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Synthesis and anticancer activity of carbosilane metallodendrimers based on arene ruthenium(II) complexes

机译:芳烃钌(II)配合物碳硅烷金属树枝状大分子的合成及抗癌活性

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A series of new organometallic carbosilane dendrimers (first and second generation) and the corresponding non-dendritic mononuclear based on ruthenium arene fragments are described. The metallodendrimers were prepared by reactions of the precursor [Ru(eta(6)-p-cymene)Cl-2](2) with carbosilane dendrimers functionalized with N-donor monodentate ligands such as NH2- and pyridine, or with N, O-, N, N-chelating imine ligands. While the dendrimer precursors are insoluble in DMSO or water, novel metallodendrimers are soluble in DMSO and some of them are even highly soluble in water. The molecular structure of the "Ru-NH2" mononuclear compound (zero generation) was determined by single-crystal X-ray crystallography. The cytotoxicity activity of these dendritic structures was evaluated in several human cancer cell lines and compared with that of the corresponding mononuclear ruthenium complexes. Most compounds display significant cytotoxic activities in the low micromolar range with the first generation ruthenium dendrimers being the most active compounds. The cell death type for selected compounds has been studied as well as their reactivity towards relevant biomolecules such as DNA, Human Serum Albumin (HSA) and Cathepsin-B. All the data point to a mode of action different from that of cisplatin for most complexes. First generation ruthenium dendrimers inhibit Cathepsin-B, which may suggest potential antimetastatic properties of these compounds.
机译:描述了一系列新的有机金属碳硅烷树枝状聚合物(第一和第二代)和相应的基于钌芳烃片段的非树枝状单核。通过前体[Ru(eta(6)-p-cymene)Cl-2](2)与用N-给体单齿配体(例如NH2-和吡啶)或N,O官能化的碳硅烷树状大分子反应制备金属树状大分​​子-,N,N-螯合的亚胺配体。尽管树枝状大分子前体不溶于DMSO或水,但新型金属树枝状大分子可溶于DMSO,其中一些甚至高度溶于水。通过单晶X射线晶体学测定“ Ru-NH 2”单核化合物的分子结构(零代)。在几种人类癌细胞系中评估了这些树突状结构的细胞毒性活性,并将其与相应的单核钌配合物进行了比较。大多数化合物在低微摩尔范围内均显示出显着的细胞毒性活性,其中第一代钌树枝状聚合物是活性最高的化合物。研究了所选化合物的细胞死亡类型,以及它们对相关生物分子(如DNA,人血清白蛋白(HSA)和组织蛋白酶B)的反应性。对于大多数复合物,所有数据都指向不同于顺铂的作用方式。第一代钌树枝状大分子抑制组织蛋白酶B,这可能表明这些化合物具有潜在的抗转移特性。

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