Tayade Kundan, Bondhopadhyay Banashree, Keshav Karunesh, Sahoo Suban K, Basu Anupam, Singh Jasmider, Singh Narinder, Nehete Dileep T, Kuwar Anil
School of Chemical Sciences, North Maharashtra University, Jalgaon-425001, MS, India.
Molecular Biology and Human Genetics Laboratory, Department of Zoology, The University of Burdwan, Burdwan, West Bengal, India.
Analyst. 2016 Mar 7;141(5):1814-21. doi: 10.1039/c5an02295a.
We have developed a novel isonicotiamide-based fluorescent "turn-on" chemosensor 1 for the selective detection of Zn(2+) and HSO4(-). The sensor 1 can detect Zn(2+) and HSO4(-) with a detection limit down to the nanomolar level by forming a complex in 1 : 1 stoichiometry in the presence of other anions and 2 : 1 in presence of cations in aqueous solution. Density functional theory calculations on 1 and the 1-Zn(2+)/HSO4(-) complexes are consistent with the experimental results. We have successfully utilized the above cation and anion for the fabrication of INHIBIT molecular logic gates. Furthermore the receptor 1 successfully detected the Zn(2+) and HSO4(-) ions in HeLa cells cultured in Zn(2+) and HSO4(-) enriched medium.
我们开发了一种基于异烟酰胺的新型荧光“开启”化学传感器1,用于选择性检测Zn(2+)和HSO4(-)。传感器1在水溶液中,在其他阴离子存在下以1:1化学计量比形成配合物,在阳离子存在下以2:1化学计量比形成配合物,从而能够检测低至纳摩尔水平的Zn(2+)和HSO4(-)。对1以及1-Zn(2+)/HSO4(-)配合物进行的密度泛函理论计算与实验结果一致。我们已成功利用上述阳离子和阴离子制造了INHIBIT分子逻辑门。此外,受体1在富含Zn(2+)和HSO4(-)的培养基中培养的HeLa细胞中成功检测到了Zn(2+)和HSO4(-)离子。