首页> 外文期刊>Journal of Coordination Chemistry >Chemical, physical, and biological properties of Pd(II), V(IV)O, and Ag(I) complexes of N-3 tridentate pyridine-based Schiff base ligand
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Chemical, physical, and biological properties of Pd(II), V(IV)O, and Ag(I) complexes of N-3 tridentate pyridine-based Schiff base ligand

机译:Pd(II),V(IV)O和Ag(I)络合物的化学,物理和生物学性质,N-3三丙氨酸吡啶基Schiff碱配体的综合体

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A new N-3-tridentate imine ligand, 2,6-diacetylpyridinediphenylhydrazone (DAPH) (L), and its Pd(II), V(IV)O, and Ag(I) complexes were synthesized and characterized via elemental analysis, FT-IR, NMR, molar conductance, and magnetic susceptibility measurements. The obtained data confirmed geometrical structures of Pd(II), Ag(I), and V(IV)O complexes as square planar, tetrahedral, and distorted square pyramidal, respectively. Minimum inhibitory concentrations (MIC) were used to probe in vitro antimicrobial activity of DAPH ligand and metal complexes using three different bacteria. Results revealed that PdDAPH complex exhibited the highest toxicity and lowest MIC (1.25 mu g/mL) toward Escherichia coli. Moreover, cytotoxic activity of the prepared complexes was evaluated via three human cancer cell lines, hepatic carcinoma (HepG2), breast carcinoma (MCF-7), and colon carcinoma (HCT-116). Among all tested complexes, PdDAPH caused a significant loss of cell viability in less time and lower dose than the reference drug vinblastine. Antioxidant activity was also measured for all complexes and compared to vitamin C. Probing the interaction of the prepared metal-DAPH chelates with calf-thymus DNA showed the Pd(II) complex displayed the strongest interaction, with a binding constant of 6.02 kcal mol(-1). Molecular docking was also investigated on all complexes, with PdDAPH being the most promising compound due to its facile hydrophobic interactions with the active pocket of glucose transporter (GLUT1) enzyme. Overall, the combined findings of this work clearly demonstrate that these new compounds hold promise as efficient antibiotic and anticancer agents.
机译:合成了一种新的N-3-三齿亚胺配体2,6-二乙酰吡啶二苯腙(DAPH)(L)及其Pd(II)、V(IV)O和Ag(I)配合物,并通过元素分析、FT-IR、NMR、摩尔电导和磁化率测量对其进行了表征。所得数据证实Pd(II)、Ag(I)和V(IV)O配合物的几何结构分别为方形平面、四面体和扭曲的方形金字塔。采用最低抑菌浓度(MIC)检测三种不同细菌对DAPH配体和金属配合物的体外抗菌活性。结果表明,PdDAPH复合物对大肠杆菌的毒性最高,MIC最低(1.25μg/mL)。此外,通过三种人类癌症细胞系,即肝癌(HepG2)、乳腺癌(MCF-7)和结肠癌(HCT-116),对制备的复合物的细胞毒性活性进行了评估。在所有受试复合物中,PdDAPH比对照药物长春花碱在更短的时间和更低的剂量内导致细胞活力显著丧失。还测量了所有配合物的抗氧化活性,并将其与维生素C进行比较。探测制备的金属DAPH螯合物与小牛胸腺DNA的相互作用表明,Pd(II)配合物表现出最强的相互作用,结合常数为6.02 kcal mol(-1)。分子对接也在所有配合物上进行了研究,其中PdDAPH是最有前景的化合物,因为它与葡萄糖转运蛋白(GLUT1)酶的活性囊具有简单的疏水相互作用。总的来说,这项工作的综合发现清楚地表明,这些新化合物有望成为有效的抗生素和抗癌剂。

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