Key Laboratory of Plant Resource Conservation and Germplasm Innovation in Mountainous Region (Ministry of Education), College of Life Sciences, Guizhou University, Guiyang, 550025, China; Guizhou Province Key Laboratory of Fermentation Engineering and Biopharmacy, School of Liquor and Food Engineering, Guizhou University, Guiyang, 550025, China.
Guizhou Province Key Laboratory of Fermentation Engineering and Biopharmacy, School of Liquor and Food Engineering, Guizhou University, Guiyang, 550025, China.
Anal Chim Acta. 2023 Jul 11;1264:341325. doi: 10.1016/j.aca.2023.341325. Epub 2023 May 4.
The long-term and excessive use of organophosphorus pesticides (OPs) leads to hazardous residues in the environment, which threatens human health to a considerable extent. Colorimetric methods can quickly and readily identify pesticide residue, but they still have various challenges in accuracy and stability. Herein, a smartphone-assisted and non-enzymatic colorimetric biosensor was constructed for rapid monitoring of multiple OPs based on the enhanced effect of aptamer on the catalytic ability of octahedral AgO. It was demonstrated that the aptamer sequence could enhance the affinity of colloidal AgO to chromogenic substrates, and accelerate the generation of oxygen radicals such as superoxide radical (·O) and singlet oxygen (O) from dissolved oxygen, thereby significantly increasing the oxidase activity of octahedral AgO. The color change of the solution can be easily converted to the corresponding RGB values by a smartphone for quantitative and rapid detection of multiple OPs. Hence, the smartphone-based and visual biosensor of multiple OPs was acquired with limit of detection of 10 μg L, 28 μg L and 40 μg L for isocarbophos, profenofos and omethoate, respectively. The colorimetric biosensor also exhibited good recoveries in several environmental and biological samples, showing that it may have broad application prospects for detecting OPs residues.
长期和过量使用有机磷农药(OPs)会导致环境中有害残留,这在相当大程度上威胁着人类健康。比色法可以快速、简便地识别农药残留,但在准确性和稳定性方面仍存在各种挑战。本文基于适配体增强八面体 AgO 催化能力的作用,构建了一种智能手机辅助的非酶比色生物传感器,用于快速监测多种 OPs。结果表明,适配体序列可以增强胶体 AgO 与显色底物的亲和力,并加速溶解氧产生超氧自由基(·O)和单线态氧(1O2)等氧自由基,从而显著提高八面体 AgO 的氧化酶活性。溶液的颜色变化可以通过智能手机轻松转换为相应的 RGB 值,从而实现对多种 OPs 的定量和快速检测。因此,获得了基于智能手机的可视化多 OP 比色生物传感器,对异恶草松、丙溴磷和氧乐果的检测限分别为 10μg/L、28μg/L 和 40μg/L。比色生物传感器在几种环境和生物样品中的回收率也较好,表明其在检测 OPs 残留方面可能具有广阔的应用前景。