首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Hypoxia Inducible Factor-1α Inactivation Unveils a Link between Tumor Cell Metabolism and Hypoxia-Induced Cell Death
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Hypoxia Inducible Factor-1α Inactivation Unveils a Link between Tumor Cell Metabolism and Hypoxia-Induced Cell Death

机译:低氧诱导因子-1α失活揭示了肿瘤细胞代谢与低氧诱导的细胞死亡之间的联系

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摘要

Hypoxia and the acquisition of a glycolytic phenotype are intrinsic features of the tumor microenvironment. The hypoxia inducible factor-1α (HIF-1α) pathway is activated under hypoxic conditions and orchestrates a complex transcriptional program that enhances cell survival. Although the consequences of HIF-1α inactivation in cancer cells have been widely investigated, only a few studies have addressed the role of HIF-1α in the survival of cancer cells endowed with different glycolytic capacities. In this study, we investigated this aspect in ovarian cancer cells. Hypoxia-induced toxicity was increased in highly glycolytic cells compared with poorly glycolytic cells; it was also associated with a sharp decrease in intracellular ATP levels and was prevented by glucose supplementation. Stable HIF-1α silencing enhanced hypoxia-induced cell death >in vitro due to a lack of cell cycle arrest. Tumors bearing attenuated HIF-1α levels had similar growth rates and vascularization as did controls, but tumors showed higher proliferation levels and increased necrosis. Moreover, tumors formed by HIF-1α deficient cells had higher levels of lactate and lower ATP concentrations than controls as shown by metabolic imaging. The findings that such metabolic properties can affect the survival of cancer cells under hypoxic conditions and that these properties contribute to the determination of the consequences of HIF-1α inactivation could have important implications on the understanding of the effects of anti-angiogenic and HIF-1α-targeting drugs in cancer.
机译:缺氧和糖酵解表型的获得是肿瘤微环境的固有特征。缺氧诱导因子-1α(HIF-1α)途径在缺氧条件下被激活,并协调复杂的转录程序以增强细胞存活率。尽管已广泛研究了癌细胞中HIF-1α失活的后果,但只有少数研究解决了HIF-1α在具有不同糖酵解能力的癌细胞存活中的作用。在这项研究中,我们研究了卵巢癌细胞的这一方面。与低糖酵解细胞相比,高糖酵解细胞低氧诱导的毒性增加;它也与细胞内ATP水平的急剧下降有关,并且可以通过补充葡萄糖来预防。由于缺乏细胞周期停滞,稳定的HIF-1α沉默增强了体外低氧诱导的细胞死亡。 HIF-1α水平降低的肿瘤与对照组相比具有相似的生长速率和血管生成,但是肿瘤显示出更高的增殖水平和坏死增加。而且,由HIF-1α缺陷的细胞形成的肿瘤比对照组具有更高的乳酸水平和更低的ATP浓度,如代谢成像所示。这些代谢特性可以在缺氧条件下影响癌细胞的存活,并且这些特性有助于确定HIF-1α失活的结果,这一发现可能对理解抗血管生成和HIF-1α的作用具有重要意义。靶向药物治疗癌症。

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