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基于分子印迹聚合物的电化学传感器对手性β受体阻滞剂对映体的同时手性识别。

Simultaneous enantiospecific recognition of several β-blocker enantiomers using molecularly imprinted polymer-based electrochemical sensor.

机构信息

Analytical Chemistry Department, Iuliu Hatieganu University of Medicine and Pharmacy , 4, Louis Pasteur Street, 400349, Cluj-Napoca, Romania.

出版信息

Anal Chem. 2015 Mar 3;87(5):2755-63. doi: 10.1021/ac504036m. Epub 2015 Feb 16.

DOI:10.1021/ac504036m
PMID:25630982
Abstract

The development of a chiral electrochemical sensor using an electrogenerated molecularly imprinted polymer (MIP)-based ultrathin film using R(+)-atenolol (ATNL) as a template was reported. The proposed sensor exhibited distinctive enantiospecific oxidation peaks toward the R-antipodes of four β-blocker representatives and additional oxidation peaks common to both enantiomers of each studied β-blocker, allowing thus the simultaneous analysis of all of their enantiomers in a single analysis. The specific preconditioning of the polymer by alternative exposure to aqueous and nonaqueous medium was proven to be essential for the chiral recognition ability of the obtained sensor. The rebinding property of the MIP film was studied by using a well-known redox probe, a change in the morphology and diffusive permeability of the thin polymeric layer in the presence of its template being observed. The applicability of the optimized analytical procedure was demonstrated by the analysis of ATNL's enantiomers in the range of 1.88 × 10(-7)-1.88 × 10(-5) mol/L. The developed polymeric interface is the first reported transductor of a chiral electrochemical sensor able to exhibit simultaneous enantiospecificity toward several β-blocker representatives extensively used in the pharmaceutical and biomedical fields, offering good prospects in the simple, cost-effective, and fast assessment of their enantiomeric ratio and total concentration.

摘要

报道了一种使用(+)-阿替洛尔(ATNL)作为模板的电生成分子印迹聚合物(MIP)基超薄膜制备手性电化学传感器的方法。所提出的传感器对四种β受体阻滞剂代表物的 R-对映体表现出独特的对映体选择性氧化峰,以及每个研究的β受体阻滞剂的两种对映体共有的额外氧化峰,从而允许在单次分析中同时分析它们的所有对映体。通过交替暴露于水相和非水相介质对聚合物进行特殊预处理,被证明对手性识别能力至关重要。使用著名的氧化还原探针研究了 MIP 膜的再结合特性,观察到在存在模板的情况下,薄聚合物层的形态和扩散渗透性发生变化。通过在 1.88×10(-7)-1.88×10(-5)mol/L 范围内分析 ATNL 的对映体,证明了优化分析程序的适用性。所开发的聚合界面是首个报道的手性电化学传感器的换能器,能够对广泛应用于制药和生物医学领域的几种β受体阻滞剂代表物表现出同时的对映体选择性,为简单、经济高效、快速评估它们的对映体比例和总浓度提供了良好的前景。

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