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首页> 外文期刊>International journal of biological sciences >Influence of Five Potential Anticancer Drugs on Wnt Pathway and Cell Survival in Human Biliary Tract Cancer Cells
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Influence of Five Potential Anticancer Drugs on Wnt Pathway and Cell Survival in Human Biliary Tract Cancer Cells

机译:五种潜在的抗癌药物对人胆道癌细胞Wnt通路和细胞存活的影响

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Background: The role of Wnt signalling in carcinogenesis suggests compounds targeting this pathway as potential anti-cancer drugs. Several studies report activation of Wnt signalling in biliary tract cancer (BTC) thus rendering Wnt inhibitory drugs as potential candidates for targeted therapy of this highly chemoresistant disease. Methods: In this study we analysed five compounds with suggested inhibitory effects on Wnt signalling (DMAT, FH535, myricetin, quercetin, and TBB) for their cytotoxic efficiency, mode of cell death, time- and cell line-dependent characteristics as well as their effects on Wnt pathway activity in nine different BTC cell lines. Results: Exposure of cancer cells to different concentrations of the compounds results in a clear dose-dependent reduction of viability for all drugs in the order FH535 > DMAT > TBB > myricetin > quercetin. The first three substances show high cytotoxicity in all tested cell lines, cause a direct cytotoxic effect by induction of apoptosis and inhibit pathway-specific signal transduction in a Wnt transcription factor reporter activity assay. Selected target genes such as growth-promoting cyclin D1 and the cell cycle progression inhibitor p27 are down- and up-regulated after treatment, respectively. Conclusions: Taken together, these data demonstrate that the small molecular weight inhibitors DMAT, F535 and TBB have a considerable cytotoxic and possibly Wnt-specific effect on BTC cell lines in vitro. Further in vivo investigation of these drugs as well as of new Wnt inhibitors may provide a promising approach for targeted therapy of this difficult-to-treat tumour.
机译:背景:Wnt信号在致癌作用中的作用表明靶向该途径的化合物是潜在的抗癌药物。几项研究报道了胆管癌(BTC)中Wnt信号的激活,从而使Wnt抑制药物成为这种高度化学耐药性疾病靶向治疗的潜在候选药物。方法:在这项研究中,我们分析了对Wnt信号传导具有抑制作用的五种化合物(DMAT,FH535,杨梅素,槲皮素和TBB)的细胞毒性效率,细胞死亡方式,时间和细胞系依赖性特征以及它们的抑制作用。在9种不同的BTC细胞系中对Wnt途径活性的影响。结果:癌细胞暴露于不同浓度的化合物后,所有药物的生存力均呈剂量依赖性降低,顺序依次为FH535> DMAT> TBB>杨梅素>槲皮素。前三种物质在所有测试的细胞系中均显示出高细胞毒性,在Wnt转录因子报告子活性测定中通过诱导凋亡诱导直接的细胞毒作用并抑制途径特异性信号转导。选定的靶基因,如促进生长的细胞周期蛋白D1和细胞周期进程抑制剂p27,分别在治疗后下调和上调。结论:综上所述,这些数据表明小分子抑制剂DMAT,F535和TBB在体外对BTC细胞系具有相当大的细胞毒性,可能还有Wnt特异性作用。这些药物以及新型Wnt抑制剂的进一步体内研究可能为靶向治疗这种难以治疗的肿瘤提供有希望的方法。

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