Key Laboratory of Environment and Health, Ministry of Education & Ministry of Environmental Protection, and State Key Laboratory of Environmental Health (Incubating), School of Public Health, Tongji Medical College, Huazhong University of Science and Technology, #13 Hangkong Road, Wuhan, Hubei 430030, China.
Changjiang Wuhan Waterway Bureau, #50 Dongting Street, Wuhan, Hubei 430014, China.
J Pharm Biomed Anal. 2018 May 30;154:75-84. doi: 10.1016/j.jpba.2018.02.028. Epub 2018 Feb 22.
A new analytical method was developed to detect neomycin in complex biological samples using molecularly imprinted polymer to construct an optical sensor. Fluorescent neomycin-imprinted polymers (fMIPs) containing both imprinted cavity and boronate affinity site were synthesized on the surface of silica-modified quantum dots. The fMIPs exhibited high selectivity to neomycin by having two binding sites for the target analyte. Neomycin analogues (competing for imprinted cavity) and D-glucose (competing for the boronate affinity site) did not affect the selectivity of the fMIPs. When combined with a fluorescent microplate reader, the obtained fMIP sensor displayed a linear concentration-dependent fluorescence quenching in response to neomycin in the range of 2-1000 μg/L, with a limit of detection as 0.16 μg/L. The fMIP sensor was able to detect trace neomycin in biological samples accurately after simple sample pre-treatment. The sensitivity of the fMIP sensor was higher than HPLC equipped with a fluorescence detector. The fMIP sensor containing the doubly selective binding sites provides a selective, sensitive, accurate, and high through-put approach for neomycin monitoring.
开发了一种新的分析方法,使用分子印迹聚合物构建光学传感器来检测复杂生物样品中的新霉素。在硅烷化量子点表面合成了含有印迹空腔和硼酸亲和位点的荧光新霉素印迹聚合物(fMIPs)。fMIPs 通过为目标分析物提供两个结合位点,表现出对新霉素的高选择性。新霉素类似物(竞争印迹空腔)和 D-葡萄糖(竞争硼酸亲和位点)不会影响 fMIPs 的选择性。当与荧光微孔板读数器结合使用时,所得的 fMIP 传感器在 2-1000μg/L 的范围内对新霉素表现出线性浓度依赖性荧光猝灭,检测限为 0.16μg/L。经过简单的样品预处理后,fMIP 传感器能够准确检测生物样品中的痕量新霉素。fMIP 传感器的灵敏度高于配备荧光检测器的 HPLC。含有双重选择性结合位点的 fMIP 传感器为新霉素监测提供了一种选择性、灵敏、准确和高通量的方法。