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首页> 外文期刊>Scientific reports. >Hypoxic environment may enhance migration/penetration of endocrine resistant MCF7- derived breast cancer cells through monolayers of other non-invasive cancer cells in vitro
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Hypoxic environment may enhance migration/penetration of endocrine resistant MCF7- derived breast cancer cells through monolayers of other non-invasive cancer cells in vitro

机译:缺氧环境可以通过体外单层通过其他非侵入性癌细胞的单层增强内分泌抗性MCF7-衍生的乳腺癌细胞的迁移/渗透

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The response of cancer cells to hypoxic conditions found within the interior of a tumor mass is mediated through the hypoxia inducible factor (HIF) cascade and is thought to promote metastasis. However, given their distant proximity from blood vessels as compared to normoxic cells at the vascularised tumor periphery, it is uncertain if these cells can migrate through the tumor mass to gain access. Hypoxia was simulated by exposure to cobalt chloride or deferoxamine in normal (MCF10A) and cancerous [estrogen receptor (ER)-ve (pII), and ER +ve (YS1.2/ EII)] cells. In this report, HIF1α expression and localization was measured using western blotting, ELISA, and immunofluorescence, cell proliferation by MTT assay, motility and invasion by wound healing, live cell imaging, matrigel and co-culture in chambered slides. We found that the expression and nuclear translocation of HIF1α was significantly elevated by hypoxia, which inhibited cell proliferation, but significantly increased motility of pII cells and their penetration into and through a dense layer of adjacent EII cells, as well as their selective emergence out of a co-culture. These data suggest that endocrine resistant pII cancer cells, having undergone epithelial to mesenchymal transition are able to penetrate through other cell layers, with possible enhancement in response to hypoxia.
机译:通过缺氧诱导因子(HIF)级联介导癌细胞对肿瘤肿块内部发现的缺氧条件的响应,并被认为促进转移。然而,鉴于血管与血管相比,与血管化肿瘤周边的常氧细胞相比,如果这些细胞可以通过肿瘤物质迁移以获得进入,则不确定。通过暴露于正常(MCF10A)和癌α[雌激素受体(ER)-VE(PII)和ER + VE(YS1.2 / EII)细胞的氯化钴或脱硫胺模拟缺氧。在本报告中,使用Western印迹,ELISA和免疫荧光,MTT测定,伤口愈合,活性细胞成像,Matrigel和腔室载玻片共培养的细胞增殖测量HIF1α表达和定位。我们发现HIF1α的表达和核转移由缺氧显着升高,缺氧抑制细胞增殖,但显着提高了PII细胞的动力及其渗透到和通过相邻的EII细胞的致密层,以及它们的选择性出现共同文化。这些数据表明,内分泌耐药性癌细胞,其具有内部性转化的内容性能够穿透其他细胞层,可能响应于缺氧的可能增强。

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