Department of Chemistry and Nano Science, Ewha Womans University, Seoul 120-750, Korea.
J Am Chem Soc. 2010 Jan 20;132(2):601-10. doi: 10.1021/ja907334j.
It is still a significant challenge to develop a Zn(2+)-selective fluorescent sensor with the ability to exclude the interference of some heavy and transition metal (HTM) ions such as Fe(2+), Co(2+), Ni(2+), Cu(2+), Cd(2+), and Hg(2+). Herein, we report a novel amide-containing receptor for Zn(2+), combined with a naphthalimide fluorophore, termed ZTRS. The fluorescence, absorption detection, NMR, and IR studies indicated that ZTRS bound Zn(2+) in an imidic acid tautomeric form of the amide/di-2-picolylamine receptor in aqueous solution, while most other HTM ions were bound to the sensor in an amide tautomeric form. Due to this differential binding mode, ZTRS showed excellent selectivity for Zn(2+) over most competitive HTM ions with an enhanced fluorescence (22-fold) as well as a red-shift in emission from 483 to 514 nm. Interestingly, the ZTRS/Cd(2+) complex showed an enhanced (21-fold) blue-shift in emission from 483 to 446 nm. Therefore, ZTRS discriminated in vitro and in vivo Zn(2+) and Cd(2+) with green and blue fluorescence, respectively. Due to the stronger affinity, Zn(2+) could be ratiometrically detected in vitro and in vivo with a large emission wavelength shift from 446 to 514 nm via a Cd(2+) displacement approach. ZTRS was also successfully used to image intracellular Zn(2+) ions in the presence of iron ions. Finally, we applied ZTRS to detect zinc ions during the development of living zebrafish embryos.
开发一种能够排除 Fe(2+)、Co(2+)、Ni(2+)、Cu(2+)、Cd(2+)和 Hg(2+)等一些重金属和过渡金属 (HTM) 离子干扰的 Zn(2+)选择性荧光传感器仍然是一个重大挑战。在此,我们报告了一种新型酰胺基受体 ZTRS,它与萘酰亚胺荧光团结合,用于检测 Zn(2+)。荧光、吸收检测、NMR 和 IR 研究表明,ZTRS 在水溶液中以酰胺/二-2-吡啶基胺受体的亚胺酸互变异构形式与 Zn(2+)结合,而大多数其他 HTM 离子以酰胺互变异构形式与传感器结合。由于这种差异结合模式,ZTRS 对 Zn(2+)表现出优异的选择性,对大多数竞争性 HTM 离子的荧光增强(22 倍)和发射红移(从 483nm 至 514nm)。有趣的是,ZTRS/Cd(2+)复合物的发射从 483nm 蓝移至 446nm,增强了 21 倍。因此,ZTRS 分别以绿色和蓝色荧光体外和体内区分 Zn(2+)和 Cd(2+)。由于亲和力更强,Zn(2+)可以通过 Cd(2+)置换法进行体外和体内的比率检测,其发射波长从 446nm 至 514nm 发生较大的蓝移。ZTRS 还成功地用于在存在铁离子的情况下对细胞内 Zn(2+)离子进行成像。最后,我们将 ZTRS 用于检测活体斑马鱼胚胎发育过程中的锌离子。