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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, structures and anticancer potentials of platinum(II) saccharinate complexes of tertiary phosphines with phenyl and cyclohexyl groups targeting mitochondria and DNA
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Synthesis, structures and anticancer potentials of platinum(II) saccharinate complexes of tertiary phosphines with phenyl and cyclohexyl groups targeting mitochondria and DNA

机译:铂(II)亚磷酸亚磷酸亚磷酸亚磷酸酯的合成,结构和抗癌电位靶向线粒体和DNA的亚己基和环己基

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摘要

A series of new Pt(II) saccharinate complexes containing PR3ligands (PPh3, PPh2Cy, PPhCy2and PCy3) with progressive phenyl (Ph) replacement by cyclohexyl (Cy) were synthesized and structurally characterized by IR, NMR, ESI-MS and X-ray diffraction. The anticancer activity of the complexes was tested against human breast (MCF-7), lung (A549), colon (HCT116), and prostate (DU145) cancer cell lines as well as against normal bronchial epithelial (BEAS-2B) cells.Trans-configured complexes1,3and5emerged as potential anticancer drug candidates. The mechanism of action of the potent complexes was then investigated in detail. The three complexes interacted with DNA by groove binding and with HSA via hydrophobic IIA subdomain. Furthermore, the complexes cleaved plasmid DNA efficiently. Cellular uptake studies in MCF-7?cells showed that the biologically active complexes were mainly localized in cytoplasm. The cytotoxic activity was a function of the lipophilicity and cellular accumulation of the complexes. As determined by M30, Annexin V and Caspase 3/7 activity assays, the complexes induced apoptosis in MCF-7 and HCT116?cells. Mechanistic studies showed that the potent complexes cause excessive generation of reactive oxygen species (ROS) and display a dual action, concurrently targeting both mitochondria and genomic DNA.
机译:通过IR,NMR,ESI-MS和X射线衍射合成含有PR3Ligands(PPH3,PPH2CH)(PPH3,PPH2CPH2CY,PPHCY2和PPHCY2和PPHY2和PPHY3)的一系列新的PT(II)糖精配合物,其特征在于,结构表征。复合物的抗癌活性对人乳腺(MCF-7),肺(A549),结肠(HCT116)和前列腺(DU145)癌细胞系以及对抗正常支气管上皮(BEAS-2B)细胞.TRANS - 将复合体提供1,3和5次作为潜在的抗癌药物候选者。然后详细研究了有效络合物的作用机制。通过沟槽结合和HSA通过疏水性IIA子域与HSA与DNA相互作用。此外,复合物有效地裂开质粒DNA。 MCF-7中的细胞摄取研究表明,细胞主要是在细胞质中局部局部的。细胞毒性活性是复合物的亲脂性和细胞积累的函数。由M30,膜蛋白V和Caspase 3/7活性测定法测定,复合物在MCF-7和HCT116中诱导细胞凋亡。机械研究表明,有效的络合物导致过度产生的活性氧(ROS)并显示双作用,同时靶向线粒体和基因组DNA。

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