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新型 s-三嗪衍生物的铂(IV)和钯(II)过渡金属配合物的合成、光谱和抗癌剂研究。

New Platinum(IV) and Palladium(II) Transition Metal Complexes of s-Triazine Derivative: Synthesis, Spectral, and Anticancer Agents Studies.

机构信息

Department of Chemistry, College of Science, Princess Nourah Bint Abdulrahman University, Saudi Arabia.

出版信息

Biomed Res Int. 2019 Feb 17;2019:9835745. doi: 10.1155/2019/9835745. eCollection 2019.

Abstract

New Pd(II) and Pt(IV) triazine complexes [Pt( )(Cl)(HO)].3Cl.3HO (), [Pt( )(Cl)(HO)].3Cl (), [Pt( )(Cl)(HO)].3Cl (), [Pt( )(Cl)(HO)] .2Cl.4HO (), [Pd( )(HO)] .3Cl (), [Pd( )(HO)].3Cl (), [Pd( )(HO)].3Cl (), and [Pd( )(HO)].2Cl () were synthesized and well characterized using elemental analyses, molar conductance, IR, UV-Vis, magnetic susceptibility, H, C-NMR spectra, and thermal analyses. These analyses deduced that the , , and ligands act as tridentate forming octahedral geometry with Pt(IV) metal ions and square planar geometry in case of Pd(II) complexes but the ligand acts as bidentate chelate. The molar conductance values refer to the fact that all the prepared s-triazine complexes have electrolyte properties which are investigated in DMSO solvent. Surface morphology behaviors of prepared complexes have been scanned using TEM. The crystalline behavior of triazine complexes has been checked based on X-ray powder diffraction patterns. The antimicrobial activity of the free ligands and their platinum(IV) and palladium(II) complexes against the species (G+), (G-), , and has been carried out and compared with the standard one. The coordination of ligands towards metal ions makes them stronger bacteriostatic agents, thus inhibiting the growth of bacteria and fungi more than the free ligands. The cytotoxic assessment IC of the free ligands and its platinum(IV) complexes against human colon and lung cancer cell lines introduced a promising efficiency.

摘要

新的 Pd(II) 和 Pt(IV) 三嗪配合物 [Pt( )(Cl)(HO)].3Cl.3HO (), [Pt( )(Cl)(HO)].3Cl (), [Pt( )(Cl)(HO)].3Cl (), [Pt( )(Cl)(HO)].2Cl.4HO (), [Pd( )(HO)].3Cl (), [Pd( )(HO)].3Cl (), [Pd( )(HO)].3Cl (), 和 [Pd( )(HO)].2Cl () 被合成并使用元素分析、摩尔电导率、IR、UV-Vis、磁化率、H、C-NMR 光谱和热分析进行了很好的表征。这些分析推断出,, 和 配体作为三齿配体,与 Pt(IV) 金属离子形成八面体几何构型,而对于 Pd(II) 配合物则形成正方形平面几何构型,但 配体作为双齿螯合配体。摩尔电导率值表明所有制备的 s-三嗪配合物均具有电解质性质,在 DMSO 溶剂中进行了研究。使用 TEM 扫描了制备的配合物的表面形貌行为。根据 X 射线粉末衍射图谱检查了三嗪配合物的结晶行为。研究了游离配体及其铂(IV)和钯(II)配合物对 (G+)、 (G-)、 、和 物种的抗菌活性,并与标准品进行了比较。配体与金属离子的配位使它们成为更强的抑菌剂,从而比游离配体更能抑制细菌和真菌的生长。游离配体及其铂(IV)配合物对人结肠和肺癌细胞系的细胞毒性评估 IC 引入了有希望的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f87/6398043/6578c9a07efb/BMRI2019-9835745.001.jpg

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