Department of Chemistry, Jadavpur University, Kolkata 700032, India.
Photochem Photobiol Sci. 2018 Aug 8;17(8):1068-1074. doi: 10.1039/c8pp00186c.
A terpyridine based compound L1 was designed and synthesized as an "off-on" chemosensor for the detection of Zn2+. Chemosensor L1 showed excellent selectivity and sensitivity toward Zn2+ by exhibiting a large fluorescence enhancement (∼51-fold) at 370 nm whereas other competitive metal ions did not show any noticeable change in the emission spectra of chemosensor L1. The chemosensor (L1) was shown to detect Zn2+ ions down to 9.76 μM at pH 7.4. However, chemosensor L1 binds Zn2+ in a 1 : 2 ratio (receptor : metal) with an association constant of 1.85 × 104 (R2 = 0.993) and this 1 : 2 stoichiometric fashion is established on the basis of a Job plot and mass spectroscopy. DFT/TD-DFT calculations were carried out to understand the binding nature, coordination features and electronic properties of L1 and the L1-2Zn2+ complex. In addition, this "turn-on" fluorescence probe was effectively used to image intracellular Zn2+ ions in cultured MDA-MB-468 cells.
一种基于三吡啶的化合物 L1 被设计并合成,作为一种用于检测 Zn2+的“开-关”型化学传感器。化学传感器 L1 对 Zn2+表现出优异的选择性和灵敏度,在 370nm 处表现出约 51 倍的荧光增强,而其他竞争金属离子在化学传感器 L1 的发射光谱中没有任何明显变化。该化学传感器(L1)在 pH 7.4 下可检测低至 9.76μM 的 Zn2+离子。然而,化学传感器 L1 以 1:2 的比例(受体:金属)与 Zn2+结合,结合常数为 1.85×104(R2=0.993),这种 1:2 的计量比是基于 Job 图和质谱确定的。进行了 DFT/TD-DFT 计算,以了解 L1 和 L1-2Zn2+配合物的结合性质、配位特征和电子性质。此外,这种“开-关”型荧光探针有效地用于在培养的 MDA-MB-468 细胞中成像细胞内 Zn2+离子。