†Department of Chemistry, Tongji University, Siping Road 1239, Shanghai 200092, People's Republic of China.
‡Department of Chemistry, School of Chemistry and Molecular Engineering, East China Normal University, North Zhongshan Road 3663, Shanghai 200062, People's Republic of China.
Anal Chem. 2015;87(10):5333-9. doi: 10.1021/acs.analchem.5b00628. Epub 2015 Apr 30.
It is very essential to disentangle the complicated inter-relationship between pH and Cu in the signal transduction and homeostasis. To this end, reporters that can display distinct signals to pH and Cu are highly valuable. Unfortunately, there is still no report on the development of biosensors that can simultaneously respond to pH and Cu(2+), to the best of our knowledge. In this work, we developed a single fluorescent probe, AuNC@FITC@DEAC (AuNC, gold cluster; FITC, fluorescein isothiocyanate; DEAC, 7-diethylaminocoumarin-3-carboxylic acid), for biosensing of pH, Cu(2+), and pH/Cu(2+) with different ratiometric fluorescent signals. First, 2,2',2″-(2,2',2″-nitrilotris(ethane-2,1-diyl)tris((pyridin-2-yl-methyl)azanediyl))triethanethiol (TPAASH) was designed for specific recognition of Cu(2+), as well as for organic ligand to synthesize fluorescent AuNCs. Then, pH-sensitive molecule, FITC emitting at 518 nm, and inner reference molecule, DEAC with emission peak at 472 nm, were simultaneously conjugated on the surface of AuNCs emitting at 722 nm, thus, constructing a single fluorescent probe, AuNC@FITC@DEAC, to sensing pH, Cu(2+), and pH/Cu(2+) excited by 405 nm light. The developed probe exhibited high selectivity and accuracy for independent determination of pH and Cu(2+) against reactive oxygen species (ROS), other metal ions, amino acids, and even copper-containing proteins. The AuNC-based inorganic-organic probe with good cell-permeability and high biocompatibility was eventually applied in monitoring both pH and Cu(2+) and in understanding the interplaying roles of Cu(2+) and pH in live cells by ratiometric multicolor fluorescent imaging.
在信号转导和动态平衡中,理清 pH 和 Cu 之间复杂的相互关系是非常重要的。为此,能够显示出对 pH 和 Cu 不同信号的报告分子是非常有价值的。据我们所知,目前还没有关于能够同时响应 pH 和 Cu(2+)的生物传感器的报道。在这项工作中,我们开发了一种单一的荧光探针,AuNC@FITC@DEAC(AuNC,金团簇;FITC,荧光素异硫氰酸酯;DEAC,7-二乙氨基香豆素-3-羧酸),用于生物传感 pH、Cu(2+)和 pH/Cu(2+),具有不同的比率荧光信号。首先,设计了 2,2',2″-(2,2',2″-nitrilotris(ethane-2,1-diyl)tris((pyridin-2-yl-methyl)azanediyl))triethanethiol(TPAASH),用于特异性识别 Cu(2+),以及作为合成荧光 AuNCs 的有机配体。然后,将 pH 敏感分子,发射峰在 518nm 的 FITC,和内参分子,发射峰在 472nm 的 DEAC,同时共轭到发射峰在 722nm 的 AuNCs 表面,从而构建了一种单一的荧光探针,AuNC@FITC@DEAC,用于在 405nm 光激发下检测 pH、Cu(2+)和 pH/Cu(2+)。所开发的探针对活性氧(ROS)、其他金属离子、氨基酸,甚至含铜蛋白,对 pH 和 Cu(2+)的独立测定表现出高选择性和准确性。该基于 AuNC 的有机-无机探针具有良好的细胞通透性和高生物相容性,最终应用于监测 pH 和 Cu(2+),并通过比率多色荧光成像来了解 Cu(2+)和 pH 在活细胞中的相互作用。