Kubo Takuya, Arimura Shunsuke, Naito Toyohiro, Sano Tomoharu, Otsuka Koji
Graduate School of Engineering, Kyoto University.
Center for Environmental Measurement and Analysis, National Institute for Environmental Studies.
Anal Sci. 2017;33(11):1311-1315. doi: 10.2116/analsci.33.1311.
We report on a molecularly imprinted hydrogel for the selective fluorescent detection of a targeting protein. To achieve the fluorescent detection of proteins, a fluorescent functional monomer was synthesized with fluorescein isothiocyanate and allylamine. The monomer (FITC-AA) provided a gradable alteration of the absorption spectrum, and a decrease of the fluorescent intensity due to an interaction with the model protein, lysozyme. Also, the imprinted hydrogel (PI-gel) was simply prepared with FITC-AA, the anionic functional monomers, poly(ethylene glycol) dimethacrylate, and lysozyme by radical photo polymerization. The PI-gel showed selective adsorption for lysozyme and the imprinting factor reached to 2.7. Additionally, the PI-gel indicated a gradual decrease of the fluorescent intensity corresponding to the lysozyme concertation similar to a competitive enzyme-linked immunosorbent assay detection.
我们报道了一种用于靶向蛋白选择性荧光检测的分子印迹水凝胶。为实现蛋白质的荧光检测,用异硫氰酸荧光素和烯丙胺合成了一种荧光功能单体。该单体(FITC - AA)呈现出吸收光谱的可分级变化,并且由于与模型蛋白溶菌酶相互作用导致荧光强度降低。此外,印迹水凝胶(PI - gel)通过自由基光聚合,简单地由FITC - AA、阴离子功能单体、聚乙二醇二甲基丙烯酸酯和溶菌酶制备而成。PI - gel对溶菌酶表现出选择性吸附,印迹因子达到2.7。此外,PI - gel显示出荧光强度随着溶菌酶浓度逐渐降低,这类似于竞争性酶联免疫吸附测定检测。