率得到了极大的增强,这提高了 PANI 的分散性。GO@PANI 通过化学合成方法制备,具有较大的表面积并且能够吸附许多 Au-TDN。在最佳工作参数下,所构建的适体传感器表现出良好的电化学传感性能,检测限为 10.50 pg/mL,线性范围为 1.0×10-1.0×10 pg/mL。此外,它被用于检测蔬菜中的丙溴磷,回收率为 90.41-116.37%。更重要的是,该适体传感器还具有出色的稳定性和高选择性。这项研究提供了一种有前途的方法,可避免传感器检测丙溴磷时受到干扰。