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单核和双核钴(II)-多吡啶配合物的合成、表征及细胞毒性特性

Synthesis, characterization, and cytotoxic properties of mono- and di-nuclear cobalt(ii)-polypyridyl complexes.

作者信息

Eskandari Arvin, Kundu Arunangshu, Lu Chunxin, Ghosh Sushobhan, Suntharalingam Kogularamanan

机构信息

Department of Chemistry, King's College London, London, UK.

出版信息

Dalton Trans. 2018 Apr 24;47(16):5755-5763. doi: 10.1039/c8dt00577j.

Abstract

We report the synthesis and characterisation of mono- and di-nuclear cobalt(ii) complexes (1-3) containing L1, a polypyridyl ligand with pyrazole moieties. DNA binding studies suggest that the mono-nuclear complex, 1, binds to DNA via the grooves prior to inducing oxidative DNA cleavage whereas the larger di-nuclear complexes, 2 and 3, bind to DNA via the grooves and through intercalation prior to inducing oxidative DNA cleavage. The cobalt(ii) complexes display micromolar potency towards U2OS (bone osteosarcoma), HepG2 (liver hepatocellular carcinoma), and GM05757 (normal human fibroblast) cells, comparable to clinically used platinum agents, cisplatin and carboplatin. The cellular mechanism of action studies show that the most effective cobalt(ii) complex, 2, enters U2OS cells, penetrates the nucleus, induces genomic DNA damage, and triggers caspase-dependent apoptosis in a p53-independent manner. This study highlights the potential of di-nuclear cobalt(ii) complexes as artificial oxidative metallonucleases and tangible cancer cell-potent agents.

摘要

我们报道了含有L1(一种带有吡唑基团的多吡啶配体)的单核和双核钴(II)配合物(1 - 3)的合成与表征。DNA结合研究表明,单核配合物1在诱导氧化性DNA切割之前通过沟槽与DNA结合,而较大的双核配合物2和3在诱导氧化性DNA切割之前通过沟槽并通过插入作用与DNA结合。钴(II)配合物对U2OS(骨肉瘤)、HepG2(肝细胞癌)和GM05757(正常人成纤维细胞)细胞显示出微摩尔级别的活性,与临床使用的铂类药物顺铂和卡铂相当。细胞作用机制研究表明,最有效的钴(II)配合物2进入U2OS细胞,穿透细胞核,诱导基因组DNA损伤,并以p53非依赖的方式触发半胱天冬酶依赖性凋亡。这项研究突出了双核钴(II)配合物作为人工氧化性金属核酸酶和有效的癌细胞活性药物的潜力。

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