State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin, 130022, P.R. China.
Chemistry. 2012 Oct 15;18(42):13494-500. doi: 10.1002/chem.201103768. Epub 2012 Sep 3.
This work describes a novel strategy for the highly sensitive and selective detection of cysteine (Cys) and glutathione (GSH) based on the Hg(2+)-AGRO100-malachite green (MG) complex system. The dye MG, which has a very low quantum yield in aqueous solution by itself, can bind with the thymine-rich DNA AGRO100 in the presence of Hg(2+) ions to generate a striking fluorescence intensity enhancement of 1000-fold. As sulfur-containing amino acids, Cys and GSH effectively sequester Hg(2+) ions from the Hg(2+)-AGRO100-MG complex structure to switch the 'lit-up' chemosensor to the 'off' state (about a 50-fold fluorescence intensity decrease), thus providing a facile, but effective, method to probe for Cys/GSH. The fluorescence titration, UV absorption, CD, and Raman spectra provide some insight into the structural and chemical basis for the enhancement effect. The formation of the Hg(2+)-AGRO100-MG complex significantly affects the electronic structure and conformation of the MG molecule by leading to an extended π system, which is the likely origin of the observed striking fluorescence intensity enhancement. Notably, the proposed sensing platform exhibits exquisite selectivity and sensitivity toward Cys/GSH with limits of detection of 5 nM for Cys and 10 nM for GSH, respectively. Furthermore, the straightforward assay design avoids labeling of the probe, uses only commercially available materials, and still displays comparable sensitivity and excellent selectivity.
这项工作描述了一种基于 Hg(2+)-AGRO100-孔雀石绿(MG)复合物体系的用于高灵敏度和选择性检测半胱氨酸(Cys)和谷胱甘肽(GSH)的新策略。染料 MG 在水溶液中本身量子产率非常低,但在 Hg(2+)离子存在下可以与富含胸腺嘧啶的 DNA AGRO100 结合,产生 1000 倍的荧光强度增强。作为含硫氨基酸,Cys 和 GSH 可有效从 Hg(2+)-AGRO100-MG 复合物结构中螯合 Hg(2+)离子,从而将“点亮”的化学传感器切换为“关闭”状态(荧光强度约降低 50 倍),从而提供了一种简便但有效的方法来探测 Cys/GSH。荧光滴定、紫外吸收、CD 和拉曼光谱为增强效应的结构和化学基础提供了一些见解。Hg(2+)-AGRO100-MG 复合物的形成通过导致扩展的π体系显著影响 MG 分子的电子结构和构象,这可能是观察到的显著荧光强度增强的原因。值得注意的是,所提出的传感平台对 Cys/GSH 表现出出色的选择性和灵敏度,对 Cys 的检测限为 5 nM,对 GSH 的检测限为 10 nM。此外,这种简单的检测设计避免了探针的标记,仅使用市售材料,仍具有可比的灵敏度和优异的选择性。