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结晶紫作为一种用于可逆且无标记的pH驱动电化学开关的i-基序结构探针。

Crystal violet as an i-motif structure probe for reversible and label-free pH-driven electrochemical switch.

作者信息

Zhang Xi Yuan, Luo Hong Qun, Li Nian Bing

机构信息

Key Laboratory of Eco-environments in Three Gorges Reservoir Region (Ministry of Education), School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, China.

Key Laboratory of Eco-environments in Three Gorges Reservoir Region (Ministry of Education), School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, China.

出版信息

Anal Biochem. 2014 Jun 15;455:55-9. doi: 10.1016/j.ab.2014.03.015. Epub 2014 Mar 31.

DOI:10.1016/j.ab.2014.03.015
PMID:24699211
Abstract

A simple pH-induced electrochemical switch based on an i-motif structure is developed by using crystal violet as a selective electrochemical probe for the i-motif structure. Thiol-modified cytosine-rich single-strand oligonucleotide (C-rich ssDNA) can be self-assembled on the gold electrode surface via gold-sulfur interaction. Crystal violet is employed as an electrochemical probe for the i-motif structure because of its capability of binding with the i-motif structure through an end-stacking mode. In acidic aqueous solution, crystal violet may approach the electrode surface owing to the formation of the i-motif structure, resulting in an obvious signal, so-called "ON" state. Whereas in neutral or basic aqueous solution, the i-motif structure unfolds to dissociative single strand, which causes crystal violet to leave from the electrode surface, and a weak signal is obtained, so-called "OFF" state. In addition, in the range of pH 4.6-7.3, the increase in current has a good linear relationship (R=0.989) with pH value in the testing solutions. This pH-driven electrochemical switch has the advantages of simplicity, sensitivity, high selectivity, and good reversibility. Furthermore, it provides a possible platform for pH measurement.

摘要

通过使用结晶紫作为i-基序结构的选择性电化学探针,开发了一种基于i-基序结构的简单pH诱导电化学开关。硫醇修饰的富含胞嘧啶的单链寡核苷酸(富含C的单链DNA)可通过金-硫相互作用自组装在金电极表面。结晶紫因其能够通过末端堆积模式与i-基序结构结合而被用作i-基序结构的电化学探针。在酸性水溶液中,由于i-基序结构的形成,结晶紫可能接近电极表面,从而产生明显的信号,即所谓的“开”状态。而在中性或碱性水溶液中,i-基序结构展开为解离的单链,这导致结晶紫离开电极表面,从而获得微弱信号,即所谓的“关”状态。此外,在pH 4.6-7.3范围内,测试溶液中电流的增加与pH值具有良好的线性关系(R=0.989)。这种pH驱动的电化学开关具有简单、灵敏、高选择性和良好可逆性的优点。此外,它为pH测量提供了一个可能的平台。

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