Hien Nguyen Khoa, Van Bay Mai, Tran Phan Diem, Khanh Nguyen Tan, Luyen Nguyen Dinh, Vo Quan V, Van Dang Ung, Nam Pham Cam, Quang Duong Tuan
Mientrung Institute for Scientific Research, Vietnam Academy of Science and Technology Hue 530000 Vietnam.
University of Education, Hue University Hue 530000 Vietnam
RSC Adv. 2020 Oct 1;10(60):36265-36274. doi: 10.1039/d0ra05651k.
Herein, a novel fluorescent sensor has been developed for the detection of biothiols based on theoretical calculations of the stability constant of the complex between a Cu ion and ()-3-((2-(benzo[]thiazol-2-yl)hydrazono)methyl)-7-(diethylamino) coumarin (BDC) as a fluorescent ligand. In this study, on the basis of density functional theory method, the Gibbs free energy of ligand-exchange reaction and the solvation model were carried out using thermodynamic cycles. The obtained results are in good agreement with the experimental data. The BDC-Cu complex can be used as a fluorescent sensor for the detection of biothiols in the presence of non-thiol containing amino acids, with a detection limit for cysteine at 0.3 μM. Moreover, theoretical calculations of excited states were used to elucidate variations in the fluorescence properties. The computed results show that the excited doublet states D and D are dark doublet states, which quench the fluorescence of the complex.
在此,基于铜离子与作为荧光配体的()-3-((2-(苯并[]噻唑-2-基)肼基)甲基)-7-(二乙氨基)香豆素(BDC)之间络合物稳定常数的理论计算,开发了一种用于检测生物硫醇的新型荧光传感器。在本研究中,基于密度泛函理论方法,利用热力学循环进行了配体交换反应的吉布斯自由能和溶剂化模型的计算。所得结果与实验数据吻合良好。BDC-Cu络合物可作为一种荧光传感器,用于在不含硫醇的氨基酸存在下检测生物硫醇,对半胱氨酸的检测限为0.3 μM。此外,利用激发态的理论计算来阐明荧光性质的变化。计算结果表明,激发的双重态D和D是暗双重态,它们会淬灭络合物的荧光。