Chemistry Department, Faculty of Science, Sohag University, 82524, Egypt.
Chemistry Department, Faculty of Science, Sohag University, 82524, Egypt.
J Photochem Photobiol B. 2017 May;170:271-285. doi: 10.1016/j.jphotobiol.2017.04.003. Epub 2017 Apr 9.
The present study was conducted to synthesis of some new imine Cr(III), VO(II), Mn(II) and Ni(II) complexes derived from the condensation of 2-amino phenol with 2-hydroxynapthaldehyde were synthesized. The prepared HNPN imine ligand was analyzed by its melting point, IR, H NMR and C NMR spectroscopies. The investigated HNPN imine complexes were characterized by elemental analysis, FT IR, UV-vis and thermal analysis (TGA) under nitrogen atmosphere from ambient temperature to 750°C. The experimental results revealed that the investigated complexes contain hydrated water molecules. The molar conductance values of complexes are relatively low, indicating the non-electrolytic nature of these complexes. Magnetic susceptibility measurements show that the investigated complexes are paramagnetic. Moreover, the stability constants of the preparing complexes were determined spectrophotometrically. All the complexes were found to be monomeric 1:1 (M:L) stoichiometry in nature with octahedral geometry for Cr(III), tetrahedral for Mn(II), square planner for Ni(II) and square pyramidal for VO(II). Moreover, the prepared HNPN imine ligand and its complexes were evaluated for antimicrobial effect against some types of bacteria such as Bacillus subtilis (+ve), Escherichia coli(-ve) and Staphylococcus aureus (+ve) and some types of fungi such as Aspergillusniger, Candida glabrata and Trichophyton rubrum. The results of these studies indicate that the metal complexes exhibit a stronger antibacterial and antifungal efficiency compared to their corresponding imine ligand. Moreover, the interaction of the investigated complexes with CT-DNA was checked using spectral studies, viscosity measurements and gel electrophoreses. The absorption titration studies revealed that each of these complexes is an avid binder to calf thymus-DNA. Also, there was appreciable changes in the relative viscosity of DNA, which is consistent with enhanced hydrophobic interaction of the aromatic rings and intercalation mode of binding. In addition to, the cytotoxic activity of the prepared imine complexes on human colon carcinoma cells, (HCT-116 cell line), hepatic cellular carcinoma cells, (HepG-2 cell line) and breast carcinoma cells (MCF-7 cell line) has cytotoxicity effect against growth of carcinoma cells compared to the clinically used Vinblastine standard. Furthermore, the molecular docking into TRK (PDB: 1t46) was done for the optimization of the investigated compounds as potential TRK inhibitors.
本研究合成了一些新的亚胺 Cr(III)、VO(II)、Mn(II)和 Ni(II)配合物,这些配合物是由 2-氨基苯酚与 2-羟基萘甲醛缩合而成的。所制备的 HNPN 亚胺配体通过熔点、IR、H NMR 和 C NMR 光谱进行分析。用元素分析、FTIR、UV-vis 和热分析(TGA)在氮气气氛下从室温到 750°C 对所研究的 HNPN 亚胺配合物进行了表征。实验结果表明,所研究的配合物含有水合水分子。配合物的摩尔电导率值相对较低,表明这些配合物是非电解质的。磁导率测量表明,所研究的配合物是顺磁性的。此外,还通过分光光度法测定了配合物的稳定常数。所有配合物均为单核 1:1(M:L)化学计量比,Cr(III)为八面体几何构型,Mn(II)为四面体,Ni(II)为平面四方,VO(II)为四方锥。此外,还评估了所制备的 HNPN 亚胺配体及其配合物对枯草芽孢杆菌(+ve)、大肠杆菌(-ve)和金黄色葡萄球菌(+ve)等几种类型的细菌以及黑曲霉、光滑念珠菌和红色毛癣菌等几种类型的真菌的抗菌效果。这些研究的结果表明,与相应的亚胺配体相比,金属配合物表现出更强的抗菌和抗真菌效率。此外,还通过光谱研究、粘度测量和凝胶电泳检查了所研究的配合物与 CT-DNA 的相互作用。吸收滴定研究表明,这些配合物中的每一种都是小牛胸腺 DNA 的强结合物。此外,DNA 的相对粘度也发生了明显变化,这与芳环的增强疏水性相互作用和嵌入结合模式一致。此外,与临床使用的长春碱标准相比,所制备的亚胺配合物对人结肠癌细胞(HCT-116 细胞系)、肝癌细胞(HepG-2 细胞系)和乳腺癌细胞(MCF-7 细胞系)的细胞毒性对癌细胞的生长有细胞毒性作用。此外,还对 TRK(PDB:1t46)进行了分子对接,以优化所研究的化合物作为潜在的 TRK 抑制剂。