Del Pino José Manuel Veiga, Scalambra Franco, Bermejo-Casadesús Cristina, Massaguer Anna, García-Maroto Federico, Romerosa Antonio
Área de Química Inorgánica-CIESOL, Universidad de Almería, Almería, Spain.
Departament de Biologia, Universitat de Girona, Girona, Spain.
J Inorg Biochem. 2023 Sep;246:112291. doi: 10.1016/j.jinorgbio.2023.112291. Epub 2023 Jun 14.
The water-soluble ruthenium complex cis-[Ru(dcbpyH)(PTAH)]Cl·3HO (1) (dcbpy = 4,4'-dicarboxy-2,2'-bipyridine; PTA = 1,3,5-triaza-7-phosphaadamantane) has been synthesized and characterised by NMR, IR spectroscopy, elemental analysis, and single-crystal X-ray diffraction. The optical properties of 1 were studied, including photoactivation under visible light, as well as its biological properties, together with those of the previously published Ru complexes cis-[Ru(bpy)(PTA)]Cl (2), trans-Ru(bpy)(PTA) (3) and cis-Ru(bpy)(HO)(PTA) (4) (bpy = 2,2'-bipyridine). Anticancer activities of the complexes against human lung (A549), cervical (HeLa) and prostate (PC3) carcinoma cells were evaluated under dark conditions and upon photoactivation with visible light. None of the complexes exhibited cytotoxic activity in the absence of light irradiation (IC > 100 μM). However, after photoactivation, the cytotoxicity of complexes 1, 2 and 3 against the three cell lines markedly increased, resulting in IC values between 25.3 μM and 9.3 μM. Notably, these complexes did not show toxicity against red blood cells. These findings show the potential of complexes 1, 2 and, particularly, 3 for selective and controlled cancer photochemotherapy. The reactivity of the Ru complexes against DNA under UV-Vis irradiation was studied by analysing plasmid mobility. Experimental data shows that 4 unfolds supercoiled DNA (SC DNA) both in the dark and under visible irradiation, while 1 and 3 are only active under light, being 2 inactive in either case. The unfolding activities of complexes 3 and 4 were dependent on the air present in the reaction. The measured intracellular levels of reactive oxygen species (ROS) upon irradiation with complexes 1, 2 and 3 suggest that their mechanism of action is related to oxidative stress.
已合成了水溶性钌配合物顺式-[Ru(dcbpyH)(PTAH)]Cl·3H₂O (1)(dcbpy = 4,4'-二羧基-2,2'-联吡啶;PTA = 1,3,5-三氮杂-7-磷杂金刚烷),并通过核磁共振、红外光谱、元素分析和单晶X射线衍射对其进行了表征。研究了1的光学性质,包括可见光下的光活化,以及它的生物学性质,同时还研究了先前发表的钌配合物顺式-[Ru(bpy)₂(PTA)]Cl (2)、反式-Ru(bpy)₂(PTA)₂ (3)和顺式-Ru(bpy)₂(OH)(PTA)₂ (4)(bpy = 2,2'-联吡啶)的生物学性质。在黑暗条件下以及用可见光光活化后,评估了这些配合物对人肺癌(A549)、宫颈癌(HeLa)和前列腺癌(PC3)细胞的抗癌活性。在无光照的情况下,这些配合物均未表现出细胞毒性活性(IC₅₀ > 100 μM)。然而,光活化后,配合物1、2和3对这三种细胞系的细胞毒性显著增加,IC₅₀值在25.3 μM至9.3 μM之间。值得注意的是,这些配合物对红细胞没有毒性。这些发现表明配合物1、2,尤其是3在选择性和可控癌症光化学疗法方面具有潜力。通过分析质粒迁移率研究了钌配合物在紫外-可见光照下对DNA的反应活性。实验数据表明,4在黑暗和可见光照射下均能使超螺旋DNA (SC DNA)解旋,而1和3仅在光照下有活性,2在两种情况下均无活性。配合物3和4的解旋活性取决于反应中存在的空气。用配合物1、2和3照射后测得的细胞内活性氧(ROS)水平表明它们的作用机制与氧化应激有关。