Shiekh Rayees Ahmad, Malik Maqsood Ahmad, Al-Thabaiti Shaeel Ahmed, Wani Mohmmad Younus, Nabi Arshid
Biomaterial Research Unit, School of Dental Sciences, Universiti Sains Malaysia, Kubang Kerian, 16150 Kelantan, Malaysia.
Department of Chemistry, Faculty of Science, King Abdulaziz University, P.O. Box 80203, Jeddah 21589, Saudi Arabia.
ScientificWorldJournal. 2014 Mar 19;2014:404617. doi: 10.1155/2014/404617. eCollection 2014.
2-Phenyl-N,N'-bis(pyridin-4-ylcarbonyl)butanediamide ligand with a series of transition metal complexes has been synthesized via two routes: microwave irradiation and conventional heating method. Microwave irritation method happened to be the efficient and versatile route for the synthesis of these metal complexes. These complexes were found to have the general composition M(L)Cl2/M(L)(CH3COO)2 (where M = Cu(II), Co(II), Ni(II), and L = ligand). Different physical and spectroscopic techniques were used to investigate the structural features of the synthesized compounds, which supported an octahedral geometry for these complexes. In vitro antifungal activity of the ligand and its metal complexes revealed that the metal complexes are highly active compared to the standard drug. Metal complexes showed enhanced activity compared to the ligand, which is an important step towards the designing of antifungal drug candidates.
通过两种途径合成了含有一系列过渡金属配合物的2-苯基-N,N'-双(吡啶-4-基羰基)丁二酰胺配体:微波辐射法和传统加热法。微波辐射法恰好是合成这些金属配合物的高效且通用的途径。发现这些配合物具有通式M(L)Cl2/M(L)(CH3COO)2(其中M = Cu(II)、Co(II)、Ni(II),L = 配体)。使用了不同的物理和光谱技术来研究合成化合物的结构特征,这些特征支持这些配合物具有八面体几何构型。配体及其金属配合物的体外抗真菌活性表明,与标准药物相比,金属配合物具有高活性。与配体相比,金属配合物显示出增强的活性,这是朝着设计抗真菌候选药物迈出的重要一步。