Al-Harazie Anwer G, Gomaa Esam A, Zaky Rania R, Abd El-Hady Mahmoud N
Chemistry Department, Faculty of Education and Applied Sciences-Arhab, Sana'a University, Sana'a 1247, Yemen.
Chemistry Department, Faculty of Science, Mansoura University, Mansoura 35511, Egypt.
ACS Omega. 2023 Apr 4;8(15):13605-13625. doi: 10.1021/acsomega.2c07592. eCollection 2023 Apr 18.
A novel hydrazone ligand (-HBMP) -(benzo[]thiazol-2-yl)-3-oxo-3-(2-(1-(pyridin-2-yl)ethylidene)hydrazinyl)propanamide alongside its Cu(II), Cd(II), and VO(II) complexes were prepared and structurally characterized via various spectroscopic analyses (Fourier transform infrared spectroscopy, UV-visible spectroscopy, H/C NMR spectroscopy, liquid chromatography coupled to mass spectrometry, and electron paramagnetic resonance spectroscopy) as well as by elemental analysis, thermal gravimetry analysis/differential thermal analysis, and magnetic moment measurements. Powder X-ray diffraction analysis was also performed for the free ligand and its metal complexes to determine the crystallographic structures and atomic spacing. It also provided information on unit cell dimensions and the average crystallite size. Furthermore, geometric optimization and computational studies were carried out by applying Gaussian (09) software based on density-functional theory coupled with the B3LYP functional and LANL2DZ/6-31+G(d,p) mixed basis set to evaluate some distinct features such as molecular electrostatic potential, and . Moreover, electrochemical measurements were performed for Cu(II) in the absence/presence of the chelating agent to predict the effect of complexation interaction in the solution state study. As part of the biological examination, antioxidant and antimicrobial assays were conducted for each compound individually, in addition to cytotoxicity evaluations via MTT assays for all isolated complexes compared to the corresponding metal salts. The MOE (molecular operating environment) approach was also applied to model the interface between the isolated compounds and proteins that were expressed in breast cancer at the atomic level.
合成了一种新型腙配体(-HBMP)-(苯并[ ]噻唑-2-基)-3-氧代-3-(2-(1-(吡啶-2-基)亚乙基)肼基)丙酰胺及其铜(II)、镉(II)和钒(II)配合物,并通过各种光谱分析(傅里叶变换红外光谱、紫外可见光谱、H/C核磁共振光谱、液相色谱-质谱联用和电子顺磁共振光谱)以及元素分析、热重分析/差示热分析和磁矩测量对其进行了结构表征。还对游离配体及其金属配合物进行了粉末X射线衍射分析,以确定晶体结构和原子间距。它还提供了有关晶胞尺寸和平均微晶尺寸的信息。此外,基于密度泛函理论,结合B3LYP泛函和LANL2DZ/6-31+G(d,p)混合基组,应用高斯(09)软件进行了几何优化和计算研究,以评估一些独特的特征,如分子静电势等。此外,在有无螯合剂的情况下对铜(II)进行了电化学测量,以预测溶液状态研究中络合相互作用的影响。作为生物学检测的一部分,除了对所有分离的配合物与相应金属盐进行MTT法细胞毒性评估外,还分别对每种化合物进行了抗氧化和抗菌测定。还应用分子操作环境(MOE)方法在原子水平上模拟分离的化合物与乳腺癌中表达的蛋白质之间的界面。