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首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Heterocyclic organobismuth (III) compounds containing an eight-membered ring: Inhibitory effects on cell cycle progression
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Heterocyclic organobismuth (III) compounds containing an eight-membered ring: Inhibitory effects on cell cycle progression

机译:含有八元环的杂环有机铋(III)化合物:对细胞周期进展的抑制作用

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摘要

We previously showed that heterocyclic organobismuth compounds have excellent antimicrobial and antitumor potential. These compounds structurally consist of either six- or eight-membered rings. Previous research has shown that bi-chlorodibenzo[cf][1,5]thiabismocine (Compound 3), an eight-membered ring, induced G(2)/M arrest via inhibition of tubulin polymerization in HeLa cells. Additionally, N-tert-butyl-bi-chlorodi-benzo[cf] [1,5]azabismocine (Compound 1), another eight-membered ring, exhibited higher cytotoxicity than Compound 3 against several cancer cell lines, including HeLa and K562. Finally, bi-chlorophenothiabismin-S,S-dioxide (Compound 5), a six-membered ring, exhibited lower antitumor activity than eight-membered ring compounds. In this study, we investigated the antimitotic activity of Compounds 1 and 5 in HeLa cells. At low concentrations, (0.1 and 0.25 mu M), Compound 1 inhibited cell growth and arrested the cell cycle in mitosis. However, 0.5 mu M Compound 1 exhibited no antimitotic activity. Conversely, Compound 5 weakly inhibited cell growth and did not markedly arrest the cell cycle. Flow cytometry showed that Compound 1 arrested the cell cycle at G(2)/M, resulting in apoptosis. Compound 1 inhibited tubulin polymerization as revealed by a cell-free assay, and both Compounds 1 and 3 inhibited microtubule spindle formation and chromosome alignment during prometaphase. These results suggest that eight-membered ring-containing organobismuth compounds can induce mitotic arrest by perturbing spindle dynamics.
机译:我们以前表明杂环有机铋化合物具有优异的抗微生物和抗肿瘤潜力。这些化合物在结构上由六个或八元环组成。以前的研究表明,通过抑制HeLa细胞中的小管蛋白聚合,Bi-Chlorodibenzo [CF] [CF] [CF] [CF] [CF] [1,5] [1,5] [1,5] [1,5] [1,5],八元环,诱导的G(2)/ m被阻止。另外,N-叔丁基-Bi-氯二苯并苯并[CF] [1,5]α[1,5]偶氮干线(化合物1),另外的八元环,比化合物3表现出较高的细胞毒性,抵抗几种癌细胞系,包括Hela和K562。最后,双叶绿素脂蛋白-S,二氧化碳(化合物5),六元环,表现出比八元环化合物低抗肿瘤活性。在这项研究中,我们研究了HeLa细胞中化合物1和5的抗杀菌剂活性。在低浓度下,(0.1和0.25μm),化合物1抑制细胞生长并在有丝分裂中捕获细胞周期。然而,0.5μm化合物1表现出抗杀菌剂活性。相反,化合物5弱抑制细胞生长,并未显着抑制细胞周期。流式细胞术显示化合物1在g(2)/ m时停止了细胞周期,导致细胞凋亡。化合物1抑制了通过无细胞测定揭示的微管蛋白聚合,并且化合物1和3均在PROMetaphase期间抑制微管纺锤体形成和染色体对准。这些结果表明,含八元环的有机铋化合物可以通过扰动主轴动力学诱导有丝分裂。

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