Department of Chemistry and Biochemistry, The Ohio State University , Columbus, Ohio 43210, United States.
J Am Chem Soc. 2014 Dec 10;136(49):17095-101. doi: 10.1021/ja508272h. Epub 2014 Dec 1.
The new tris-heteroleptic complex Ru(bpy)(dppn)(CH3CN)2 (3, bpy = 2,2'-bipyridine, dppn = benzo[i]dipyrido[3,2-a;2',3'-c]phenazine) was synthesized and characterized in an effort to generate a molecule capable of both singlet oxygen ((1)O2) production and ligand exchange upon irradiation. Such dual reactivity has the potential to be useful for increasing the efficacy of photochemotherapy drugs by acting via two different mechanisms simultaneously. The photochemical properties and photoinduced cytotoxicity of 3 were compared to those of Ru(bpy)2(dppn) (1) and Ru(bpy)2(CH3CN)2 (2), since 1 sensitizes the production of (1)O2 and 2 undergoes ligand exchange of the monodentate CH3CN ligands with solvent when irradiated. The quantum yield of (1)O2 production was measured to be 0.72(2) for 3 in methanol, which is slightly lower than that of 1, Φ = 0.88(2), in the same solvent (λirr = 460 nm). Complex 3 also undergoes photoinduced ligand exchange when irradiated in H2O (λirr = 400 nm), but with a low quantum efficiency (<1%). These results are explained by the presence of the low-lying ligand-centered (3)ππ* excited state of 3 localized on the dppn ligand, thus decreasing the relative population of the higher energy (3)dd state; the latter is associated with ligand dissociation. Cytotoxicity data with HeLa cells reveal that complex 3 exhibits a greater photocytotoxicity index, 1110, than does either 1 and 2, indicating that the dual-action complex is more photoactive toward cells in spite of its low ligand exchange quantum yield.
新的三异双核配合物[Ru(bpy)(dppn)(CH3CN)2]2+(3,bpy=2,2'-联吡啶,dppn=苯并[i]二吡啶并[3,2-a;2',3'-c]吩嗪)被合成并进行了表征,旨在生成一种既能产生单线态氧(1O2)又能在照射后进行配体交换的分子。这种双重反应性有可能通过同时作用于两种不同的机制来提高光化学疗法药物的疗效。3 的光化学性质和光诱导细胞毒性与[Ru(bpy)2(dppn)]2+(1)和[Ru(bpy)2(CH3CN)2]2+(2)进行了比较,因为 1 敏化 1O2 的产生,而 2 在照射时与溶剂发生单齿 CH3CN 配体的配体交换。在甲醇中,3 的 1O2 产生量子产率为 0.72(2),略低于相同溶剂中 1 的 Φ=0.88(2)(λirr=460nm)。当在 H2O 中照射时,3 也会发生光诱导配体交换,但量子效率较低(<1%)。这些结果可以通过 3 中存在的低能配体中心(3)ππ*激发态来解释,该激发态定域在 dppn 配体上,从而降低了较高能量(3)dd 态的相对丰度;后者与配体解离有关。用 HeLa 细胞进行的细胞毒性数据表明,3 的光细胞毒性指数为 1110,高于 1 和 2,表明尽管其配体交换量子产率较低,但双功能配合物对细胞的光活性更强。