Department of Chemistry, University College of Science, Osmania University, Hyderabad, Telangana, India.
Department of Chemistry, Nizam College, Hyderabad, Telangana, India.
J Fluoresc. 2018 Jan;28(1):225-241. doi: 10.1007/s10895-017-2185-0. Epub 2017 Nov 21.
Some novel transition metal [Cu (II), Ni (II) and Co (II)] complexes of nalidixic acid hydrazone have been prepared and characterized by employing spectro-analytical techniques viz: elemental analysis, H-NMR, Mass, UV-Vis, IR, TGA-DTA, SEM-EDX, ESR and Spectrophotometry studies. The HyperChem 7.5 software was used for geometry optimization of title compound in its molecular and ionic forms. Quantum mechanical parameters, contour maps of highest occupied molecular orbitals (HOMO) and lowest unoccupied molecular orbitals (LUMO) and corresponding binding energy values were computed using semi empirical single point PM3 method. The stoichiometric equilibrium studies of metal complexes carried out spectrophotometrically using Job's continuous variation and mole ratio methods inferred formation of 1:2 (ML) metal complexes in respective systems. The title compound and its metal complexes screened for antibacterial and antifungal properties, exemplified improved activity in metal complexes. The studies of nuclease activity for the cleavage of CT- DNA and MTT assay for in vitro cytotoxic properties involving metal complexes exhibited high activity. In addition, the DNA binding properties of Cu (II), Ni (II) and Co (II) complexes investigated by electronic absorption and fluorescence measurements revealed their good binding ability and commended agreement of K values obtained from both the techniques. Molecular docking studies were also performed to find the binding affinity of synthesized compounds with DNA (PDB ID: 1N37) and "Thymidine phosphorylase from E.coli" (PDB ID: 4EAF) protein targets.
一些新型过渡金属 [Cu(II), Ni(II) 和 Co(II)] 萘啶酸腙配合物已经通过光谱分析技术如元素分析、H-NMR、质谱、UV-Vis、IR、TGA-DTA、SEM-EDX、ESR 和分光光度法进行了制备和表征。HyperChem 7.5 软件被用于标题化合物在分子和离子形式下的几何优化。量子力学参数、最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的等高线图以及相应的结合能值使用半经验单点 PM3 方法进行了计算。使用 Job 连续变化和摩尔比方法进行的金属配合物的化学计量平衡研究表明,在各自的体系中形成了 1:2(ML)金属配合物。标题化合物及其金属配合物被筛选出具有抗菌和抗真菌特性,证明了金属配合物的活性提高。用于 CT-DNA 切割的核酸酶活性研究和涉及金属配合物的体外细胞毒性 MTT 测定显示出高活性。此外,通过电子吸收和荧光测量研究了 Cu(II)、Ni(II) 和 Co(II) 配合物的 DNA 结合特性,揭示了它们与 DNA 良好的结合能力,并证实了两种技术获得的 K 值之间的一致性。还进行了分子对接研究,以确定合成化合物与 DNA(PDB ID: 1N37)和“大肠杆菌胸苷磷酸化酶”(PDB ID: 4EAF)蛋白靶标的结合亲和力。