Chen Zhen-Feng, Qin Qi-Pin, Qin Jiao-Lan, Liu Yan-Cheng, Huang Ke-Bin, Li Yu-Lan, Meng Ting, Zhang Guo-Hai, Peng Yan, Luo Xu-Jian, Liang Hong
State Key Laboratory Cultivation Base for the Chemistry and Molecular Engineering of Medicinal Resources, School of Chemistry and Pharmacy, Guangxi Normal University , Yucai Road 15, Guilin 541004, P. R. China.
J Med Chem. 2015 Mar 12;58(5):2159-79. doi: 10.1021/jm5012484. Epub 2015 Feb 18.
Two G-quadruplex ligands [Pt(L(a))(DMSO)Cl] (Pt1) and [Pt(L(b))(DMSO)Cl] (Pt2) have been synthesized and fully characterized. The two complexes are more selective for SK-OV-3/DDP tumor cells versus normal cells (HL-7702). It was found that both Pt1 and Pt2 could be a telomerase inhibitor targeting G-quadruplex DNA. This is the first report demonstrating that telomeric, c-myc, and bcl-2 G-quadruplexes and caspase-3/9 preferred to bind with Pt2 rather than Pt1, which also can induce senescence and apoptosis. The different biological behavior of Pt1 and Pt2 may correlate with the presence of a 6-hydroxyl group in L(b). Importantly, Pt1 and Pt2 exhibited higher safety in vivo and more effective inhibitory effects on tumor growth in the HCT-8 and NCI-H460 xenograft mouse model, compared with cisplatin. Taken together, these mechanistic insights indicate that both Pt1 and Pt2 display low toxicity and could be novel anticancer drug candidates.
已合成并全面表征了两种G-四链体配体[Pt(L(a))(DMSO)Cl](Pt1)和[Pt(L(b))(DMSO)Cl](Pt2)。这两种配合物对SK-OV-3/DDP肿瘤细胞的选择性高于正常细胞(HL-7702)。研究发现,Pt1和Pt2均可能是靶向G-四链体DNA的端粒酶抑制剂。这是首次报道表明端粒、c-myc和bcl-2 G-四链体以及caspase-3/9更倾向于与Pt2而非Pt1结合,Pt2还可诱导衰老和凋亡。Pt1和Pt2不同的生物学行为可能与L(b)中6-羟基的存在有关。重要的是,与顺铂相比,Pt1和Pt2在体内表现出更高的安全性,对HCT-8和NCI-H460异种移植小鼠模型中的肿瘤生长具有更有效的抑制作用。综上所述,这些机制性见解表明Pt1和Pt2均具有低毒性,可能是新型抗癌药物候选物。