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首页> 外文期刊>American Journal of Cancer Research >Tannic acid attenuates the formation of cancer stem cells by inhibiting NF-κB-mediated phenotype transition of breast cancer cells
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Tannic acid attenuates the formation of cancer stem cells by inhibiting NF-κB-mediated phenotype transition of breast cancer cells

机译:单宁酸通过抑制NF-κB介导的乳腺癌细胞表型转变来衰减癌症干细胞的形成

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摘要

Cancer stem cells (CSCs) are innately resistant to standard therapies, which positions CSCs in the focus of anti-cancer research. In this study, we investigated the potential inhibitory effect of tannic acid (TA) on CSCs. Our data demonstrated that TA (10 μM), at the concentration not inhibiting the proliferation of normal mammary cells (MCF10A), inhibited the formation and growth of mammosphere in MCF7, T47D, MDA-MB-231 cells shown as a decrease in mammosphere formation efficiency (MFE), cell number, diameter of mammosphere, and ALDH1 activity. NF-κB pathway was activated in the mammosphere indicated by an up-regulation of p65, a degradation of IκBα, and an increased IL-6. The inhibition of NF-κB pathway via gene silencing of p65 (sip65), NF-κB inhibitor (PDTC), or IKK inhibitor (Bay11-7082) alleviated MFE. Other CSCs markers such as an increase in ALDH1 and CD44 high /CD24 low ratio were ameliorated by sip65. TA also alleviated TGFβ-induced EMT, increase in MFE, and NF-κB activation. In murine xenograft model, TA reduced tumor volume which was associated with a decrease in CD44 high /CD24 low expression and IKK phosphorylation. These results suggest that TA negatively regulates CSCs by inhibiting NF-κB activation and thereby prevents cancer cells from undergoing EMT and CSCs formation, and may thus be a promising therapy targeting CSCs.
机译:癌症干细胞(CSCs)对标准疗法有天然抵抗,其位于抗癌研究的重点中的CSC。在这项研究中,我们研究了单宁酸(TA)对CSCs的潜在抑制作用。我们的数据证明,Ta(10μm)在不抑制正常乳腺细胞(MCF10a)的浓度下,抑制MCF7,T47D,MDA-MB-231细胞中哺乳动物的形成和生长,显示为乳腺圈形成的降低效率(MFE),细胞数,哺乳动物直径和ALDH1活动。 NF-κB途径在哺乳动物中被激活,所述乳腺晶晶椎间晶晶椎间晶圈,IκBα的降解和增加的IL-6增加。通过基因沉默P65(SIP65),NF-κB抑制剂(PDTC)或IKK抑制剂(Bay11-7082)的基因沉默抑制NF-κB途径。其他CSCS标记如SIP65改善了诸如AldH1和CD44高/ CD24低比率的增加。 TA也缓解了​​TGFβ诱导的EMT,MFE增加,NF-κB活化。在鼠异种移植模型中,TA减少肿瘤体积,其与CD44高/ CD24低表达和IKK磷酸化的降低相关。这些结果表明,TA通过抑制NF-κB活化来负调节CSCs,从而防止癌细胞进行EMT和CSCS形成,因此可能是靶向CSC的有希望的治疗。

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