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首页> 外文期刊>International journal of oncology >Hypoxia promotes stem-like properties of laryngeal cancer cell lines by increasing the CD133+ stem cell fraction
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Hypoxia promotes stem-like properties of laryngeal cancer cell lines by increasing the CD133+ stem cell fraction

机译:缺氧通过增加CD133 +干细胞分数来促进喉癌细胞系的干样特性

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Evidence indicates that a hypoxic micro-environment plays an essential role in the regulation of cancer stem cells (CSCs). However, whether hypoxia is able to regulate the stem-like biological properties of laryngeal cancer cells remains unknown. In this study, we investigated the influence of hypoxia on the stemness of two laryngeal cancer cell lines, Hep-2 and AMC-HN-8. We cultured the two cell lines under hypoxia and normoxia and examined the influence of hypoxia on the expression of hypoxia-inducible factors (HIFs) and the cancer stem-like properties of these cells, including cell cycle distribution, expression of stem cell genes (OCT4, SOX2 and NANOG) and laryngeal CSC surface marker (CD133), proliferation, invasion, colony formation and sphere formation capacity. We determined that both of these cell lines, when maintained under hypoxic conditions, showed expanded cells in the G0/G1 phase, exhibited preferential expression of stem cell genes and CD133, and manifested upregulation of HIFs. When treated with hypoxia followed by normoxia exposure, the two cell lines exhibited enhanced capacities for proliferation, invasion, and sphere and colony formation compared with cells maintained consistently under normoxia. Our findings indicate that a hypoxic microenvironment may upgrade the stem-like biological properties of laryngeal cancer cell lines by the expansion of the CD133+ stem cell fraction.
机译:有证据表明,低氧微环境在调节癌症干细胞(CSC)中起着至关重要的作用。然而,低氧是否能够调节喉癌细胞的茎样生物学特性仍是未知的。在这项研究中,我们调查了缺氧对两种喉癌细胞Hep-2和AMC-HN-8的干性的影响。我们在缺氧和常氧下培养了两种细胞系,并研究了缺氧对缺氧诱导因子(HIFs)表达和这些细胞的癌干样特性的影响,包括细胞周期分布,干细胞基因表达(OCT4)。 ,SOX2和NANOG)和喉CSC表面标记(CD133),增殖,侵袭,菌落形成和球形成能力。我们确定,这两种细胞系在缺氧条件下均维持在G0 / G1期显示扩增的细胞,并显示干细胞基因和CD133的优先表达,并表现出HIF的上调。与缺氧条件下维持一致的细胞相比,当缺氧后再暴露于缺氧条件下,这两种细胞系表现出增强的增殖,侵袭能力以及球形和集落形成能力。我们的发现表明,低氧微环境可能会通过CD133 +干细胞组分的扩增来提升喉癌细胞系的干样生物学特性。

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