Sindhu Indu, Singh Anshul, Deswal Yogesh, Gupta Neeraj Mohan
Department of Chemistry, Baba Mastnath University, Asthal Bohar, Rohtak, 124021, India.
Department of Chemistry, Central University of Haryana, Jant-Pali, Mahendergarh, 123031, India.
Chem Biodivers. 2025 Mar;22(3):e202402619. doi: 10.1002/cbdv.202402619. Epub 2024 Nov 26.
A condensation reaction was carried out between 4-nitro-ortho-phenylenediamine and 5-bromosalicyaldehyde to synthesize a novel Schiff base ligand 2,2'-[(1E,1'E)-(4-nitro-1,2-phenylene) bis (azaneylylidene) bis (methaneylylidene)] bis (4-bromophenol) [NB] in the current investigation. This was followed by the synthesis of metallic complexes comprising the Co(II), Ni(II), Cu(II) and Zn(II) transition metal ions. A hexadentate environment encircling metal complexes was corroborated by the results of varied spectroscopic methods that were employed to unravel the structure of the ligand and metal complexes. The Tauc's plot and Urbach energy were utilized for quantifying the optical energy band gap to provide insight into optical characteristics. The Coats-Redfern method of thermal analysis was implemented to do the kinetic and thermodynamic calculations. Furthermore, DFT studies were performed to predict geometrical structures and the stability of the compounds. Thorough investigation to evaluate their biological efficacies, docking studies was executed against COVID-19 main protease (PDB-7VAH), Dengue virus NS2B/NS3 protease (PDB-2FOM) and Mycobacterium Tuberculosis (PDB-5AF3). Apart from this, in silico ADMET studies were also accomplished for elucidation of drug likeness characteristics and the results attained disclose the significant proficiency of synthesized compounds. Besides this, antimicrobial studies were assessed with different microbial strains and result validates cobalt and zinc complexes as most potent against the selected bacterial and fungal strains.
在本研究中,通过4-硝基邻苯二胺与5-溴水杨醛之间的缩合反应合成了一种新型席夫碱配体2,2'-[(1E,1'E)-(4-硝基-1,2-亚苯基)双(氮亚基)双(亚甲基)]双(4-溴苯酚)[NB]。随后合成了包含Co(II)、Ni(II)、Cu(II)和Zn(II)过渡金属离子的金属配合物。采用多种光谱方法来解析配体和金属配合物的结构,证实了围绕金属配合物的六齿环境。利用Tauc图和乌尔巴赫能量来量化光学能带隙,以深入了解光学特性。采用热分析的Coats-Redfern方法进行动力学和热力学计算。此外,进行了密度泛函理论(DFT)研究以预测化合物的几何结构和稳定性。为了评估它们的生物学功效,针对新型冠状病毒肺炎主要蛋白酶(PDB-7VAH)、登革热病毒NS2B/NS3蛋白酶(PDB-2FOM)和结核分枝杆菌(PDB-5AF3)进行了对接研究。除此之外,还进行了计算机辅助的药物代谢及药物动力学(ADMET)研究以阐明药物相似性特征,所得结果揭示了合成化合物的显著效能。此外,用不同的微生物菌株进行了抗菌研究,结果证实钴和锌配合物对所选细菌和真菌菌株最具活性。