Kumar Rahul, Sandhu Sana, Hundal Geeta, Singh Prabhpreet, Walia Amandeep, Vanita Vanita, Kumar Subodh
Department of Chemistry, UGC Centre for Advanced Studies, Guru Nanak Dev University, Amritsar 143 005, India.
Org Biomol Chem. 2015 Dec 7;13(45):11129-39. doi: 10.1039/c5ob01617g. Epub 2015 Sep 25.
Naphthimidazolium based monocationic chemodosimeters CD-1 and CD-2 undergo cyanide mediated catalytic transformation in the presence of cyanide ions (0.01% to 1% of CD-1/CD-2 concentrations) with a turnover number from 70 to 360. These chemodosimeters can detect as low as 0.5 nM and 1 nM cyanide ions under nearly physiological conditions (HEPES buffer-DMSO (5%), pH 7.4). The structures of CD-1 and its cyanide induced hydrolyzed product 4 have been confirmed by single crystal X-ray crystallography. CD-1 can also be used for the determination of 2 nM cyanide in the presence of blood serum. CD-1 and CD-2 also find applications in live cell imaging of 10 nM cyanide ions in rat brain C6 glioma cells. To the best of our knowledge, this is the first report where high sensitivity towards cyanide ions has been achieved through catalytic hydrolysis of the fluorescent chemodosimeter.
基于萘并咪唑鎓的单阳离子化学计量器CD-1和CD-2在氰离子(占CD-1/CD-2浓度的0.01%至1%)存在的情况下会发生氰化物介导的催化转化,周转数为70至360。这些化学计量器在接近生理条件(HEPES缓冲液 - DMSO(5%),pH 7.4)下能够检测低至0.5 nM和1 nM的氰离子。CD-1及其氰化物诱导的水解产物4的结构已通过单晶X射线晶体学得到证实。CD-1还可用于在血清存在的情况下测定2 nM的氰化物。CD-1和CD-2在大鼠脑C6胶质瘤细胞中对10 nM氰离子的活细胞成像中也有应用。据我们所知,这是第一份通过荧光化学计量器的催化水解实现对氰离子高灵敏度检测的报告。