香兰素
化学
荧光
单克隆抗体
多路复用
色谱法
微球
量子点
流式细胞术
抗体
分子生物学
生物化学
纳米技术
材料科学
化学工程
生物
免疫学
物理
工程类
量子力学
生物信息学
作者
Feng He,Lingling Guo,Liqiang Liu,Xinxin Xu,Liguang Xu,Chuanlai Xu,Hua Kuang,Maozhong Sun
标识
DOI:10.1021/acs.jafc.5c09933
摘要
Vanillin (VAN), methyl vanillin (VER), and ethyl vanillin (EVA) are widely used as flavor enhancers in processed foods. Monitoring their levels is essential to prevent overuse or adulteration, especially in infant foods. Herein, a computational chemistry-aided molecular modeling technique was employed to design specific haptens for VAN, VER, and EVA. High-affinity monoclonal antibodies were generated via hybridoma technology with matrix effect-enhanced screening, yielding half-maximal inhibitory concentrations of 22.10, 49.94, and 40.84 ng/mL. A multiplex quantum dot microsphere-based fluorescence lateral flow immunoassay was developed for the simultaneous detection of VAN, VER, and EVA in infant formula and rice. The quantitative detection ranges in infant formula were 6.31–142.59, 24.07–119.88, and 23.34–214.77 μg/kg; in rice, the detection ranges were 6.71–143.63, 18.51–183.75, and 21.42–167.65 μg/kg. The method was validated through spiked recovery tests and real sample analysis, demonstrating its accuracy and reliability for rapid, high-throughput screening applications.
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