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Role of the Hypoxia-inducible factor-1 alpha induced autophagy in the conversion of non-stem pancreatic cancer cells into CD133+ pancreatic cancer stem-like cells

机译:缺氧诱导因子-1α诱导的自噬在非干胰腺癌细胞向CD133 +胰腺干细胞转化中的作用

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The initiation and progression of various solid tumors, including pancreatic carcinoma, are driven by a population of cells with stem cell properties, namely cancer stem cells (CSCs). Like their normal counterparts, CSCs are also believed to rely on their own microenvironment termed niches to sustain the population. Hypoxia-inducible factor-1α (HIF-1α) is a major actor in the cell survival response to hypoxia. Recently, several researchers proposed that non-stem cancer cells can convert to stem-like cells to maintain equilibrium. The present study focuses on whether non-stem pancreatic cancer cells can convert to stem-like cells and the role of HIF-1α and autophagy in modulating this conversation. The non-stem pancreatic cancer cells and pancreatic cancer stem-like cells were separated by magnetic sorting column. Intermittent hypoxia enhanced stem-like properties of non-stem pancreatic cancer cells and stimulated the levels of HIF-1α, LC3-II and Beclin. Enhanced autophagy was associated with the elevated level of HIF-1α. The conversation of non-stem pancreatic cancer cells into pancreatic cancer stem-like cells was induced by HIF-1α and autophagy. This novel finding may indicate the specific role of HIF-1α and autophagy in promoting the dynamic equilibrium between CSCs and non-CSCs. Also, it emphasizes the importance of developing therapeutic strategies targeting cancer stem cells as well as the microenvironmental influence on the tumor.
机译:包括胰腺癌在内的各种实体瘤的发生和发展是由具有干细胞特性的细胞(即癌症干细胞(CSC))驱动的。与正常人一样,人们也认为CSC依靠自己称为“利基”的微环境维持人口。缺氧诱导因子-1α(HIF-1α)是细胞对缺氧反应的主要反应因子。最近,一些研究人员提出,非干癌细胞可以转化为干细胞样以维持平衡。本研究集中于非干胰腺癌细胞是否可以转化为干细胞样细胞,以及HIF-1α和自噬在调节这种对话中的作用。用磁选柱分离非干胰腺癌细胞和胰腺干细胞样细胞。间歇性缺氧可增强非干胰腺癌细胞的干样特性,并刺激HIF-1α,LC3-II和Beclin的水平。自噬增强与HIF-1α水平升高有关。 HIF-1α和自噬诱导非干胰腺癌细胞向胰腺干细胞样细胞的转化。这一新发现可能表明HIF-1α和自噬在促进CSC和非CSC之间动态平衡方面的特定作用。此外,它强调了开发针对癌症干细胞的治疗策略以及对肿瘤的微环境影响的重要性。

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