School of the Environment and Safety Engineering , Jiangsu University , Zhenjiang 212013 , China.
School of Chemistry & Chemical Engineering , Jiangsu University , Zhenjiang 212013 , China.
J Agric Food Chem. 2018 Mar 21;66(11):2996-3002. doi: 10.1021/acs.jafc.7b02803. Epub 2017 Aug 17.
On the basis of HO-mediated growth of gold nanoparticle (AuNPs), a novel plasmonic enzyme-linked immunosorbent assay (pELISA) was developed with a polyclonal antibody for the ultrasensitive simultaneous naked-eye detection of tetrabromobisphenol A bis(2-hydroxyetyl) ether (TBBPA DHEE) and tetrabromobisphenol A mono(hydroxyethyl) ether (TBBPA MHEE), one of the major derivatives and byproducts of tetrabromobisphenol A (TBBPA), respectively. In this modified indirect competitive pELISA, glucose oxidase (GOx) played an important role leading to the growth of AuNPs through a reaction between GOx and glucose to produce hydrogen peroxide (HO). In addition, further signal amplification was achieved via a large number of GOx molecules, which were immobilized on silica nanoparticles carrying poly brushes (SiO@PAA) to increase the enzyme load, and the whole complex was conjugated on the second antibody. Under the optimized conditions, 10 μg/L TBBPA DHEE can be distinguished via the observation of a colored solution, and the limit of detection (LOD) of the method using a microplate reader reaches 3.3 × 10 μg/L. In contrast, the sensitivity of the method was 3 orders of magnitude higher than that using conventional colorimetric ELISA with the same antibody. Furthermore, the proposed approach showed good repeatability and reliability after a recovery test fortified with a variety of targets was performed (recoveries, 78.00-102.79%; coefficient of variation (CV), 4.38-9.87%). To our knowledge, this is the first case in which pELISA was applied for the detection of small molecules via the production of HO from GOx and glucose. The method will be widely used for the investigation of TBBPA DHEE and TBBPA MHEE in real environments.
基于 HO 介导的金纳米粒子 (AuNPs) 的生长,开发了一种新型的等离子体酶联免疫吸附测定 (pELISA),该方法使用多克隆抗体对四溴双酚 A 双 (2-羟乙基) 醚 (TBBPA DHEE) 和四溴双酚 A 单 (2-羟乙基) 醚 (TBBPA MHEE) 进行超灵敏的同时裸眼检测,这两种物质分别是四溴双酚 A (TBBPA) 的主要衍生物和副产物之一。在这种改良的间接竞争 pELISA 中,葡萄糖氧化酶 (GOx) 通过与葡萄糖反应产生过氧化氢 (HO),在 AuNPs 的生长中发挥了重要作用。此外,通过大量固定在带有聚刷的硅纳米粒子上的 GOx 分子实现了进一步的信号放大,从而增加了酶的负载量,整个复合物与第二抗体结合。在优化条件下,通过观察显色溶液可区分 10 μg/L 的 TBBPA DHEE,使用微孔板读数器的方法检出限 (LOD) 达到 3.3×10 μg/L。相比之下,该方法的灵敏度比使用相同抗体的常规比色 ELISA 高 3 个数量级。此外,通过对各种目标进行加标回收测试后,该方法表现出良好的重复性和可靠性(回收率为 78.00-102.79%;变异系数 (CV) 为 4.38-9.87%)。据我们所知,这是首次使用 GOx 和葡萄糖产生 HO 来检测小分子的 pELISA。该方法将广泛用于实际环境中 TBBPA DHEE 和 TBBPA MHEE 的研究。