School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210023, China.
School of Medical Technology, Beijing Institute of Technology, Beijing 100081, China.
Anal Chem. 2024 Oct 22;96(42):16842-16853. doi: 10.1021/acs.analchem.4c03589. Epub 2024 Oct 10.
Limitations in the sensitivity, linear detection range, and cross-reaction of lateral flow immunoassays mainly hamper their application in rapid screening for multiple targets. In this work, we designed a new time-resolved fluorescence immunoassay (TRFIA) platform to overcome these limitations. This platform uses europium chelate polystyrene (PS@Eu) nanoparticles conjugated with monoclonal antibodies to sense multiple mycotoxins. We employed a competitive TRFIA protocol in which the conjugated PS@Eu was used on the surfaces of photonic microbead arrays (PMAs). The TRFIA signal of PMAs on the pad was recorded with the digital time-resolved fluorescence reader. The developed TRFIA shows wide detection linear ranges (0.01-1000 ng/mL for DON, 0.1-100 ng/mL for OTA, and 0.01-100 ng/mL for AFB), low limits of detection (LODs) (7.9 pg/mL for DON, 18 pg/mL for OTA, and 7.7 pg/mL for AFB), good specificity, good recovery ratios (76.68-117.26%), and good reproducibility in grain samples. The simulated fluorescence enhancement effect of PMA indicated that the electric field distribution on the surface of PS@Eu on PMA is twice higher than that on the surface of PS@Eu. The new TRFIA for three kinds of mycotoxins was 1000-fold more sensitive than the classical TRFIA, and it has great potential application in rapid screening for multiple targets.
侧向流动免疫分析的灵敏度、线性检测范围和交叉反应的局限性主要阻碍了它们在快速筛选多种目标物中的应用。在这项工作中,我们设计了一种新的时间分辨荧光免疫分析(TRFIA)平台来克服这些局限性。该平台使用铕螯合聚苯乙烯(PS@Eu)纳米粒子与单克隆抗体结合来检测多种真菌毒素。我们采用了竞争型 TRFIA 方案,其中共轭 PS@Eu 被用于光子微珠阵列(PMAs)的表面。PMAs 垫上的 TRFIA 信号由数字时间分辨荧光读取器记录。开发的 TRFIA 具有宽的检测线性范围(DON 的 0.01-1000ng/mL,OTA 的 0.1-100ng/mL,AFB 的 0.01-100ng/mL)、低检测限(DON 的 7.9pg/mL,OTA 的 18pg/mL,AFB 的 7.7pg/mL)、良好的特异性、良好的回收率(76.68-117.26%)和谷物样品中的良好重现性。PMA 的模拟荧光增强效应表明,PMA 上 PS@Eu 的表面电场分布比 PS@Eu 表面的电场分布高两倍。用于三种真菌毒素的新型 TRFIA 比经典 TRFIA 灵敏 1000 倍,具有在快速筛选多种目标物方面的巨大应用潜力。