首页> 美国卫生研究院文献>Oncotarget >Maintenance of cancer stemness by miR-196b-5p contributes to chemoresistance of colorectal cancer cells via activating STAT3 signaling pathway
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Maintenance of cancer stemness by miR-196b-5p contributes to chemoresistance of colorectal cancer cells via activating STAT3 signaling pathway

机译:miR-196b-5p维持癌症干性通过激活STAT3信号通路有助于大肠癌细胞的化学耐药性

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摘要

Emerging studies indicated that cancer stem cells represent a subpopulation of cells within the tumor that is responsible for chemotherapeutic resistance. However, the underlying mechanism is still not clarified yet. Here we report that miR-196b-5p is dramatically upregulated in CRC tissues and high expression of miR-196b-5p correlates with poor survival in CRC patients. Moreover, recurrent gains (amplification) contribute to the miR-196b-5p overexpression in CRC tissues. Silencing miR-196b-5p suppresses spheroids formation ability, the fraction of SP cells, expression of stem cell factors and the mitochondrial potential, and enhances the apoptosis induced by 5-fluorouracil in CRC cells; while ectopic expression of miR-196b-5p yields an opposite effect. In addition, downregulation of miR-196b-5p resensitizes CRC cells to 5-fluorouracil in vivo. Our results further demonstrate that miR-196b-5p promotes stemness and chemoresistance of CRC cells to 5-fluorouracil via targeting negative regulators SOCS1 and SOCS3 of STAT3 signaling pathway, giving rise to activation of STAT3 signaling. Interestingly, miR-196b-5p is highly enriched in the serum exosomes of patients with CRC compared to the healthy control subjects. Thus, our results unravel a novel mechanism of miR-196b-5p implicating in the maintenance of stem cell property and chemotherapeutic resistance in CRC, offering a potential rational registry of anti-miR-196b-5p combining with conventional chemotherapy against CRC.
机译:新兴研究表明,癌症干细胞代表肿瘤内负责化疗耐药性的细胞亚群。但是,其潜在机制仍未阐明。在这里,我们报道miR-196b-5p在CRC组织中显着上调,而miR-196b-5p的高表达与CRC患者的不良生存率相关。此外,经常性获得(扩增)有助于CRC组织中miR-196b-5p的过表达。沉默miR-196b-5p可抑制球体形成能力,SP细胞分数,干细胞因子表达和线粒体电位,并增强5-氟尿嘧啶诱导CRC细胞凋亡。而miR-196b-5p的异位表达产生相反的效果。此外,miR-196b-5p的下调会在体内使CRC细胞对5-氟尿嘧啶重新敏感。我们的结果进一步证明,miR-196b-5p通过靶向STAT3信号传导途径的负调节剂SOCS1和SOCS3,促进CRC细胞对5-氟尿嘧啶的干性和化学抗性,从而引起STAT3信号传导的激活。有趣的是,与健康对照组相比,miR-196b-5p在CRC患者的血清外泌体中高度富集。因此,我们的研究结果揭示了miR-196b-5p参与维持CRC干细胞特性和化学治疗抗性的新机制,提供了抗miR-196b-5p与常规抗CRC化疗相结合的潜在合理机制。

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