Department of Chemistry, SRM Institute of Science and Technology, Delhi-NCR Campus, Modinagar, 201204, India.
Department of Chemistry, Atma Ram Sanatan Dharma College, New Delhi, India -, 110021.
Chem Biodivers. 2023 Aug;20(8):e202300760. doi: 10.1002/cbdv.202300760. Epub 2023 Jul 24.
Mn(II) and Cu(II) complexes having the formula [M(L) ]X of ligand, i. e., 2-acetyl-5-methylfuranthiosemicarbazone were synthesized. Various analytical and spectroscopic techniques described the structure of synthesized complexes. Molar conductance confirmed the electrolytic nature of the complexes. The theoretical study of the complexes explained the structural property and reactivity. The chemical reactivity, interaction and stability of the ligand and metal complexes were studied with the help of global reactivity descriptors. MEP analysis was used to investigate the charge transfer in the ligand. The biological potency was evaluated against two bacteria and two fungi. Complexes demonstrated superior inhibitory action to ligand. The inhibitory effect was also checked at the atomic scale using molecular docking, which confirmed the experimental results. Cu(II) complex was shown to have the most inhibitory effect in experimental and theoretical studies. To check the bioavailability and drug-likeness, ADME analysis was also done.
合成了具有配体[M(L)]X 化学式的 Mn(II)和 Cu(II)配合物,即 2-乙酰基-5-甲基呋喃硫代缩氨基脲。各种分析和光谱技术描述了合成配合物的结构。摩尔电导率证实了配合物的电解性质。配合物的理论研究解释了结构性质和反应性。借助全局反应性描述符研究了配体和金属配合物的化学反应性、相互作用和稳定性。利用 MEP 分析研究了配体中的电荷转移。评估了配体和配合物对两种细菌和两种真菌的生物效力。配合物对配体表现出更好的抑制作用。还使用分子对接在原子尺度上检查了抑制作用,这证实了实验结果。在实验和理论研究中,Cu(II)配合物显示出最强的抑制作用。为了检查生物利用度和药物相似性,还进行了 ADME 分析。