Institut de la Matière Condensée et des Nanosciences (IMCN), Molecular Chemistry, Materials and Catalysis (MOST), Université catholique de Louvain (UCLouvain), Place Louis Pasteur 1, bte L4.01.02, 1348, Louvain-la-Neuve, Belgium.
Département de Chimie Moléculaire, UMR CNRS 5250, Université Grenoble Alpes (UGA), CS 40700-38058, Grenoble, France.
Chemistry. 2020 Nov 2;26(61):13849-13860. doi: 10.1002/chem.202001409. Epub 2020 Sep 29.
A series of new Ru Schiff base complexes built on the salphen moiety has been prepared. This includes four flexible monometallic Ru compounds and six rigid bimetallic analogues that contain Ni , Pd or Pt cations into the salphen complexation site. Steady state luminescence titrations illustrated the capacity of the compounds to photoprobe G-quadruplex (G4) DNA. Moreover, the vast array of the Schiff base structural changes allowed to extensively assess the influence of the ligand surface, flexibility and charge on the interaction of the compounds with G4 DNA. This was achieved thanks to circular dichroism melting assays and bio-layer interferometry studies that pointed up high affinities along with good selectivities of Ru Schiff base complexes for G4 DNA. In cellulo studies were carried out with the most promising compounds. Cellular uptake with location of the compounds in the nucleus as well as in the nucleolus was observed. Cell viability experiments were performed with U2OS osteosarcoma cells in the dark and under light irradiation which allowed the measurements of IC values and photoindexes. They showed the substantial role played by light irradiation in the activity of the drugs in addition to the low cytotoxicity of the molecules in the dark. Altogether, the reported results emphasize the promising properties of Ru Schiff base complexes as a new class of candidates for developing potential G4 DNA targeting diagnostic or therapeutic compounds.
一系列基于席夫碱部分的新型 Ru 配合物已被制备。这包括四个柔性单核 Ru 化合物和六个刚性双金属类似物,它们将 Ni、Pd 或 Pt 阳离子引入到席夫碱配位位点中。稳态荧光滴定表明,这些化合物具有光探测 G-四链体 (G4) DNA 的能力。此外,大量的席夫碱结构变化允许广泛评估配体表面、灵活性和电荷对化合物与 G4 DNA 相互作用的影响。这要归功于圆二色性熔融分析和生物层干涉研究,这些研究指出 Ru 席夫碱配合物对 G4 DNA 具有高亲和力和良好的选择性。在细胞内进行了最有前途的化合物的研究。观察到化合物在细胞核和核仁中的细胞摄取。在黑暗和光照下用 U2OS 骨肉瘤细胞进行细胞活力实验,允许测量 IC 值和光指数。结果表明,除了在黑暗中分子的低细胞毒性外,光照在药物活性中起着重要作用。总之,所报道的结果强调了 Ru 席夫碱配合物作为开发潜在 G4 DNA 靶向诊断或治疗化合物的新候选物的有前途的特性。