Kharpan Bandashisha, Chetia Jagritima, Pyngrope Hunshisha, Nandi Rajat, Pradhan Amit Kumar, Paul Pradip C, Kumar Diwakar
Department of Chemistry, Assam University, Silchar, 788011, Assam, India.
Department of Microbiology, Assam University, Silchar, 788011, Assam, India.
Biometals. 2024 Dec;37(6):1575-1597. doi: 10.1007/s10534-024-00627-9. Epub 2024 Aug 18.
In the present work, new Co(II) complexes were synthesized from mesogenic aromatic amino acids based Schiff base ligands, HL [Methyl 2-((2-hydroxy-4-(tetradecyloxy)benzylidene)amino)-3-phenylpropanoate] and HL [Methyl 2-((2-hydroxy-4-(tetradecyloxy)benzylidene)amino)-3-(1H-indol-2-yl)propanoate]. The compounds were thoroughly characterised using different elemental, thermogravimetric and spectroscopic studies. The in-vitro antileishmanial efficacy of the compounds against Leishmania donovani was evaluated by MTT assay and the antioxidant activity was performed by Mensor's method. The cell viability percentage and IC values for both the antileishmanial and antioxidant studies revealed that the cobalt(II) complexes are comparable to the standard, amphotericin B and ascorbic acid, respectively, signifying the potential applications of the biogenic compounds. The CT-DNA interaction experiments study using photophysical techniques indicated that the cobalt(II) complexes exhibited pronounced interactions as compared to the parent ligand. The parent ligands were found to possess mesogenicity as evidenced from the polarizing optical microscope (POM) and differential scanning calorimetry (DSC). The optical band gap of the compounds, as estimated from the Tauc plot of the UV-Vis spectra, lies within the domain of optoelectronic material properties, which was further supported through Density Functional Theory (DFT) study. Moreover, DFT methods have been used to explore the ground state geometry and DFT based reactivity descriptors of the two synthesised ligands, HL and HL along with their corresponding Co(II) complexes, Co(L) and Co(L). Reactivity descriptors obtained from Conceptual Density Functional Theory (CDFT) analysis reveal that Co(L) is the most stable and Co(L) is the most electrophilic.
在本研究中,由介晶芳香族氨基酸基席夫碱配体HL [2-((2-羟基-4-(十四烷氧基)亚苄基)氨基)-3-苯基丙酸甲酯] 和HL [2-((2-羟基-4-(十四烷氧基)亚苄基)氨基)-3-(1H-吲哚-2-基)丙酸甲酯] 合成了新型Co(II)配合物。通过不同的元素分析、热重分析和光谱研究对这些化合物进行了全面表征。采用MTT法评估了这些化合物对杜氏利什曼原虫的体外抗利什曼活性,并通过门泽尔法进行了抗氧化活性测定。抗利什曼和抗氧化研究的细胞活力百分比和IC值表明,钴(II)配合物分别与标准药物两性霉素B和抗坏血酸相当,这表明了这些生物源化合物的潜在应用。使用光物理技术进行的CT-DNA相互作用实验研究表明,与母体配体相比,钴(II)配合物表现出明显的相互作用。从偏光光学显微镜 (POM) 和差示扫描量热法 (DSC) 可以证明,母体配体具有介晶性。根据紫外-可见光谱的Tauc图估算的化合物光学带隙处于光电子材料性能范围内,密度泛函理论 (DFT) 研究进一步支持了这一点。此外,DFT方法已被用于探索两种合成配体HL和HL及其相应的Co(II)配合物Co(L)和Co(L)的基态几何结构和基于DFT的反应性描述符。从概念密度泛函理论 (CDFT) 分析获得的反应性描述符表明,Co(L)最稳定,Co(L)最亲电。