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通过使用分子印迹聚合物(MIP)识别纳米层的激发态质子转移实现对磷酸化氨基酸的比率荧光检测。

Ratiometric Fluorescence Detection of Phosphorylated Amino Acids Through Excited-State Proton Transfer by Using Molecularly Imprinted Polymer (MIP) Recognition Nanolayers.

作者信息

Wan Wei, Descalzo Ana B, Shinde Sudhirkumar, Weißhoff Hardy, Orellana Guillermo, Sellergren Börje, Rurack Knut

机构信息

Chemical and Optical Sensing Division, Bundesanstalt für Materialforschung und -prüfung (BAM), Richard-Willstätter-Strasse 11, 12489, Berlin, Germany.

Department of Organic Chemistry, Complutense University of Madrid (UCM), 28040, Madrid, Spain.

出版信息

Chemistry. 2017 Nov 13;23(63):15974-15983. doi: 10.1002/chem.201703041. Epub 2017 Oct 19.

Abstract

A 2,3-diaminophenazine bis-urea fluorescent probe monomer (1) was developed. It responds to phenylphosphate and phosphorylated amino acids in a ratiometric fashion with enhanced fluorescence accompanied by the development of a redshifted emission band arising from an excited-state proton transfer (ESPT) process in the hydrogen-bonded probe/analyte complex. The two urea groups of 1 form a cleft-like binding pocket (K >10  L  mol for 1:2 complex). Imprinting of 1 in presence of ethyl ester- and fluorenylmethyloxycarbonyl (Fmoc)-protected phosphorylated tyrosine (Fmoc-pTyr-OEt) as the template, methacrylamide as co-monomer, and ethyleneglycol dimethacrylate as cross-linker gave few-nanometer-thick molecularly imprinted polymer (MIP) shells on silica core microparticles with excellent selectivity for the template in a buffered biphasic assay. The supramolecular recognition features were established by spectroscopic and NMR studies. Rational screening of co-monomers and cross-linkers allowed to single out the best performing MIP components, giving significant imprinting factors (IF>3.5) while retaining ESPT emission and the ratiometric response in the thin polymer shell. Combination of the bead-based detection scheme with the phase-transfer assay dramatically improved the IF to 15.9, allowing sensitive determination of the analyte directly in aqueous media.

摘要

开发了一种2,3-二氨基吩嗪双脲荧光探针单体(1)。它以比率方式响应苯基磷酸酯和磷酸化氨基酸,荧光增强,同时在氢键结合的探针/分析物复合物中发生激发态质子转移(ESPT)过程,产生红移发射带。1的两个脲基形成一个裂缝状结合口袋(对于1:2复合物,K>10 L·mol)。以乙酯基和芴甲氧羰基(Fmoc)保护的磷酸化酪氨酸(Fmoc-pTyr-OEt)为模板、甲基丙烯酰胺为共聚单体、乙二醇二甲基丙烯酸酯为交联剂,在1存在下进行印迹,在硅胶核微粒上形成了几纳米厚的分子印迹聚合物(MIP)壳,在缓冲双相测定中对模板具有优异的选择性。通过光谱和核磁共振研究确定了超分子识别特征。通过合理筛选共聚单体和交联剂,可以选出性能最佳的MIP组分,在薄聚合物壳中保留ESPT发射和比率响应的同时,给出显著的印迹因子(IF>3.5)。基于珠子的检测方案与相转移测定相结合,将IF显著提高到15.9,从而能够直接在水性介质中灵敏地测定分析物。

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