Ghorai Anupam, Mondal Jahangir, Chowdhury Shubhamoy, Patra Goutam K
Department of Chemistry, Guru Ghasidas Vishwavidyalaya, Bilaspur, CG, India.
Dalton Trans. 2016 Jul 28;45(28):11540-53. doi: 10.1039/c6dt01795a. Epub 2016 Jun 29.
A novel, quinoline-based smart probe L has been designed for the detection of Al(3+) and Cu(2+) at physiological range. The unprecedented solvent-dependent sensitivities of the probe L for simultaneous detection of Al(3+) and Cu(2+) ions with high selectivity and sensitivity have been observed for the first time. It displays quick responses through visible colorimetric as well as fluorogenic changes towards both Al(3+) and Cu(2+), as delineated by absorption and fluorescence titrations. The sensitivity of the fluorescence-based assay (12.6 nM) for Al(3+) and (18.4 nM) for Cu(2+) is far below the limit recommended in the World Health Organization (WHO) guidelines for drinking water. From (1)H NMR data, the Job plot and the ESI-MS spectrum, 1 : 2 stoichiometric complexations between L and both metals have been established. The geometry and spectral property of L and its metal complexes have been well rationalized by DFT calculations. This probe L has been tested as being highly suitable for mapping Al(3+) and Cu(2+) in human breast cancer cells, MCF7, thus providing a wonderful candidate for tracking Al(3+) and Cu(2+) in biological organisms and processes. The proposed chemosensor L has also been successfully applied for analysis of real samples.
一种新型的基于喹啉的智能探针L已被设计用于在生理范围内检测Al(3+)和Cu(2+)。首次观察到探针L对Al(3+)和Cu(2+)离子同时检测具有前所未有的溶剂依赖性敏感性,且具有高选择性和灵敏度。如吸收和荧光滴定所示,它通过可见比色以及荧光变化对Al(3+)和Cu(2+)都显示出快速响应。基于荧光的检测方法对Al(3+)的灵敏度为(12.6 nM),对Cu(2+)的灵敏度为(18.4 nM),远低于世界卫生组织(WHO)饮用水指南中推荐的限值。通过(1)H NMR数据、Job曲线和ESI-MS光谱,已确定L与两种金属之间形成1 : 2化学计量比的络合物。通过DFT计算很好地解释了L及其金属络合物的几何结构和光谱性质。该探针L已被测试非常适合用于绘制人乳腺癌细胞MCF7中的Al(3+)和Cu(2+),从而为在生物有机体和过程中追踪Al(3+)和Cu(2+)提供了一个很好的候选物。所提出的化学传感器L也已成功应用于实际样品的分析。