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首页> 外文期刊>RSC Advances >Biological and catalytic potential of sustainable low and high valent metal-Schiff base sulfonate salicylidene pincer complexes
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Biological and catalytic potential of sustainable low and high valent metal-Schiff base sulfonate salicylidene pincer complexes

机译:可持续低价金属 - 席夫碱磺酸盐水杨酸钳复合物的生物和催化潜力

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ONO-Pincer Schiff base salicylidene (HSaln ligand) complexes with VO2+, UO22+, MoO22+ and Mn2+ ions (MSaln complexes = VOSaln, UO(2)Saln, MoO(2)Saln and MnSaln, respectively) were synthesized and fully characterized by different physico-chemical tools. The VOSaln complex was further treated with 1,10-phenanthroline which afforded a new VO-complex (VOSaln-Ph). All complexes and their ligands, as eco-friendly reagents, were explored for their biological potential as antibacterial and antifungal agents. Reactivity of MSaln complexes against the tested pathogen strains exhibited a remarkable inhibitory effect compared to the coordinated ligand (HSaln) and applicable standard drugs. Moreover, the MSaln complex-DNA interaction was investigated by ultraviolet-visible spectroscopy, viscosity and gel electrophoresis techniques affording binding strengths in the order: UO(2)Saln > MnSaln > MoO(2)Saln > VOSaln-Ph > VOSaln. Additionally, the biological potential of the investigated compounds was further explored by molecular docking to illustrate the nature of the drug-DNA interactions. All MSaln complexes show respectable anti-proliferative potential as anticancer agents against selected human carcinoma cell lines. Aside from the biological activities these complexes (MSaln complexes) were also investigated for catalytic efficiency in the Suzuki-Miyaura cross-coupling system of phenylboronic acid with 2-bromopyridine in water, sustainably. The results indicated that the MnSaln catalyst performed well with high yield. The catalytic potential of MnSaln was compared in water, water-ionic liquid mixtures and ionic liquids.
机译:与VO2 +,UO22 +,MOO22 +和MN2 +离子(MSALN复合物= Vosaln,UO(2)Saln,MOO(2)Saln和MNSN分别分别)分别合成并完全表征了不同的物理学,并用不同的物理综合征综合磷脂(Hsaln配体)络合物 - 化学工具。通过1,10-菲咯啉进一步处理血液络合物,其提供了一种新的vo-复合物(vashn-pH)。探索所有复合物及其配体,作为生态友好型试剂,其作为抗菌和抗真菌剂的生物潜力。与配体(Hsaln)和适用的标准药物相比,MSALN复合物对测试病原体菌株的反应性表现出显着的抑制作用。此外,通过紫外 - 可见光谱,粘度和凝胶电泳技术研究了MSALN复合DNA相互作用,粘度和凝胶电泳技术提供了依次提供结合强度:UO(2)Saln> MnSaln> Moo(2)Saln> Vosaln-pH> vosaln。另外,通过分子对接进一步探索所研究化合物的生物潜力,以说明药物-DNA相互作用的性质。所有MSALN复合物都表现出可观的抗增殖潜力作为针对选定的人癌细胞系的抗癌剂。除了生物学活性,这些配合物(MSALN复合物)还研究了诸如水中的苯基硼酸的素氏菌果酸杂交偶联系统中的催化效率,可持续地。结果表明,MNSALN催化剂的良好产量很好。在水,水离子液体混合物和离子液体中比较了MnSaln的催化潜力。

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    《RSC Advances 》 |2019年第59期| 共19页
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  • 正文语种 eng
  • 中图分类 化学 ;
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