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首页> 外文期刊>Russian Journal of General Chemistry >Synthesis, Physicochemical, and Biological Studies of New Pyridoxine HCl Mononuclear Drug Complexes of V(III), Ru(III), Pt(II), Se(IV), and Au(III) Metal Ions
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Synthesis, Physicochemical, and Biological Studies of New Pyridoxine HCl Mononuclear Drug Complexes of V(III), Ru(III), Pt(II), Se(IV), and Au(III) Metal Ions

机译:新吡哆醇HCL单核药物复合物的合成,物理化学和生物学研究V(III),Ru(III),Pt(II),SE(IV)和Au(III)金属离子

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摘要

Pyridoxine HCl (vitamin B-6; Pyr-H-3) complexes with the formula [M(Pyr-H)(H2O)(4)].Cl center dot nH(2)O [M= V(III), Ru(III); n = 0.1], [Pt(Pyr-H)(H2O)(Cl)].Cl, [Se(Pyr-H-3)(O)(OH)(2)], and [Au(Pyr-H)(H2O)(2)]Cl are synthesized by the reactions of Pyr-H-3 with metal chlorides [V(III), Ru(III), Pt(II), Se(IV), and Au(III)] at 60 degrees C in methanol-water 50: 50 v/v. The accumulated data of the elemental analysis, conductivity measurements, mass, FT-IR, H-1, and C-13 NMR, UV-Vis spectroscopy and magnetic moments support elucidated stoichiometry, structures and chelation of the complexes. Thermogravimetric analysis of the synthesized solid complexes is carried out for determining their thermal stability, number of crystalline water molecules and decomposition steps. According to the physicochemical analyses Pyr-H-3 reacts with metal ions as a bidentate ligand via both phenolate oxygen and oxygen of the CH2OH group. The antimicrobial and anticancer tests reveal that complexes demonstrate higher antibacterial activity than free Pyr-H-3 chelate. According to the cytotoxic results of Pt(IV) and Au(III) complexes in vitro based on human hepato cellular carcinoma (HepG-2) and human breast cancer (MCF-7) tumor cell lines, the former one exhibits promising activity.
机译:吡哆醇HCl(维生素B-6; Pyr-H-3)配合物用式[M(Pyr-H)(H2O)(4)]。Cl中心点NH(2)O [M = V(III),RU (iii); n = 0.1],[Pt(Pyr-H)(H 2 O)(Cl)]。Cl,[Se(Pyr-H-3)(O)(OH)(2)]和[Au(Pyr-H) (H 2 O)(2)] CL由金属氯化物的Pyr-H-3反应合成[V(III),Ru(III),Pt(II),SE(IV)和Au(III)]甲醇水50:50V / v中60℃。元素分析,电导率测量,质量,FT-IR,H-1和C-13 NMR,UV-Vis光谱和磁矩的累积数据支持阐明了复合物的化学计量,结构和螯合。进行合成固体配合物的热重分析,用于确定其热稳定性,结晶水分子的数量和分解步骤。根据物理化学分析,Pyr-H-3通过酚酸氧和CH 2 OH基团的氧化氧和氧气与金属离子作为二齿配体反应。抗微生物和抗癌试验表明,复合物表明比游离Pyr-H-3螯合物更高的抗菌活性。根据PT(IV)和Au(III)复合物的细胞毒性结果,基于人肝细胞癌(Hepg-2)和人乳腺癌(MCF-7)肿瘤细胞系,前者展现出有前途的活性。

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