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首页> 外文期刊>Tumour biology : >Upregulation of miR-199a/b contributes to cisplatin resistance via Wnt/β-catenin-ABCG2 signaling pathway in ALDHA1 + colorectal cancer stem cells
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Upregulation of miR-199a/b contributes to cisplatin resistance via Wnt/β-catenin-ABCG2 signaling pathway in ALDHA1 + colorectal cancer stem cells

机译:miR-199a / b的上调通过ALDHA1 +结直肠癌干细胞中的Wnt /β-catenin-ABCG2信号传导途径促进顺铂耐药

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Cisplatin resistance in colorectal cancer largely results from the colorectal cancer stem cells which could be targeted to improve the efficacy of chemotherapy. MicroRNAs are possible modulators of cancer stem cell characteristics and maybe involved in the retention of cancer stem cell chemoresistance. The aim of this study was to investigate the biological function of miR-199a/b on cisplatin resistance in colorectal cancer stem cells and its related mechanisms. Here, ALDHA1+ cells from primary colorectal cancer tissues behaved similar to cancer stem cells and were chemoresistant to cisplatin. The presence of a variable fraction of ALDHA1 was detected in 9 out of 10 colorectal cancer specimens. Significantly, increased miR-199a/b expression was detected in ALDHA1+ colorectal cancer stem cells, accompanied by a downregulation of Gsk3β and an overexpression of β-catenin and ABCG2. In patient cohort, enhanced miR-199a/b expression in colorectal cancer tissues was associated with cisplatin response and poor patient survival. In addition, 80% of colorectal cancer samples showed lower level of Gsk3β than their adjacent normal counterparts. Furthermore, Gsk3β was the direct target of miR-199a/b. MiR-199a/b regulated Wnt/β-catenin pathway by targeting Gsk3β in ALDHA1+ colorectal cancer stem cells. By blocking Wnt/β-catenin pathway, we implied that ABCG2 lies downstream of Wnt/β-catenin pathway. ABCG2 was further demonstrated to contribute cisplatin resistance in ALDHA1+ colorectal cancer stem cells and can be regulated by miR-199a/b. Thus, our data suggested that upregulation of miR-199a/b in ALDHA1+ colorectal cancer stem cells contributed to cisplatin resistance via Wnt/β-catenin-ABCG2 signaling, which sheds new light on understanding the mechanism of cisplatin resistance in colorectal cancer stem cells and facilitates the development of potential therapeutics against colorectal cancer.
机译:结直肠癌中的顺铂耐药性很大程度上是由结直肠癌干细胞引起的,该干细胞可以靶向改善化疗效果。微小RNA可能是癌症干细胞特征的调节剂,并可能参与癌症干细胞化学抗性的保留。这项研究的目的是研究miR-199a / b对大肠癌干细胞中顺铂耐药性的生物学功能及其相关机制。在这里,来自原发性结直肠癌组织的ALDHA1 + 细胞的行为与癌干细胞相似,并且对顺铂具有化学耐药性。在10个大肠癌标本中,有9个检测到ALDHA1含量可变。值得注意的是,在ALDHA1 + 结直肠癌干细胞中检测到miR-199a / b表达增加,同时伴有Gsk3β的下调以及β-catenin和ABCG2的过表达。在患者队列中,miR-199a / b在结直肠癌组织中的表达增强与顺铂反应和患者生存不良有关。此外,大肠癌样本中80%的Gsk3β水平低于其邻近的正常对照。此外,Gsk3β是miR-199a / b的直接靶标。 MiR-199a / b通过靶向ALDHA1 + 结直肠癌干细胞中的Gsk3β来调控Wnt /β-catenin途径。通过阻断Wnt /β-catenin途径,我们暗示ABCG2位于Wnt /β-catenin途径的下游。进一步证明ABCG2在ALDHA1 + 结直肠癌干细胞中具有顺铂耐药性,并且可以被miR-199a / b调节。因此,我们的数据表明,ALDHA1 + 结直肠癌干细胞中miR-199a / b的上调通过Wnt /β-catenin-ABCG2信号促进了顺铂耐药性,为了解其机制提供了新的思路。大肠癌干细胞中的顺铂耐药性,促进了针对大肠癌的潜在疗法的发展。

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