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针对具有抗癌活性的有机钌(II)-吡嗪二羧酸配合物的必需结构要素的鉴定。

Towards Identification of Essential Structural Elements of Organoruthenium(II)-Pyrithionato Complexes for Anticancer Activity.

机构信息

Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna pot 113, 1000, Ljubljana, Slovenia.

Institute of Medicinal and Pharmaceutical Chemistry, Technische Universität Braunschweig, 38106, Braunschweig, Germany.

出版信息

Chemistry. 2019 Nov 7;25(62):14169-14182. doi: 10.1002/chem.201903109. Epub 2019 Oct 11.

Abstract

An organoruthenium(II) complex with pyrithione (2-mercaptopyridine N-oxide) 1 a has previously been identified by our group as a compound with promising anticancer potential without cytotoxicity towards non-cancerous cells. To expand the rather limited research on compounds of this type, an array of novel chlorido and 1,3,5-triaza-7-phosphaadamantane (pta) organoruthenium(II) complexes with methyl-substituted pyrithiones has been prepared. After thorough investigation of the aqueous stability of these complexes, their modes of action have been elucidated at the cellular level. Minor structural alterations in the ruthenium-pyrithionato compounds resulted in fine-tuning of their cytotoxicities. The best performing compounds, 1 b and 2 b, with a chlorido or pta ligand bound to ruthenium, respectively, and a methyl group at the 3-position of the pyrithione scaffold, have been further investigated. Both compounds trigger early apoptosis, induce the generation of reactive oxygen species and G1 arrest in A549 cancer cells, and show no strong interaction with DNA. However, only 1 b also inhibits thioredoxin reductase. Wound healing assays and mitochondrial function evaluation have revealed differences between these two compounds at the cellular level.

摘要

本课题组曾鉴定出一种具有应用前景的抗癌药物,该药物是一种钌(II)有机配合物,配体是吡啶硫酮(2-巯基吡啶 N-氧化物)1a,且对正常细胞无细胞毒性。为了拓展对该类化合物的研究,本课题组制备了一系列新型的含氯和 1,3,5-三嗪-7-磷杂金刚烷(pta)的取代基吡啶硫酮的钌(II)有机配合物。在深入研究这些配合物的水稳定性后,进一步在细胞水平上阐明了它们的作用模式。对钌-吡啶硫酮配合物进行了微小的结构调整,使其细胞毒性得到精细调节。性能最佳的两种化合物 1b 和 2b,分别为含氯或 pta 配体与钌配位,以及吡啶硫酮支架的 3-位有一个甲基取代基,已进一步进行了研究。这两种化合物都能引发早期细胞凋亡,诱导 A549 癌细胞中活性氧的产生和 G1 期阻滞,且与 DNA 无强相互作用。然而,只有 1b 还能抑制硫氧还蛋白还原酶。划痕愈合实验和线粒体功能评估揭示了这两种化合物在细胞水平上的差异。

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