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Synthesis, spectroscopic characterization, photochemical and photophysical properties and biological activities of ruthenium complexes with mono- and bi-dentate histamine ligand

机译:具有单齿和双齿组胺配体的钌配合物的合成,光谱表征,光化学和光物理性质以及生物活性

摘要

The monodentate cis-[Ru(phen)(2)(hist)(2)](2+) 1R and the bidentate cis-[Ru(phen)(2)(hist)](2+) 2A complexes were prepared and characterized using spectroscopic (H-1, (H-1-H-1) COSY and (H-1-C-13) HSQC NMR, UV-vis, luminescence) techniques. The complexes presented absorption and emission in the visible region, as well as a tri-exponential emission decay. The complexes are soluble in aqueous and non-aqueous solution with solubility in a buffer solution of pH 7.4 of 1.14 x 10(-3) mol L-1 for (1R + 2A) and 6.43 x 10(-4) mol L-1 for 2A and lipophilicity measured in an aqueous-octanol solution of -1.14 and -0.96, respectively. Photolysis in the visible region in CH3CN converted the starting complexes into cis-[Ru(phen)(2)(CH3CN)(2)](2+). Histamine photorelease was also observed in pure water and in the presence of BSA (1.0 x 10(-6) mol L-1). The bidentate coordination of the histamine to the ruthenium center in relation to the monodentate coordination increased the photosubstitution quantum yield by a factor of 3. Pharmacological studies showed that the complexes present a moderate inhibition of AChE with an IC50 of 21 mu mol L-1 (referred to risvagtini, IC50 181 mu mol L-1 and galantamine IC50 0.006 mu mol L-1) with no appreciable cytotoxicity toward to the HeLa cells (50% cell viability at 925 mu mol L-1). Cell uptake of the complexes into HeLa cells was detected by fluorescence confocal microscopy. Overall, the observation of a luminescent complex that penetrates the cell wall and has low cytotoxicity, but is reactive photochemically, releasing histamine when irradiated with visible light, are interesting features for application of these complexes as phototherapeutic agents.
机译:制备了单齿顺式[[Ru(phen)(2)(hist)(2)](2+)1R和双齿顺式[[Ru(phen)(2)(hist)](2+)2A复合物,使用光谱(H-1,(H-1-H-1)COZY和(H-1-C-13)HSQC NMR,UV-vis,发光)技术进行表征。该复合物在可见光区域呈现吸收和发射,以及三指数发射衰减。配合物可溶于水溶液和非水溶液,在pH 7.4的缓冲溶液中的溶解度为(1R + 2A)1.14 x 10(-3)mol L-1和6.43 x 10(-4)mol L-1辛醇水溶液的2A值和亲脂性分别为-1.14和-0.96。 CH3CN中可见光区域的光解作用将起始络合物转化为顺式[Ru(phen)(2)(CH3CN)(2)](2+)。在纯水中和BSA(1.0 x 10(-6)mol L-1)存在下也观察到组胺的光释放。组胺与钌中心的二齿配位与单齿配位有关使光合量子产率提高了3倍。药理研究表明,该复合物对AChE具有中等抑制作用,IC50为21μmol L-1(称为risvagtini,IC50为181μmolL-1,加兰他敏IC50为0.006μmolL-1),对HeLa细胞无明显的细胞毒性(925μmolL-1对细胞活力为50%)。通过荧光共聚焦显微镜检测复合物进入HeLa细胞的细胞摄取。总的来说,观察到发光复合物穿透细胞壁并且具有低细胞毒性,但是具有光化学反应性,当用可见光照射时会释放组胺,是将这些复合物用作光疗剂的有趣特征。

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