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基于手性 PEDOT 的手性电化学传感选择性电极修饰材料:手性识别的机制和模型。

Chiral PEDOT-Based Enantioselective Electrode Modification Material for Chiral Electrochemical Sensing: Mechanism and Model of Chiral Recognition.

机构信息

School of Pharmacy, Jiangxi Science & Technology Normal University , Nanchang 330013, China.

出版信息

Anal Chem. 2017 Sep 19;89(18):9695-9702. doi: 10.1021/acs.analchem.7b01095. Epub 2017 Aug 25.

DOI:10.1021/acs.analchem.7b01095
PMID:28809103
Abstract

The development of electrochemical methods for enantioselective recognition is a focus of research in pharmaceuticals and biotechnology. In this study, a pair of water-soluble chiral 3,4-ethylenedioxythiophene (EDOT) derivatives, (R)-2'-hydroxymethyl-3,4-ethylenedioxythiophene ((R)-EDTM) and (S)-2'-hydroxymethyl-3,4-ethylenedioxythiophene ((S)-EDTM), were synthesized and electrodeposited on the surface of a glassy carbon electrode (GCE) via current-time (I-t) polymerization in an aqueous LiClO electrolyte. These chiral PEDOT polymers were used to fabricate chiral sensors and to investigate the enantioselective recognition of d-/l-3,4-dihydroxyphenylalanine, d-/l-tryptophan, and (R)-/(S)-propranolol enantiomers, respectively. The results indicated that the (R)-PEDTM/GCE sensor showed a higher peak current response toward the levo or (S) forms of the tested enantiomers, while the opposite phenomenon occurred for (S)-PEDTM/GCE. The mechanism of the stereospecific interaction between these enantiomers and the chiral polymers was determined. Therefore, a model of the chiral recognition by the chiral conducting polymer electrodes and an electrochemical method was proposed. The chirality of the enantiomers was confirmed by two parameters: the chirality of the electrode and the peak current response. These findings pave the way for the application of chiral PEDOT as electrode modification material in the electrochemical chiral recognition field.

摘要

电化学方法用于对映选择性识别的发展是药物和生物技术研究的重点。在这项研究中,合成了一对水溶性手性 3,4-亚乙基二氧噻吩(EDOT)衍生物,(R)-2'-羟甲基-3,4-亚乙基二氧噻吩((R)-EDTM)和(S)-2'-羟甲基-3,4-亚乙基二氧噻吩((S)-EDTM),并通过在含 LiClO 的水溶液中电流时间(I-t)聚合在玻碳电极(GCE)表面电沉积。这些手性 PEDOT 聚合物被用于制备手性传感器,并分别研究 d-/l-3,4-二羟基苯丙氨酸、d-/l-色氨酸和(R)/(S)-普萘洛尔对映异构体的对映选择性识别。结果表明,(R)-PEDTM/GCE 传感器对测试的对映异构体的左旋或(S)形式表现出更高的峰电流响应,而(S)-PEDTM/GCE 则相反。确定了这些对映异构体与手性聚合物之间的立体特异性相互作用的机制。因此,提出了一种手性导电聚合物电极的手性识别模型和电化学方法。通过两个参数来确认对映异构体的手性:电极的手性和峰电流响应。这些发现为手性 PEDOT 在电化学手性识别领域作为电极修饰材料的应用铺平了道路。

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