Zhang Xiaoping, Liu Jinxiao, Wang Jun, Han Lu, Ma Shengtao, Zhao Mingqin, Xi Gaolei
College of Tobacco Science, Henan Agricultural University, Zhengzhou 450002, Henan, China.
Technology Center, China Tobacco Henan Industrial Co., Ltd., Zhengzhou 450016, Henan, China.
J Photochem Photobiol B. 2021 Oct;223:112279. doi: 10.1016/j.jphotobiol.2021.112279. Epub 2021 Aug 4.
A novel highly selective and sensitive turn-on fluorescent chemosensor PCE to recognize Zn has been developed. The sensor PCE displays a remarkable fluorescent enhancement at 456 nm (λ = 340 nm) with Zn without the interference of other biologically important relevant metal ions in aqueous acetonitrile solution. Job's plot and mass spectral studies divulge such the interaction of PCE by Zn was 1:1 binding stoichiometry. The association constant and detection limit of PCE to recognize Zn was found to be 0.948 × 10 M and 4.82 × 10 M respectively. The nature of turn-on fluorescence sensor was supported by TD-DFT calculations. And the synthesized probe PCE was able to image intracellular Zn in living cells using confocal imaging techniques. PCE-Zn ensemble showed the remarkable fluorescence enhancement with ATP selectively among other biologically important phosphates. P NMR experiments suggesting that the triphosphates unit of ATP is intact with the PCEZn. PCE-Zn ensemble can be utilized for monitoring ATP in live cells.
一种用于识别锌的新型高选择性和高灵敏度的开启型荧光化学传感器PCE已被开发出来。在乙腈水溶液中,传感器PCE在456纳米(λ = 340纳米)处与锌结合时显示出显著的荧光增强,且不受其他生物重要相关金属离子的干扰。Job曲线和质谱研究表明,PCE与锌的相互作用化学计量比为1:1。发现PCE识别锌的缔合常数和检测限分别为0.948×10⁵ M和4.82×10⁻⁸ M。TD-DFT计算支持了开启型荧光传感器的性质。并且合成的探针PCE能够使用共聚焦成像技术对活细胞内的锌进行成像。PCE-Zn复合物在其他生物重要磷酸盐中对ATP选择性地显示出显著的荧光增强。³¹P NMR实验表明,ATP的三磷酸单元与PCE-Zn保持完整。PCE-Zn复合物可用于监测活细胞中的ATP。