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Hypoxia and metabolic adaptation of cancer cells

机译:癌细胞的缺氧和代谢适应

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Low oxygen tension (hypoxia) is a pervasive physiological and pathophysiological stimulus that metazoan organisms have contended with since they evolved from their single-celled ancestors. The effect of hypoxia on a tissue can be either positive or negative, depending on the severity, duration and context. Over the long-term, hypoxia is not usually consistent with normal function and so multicellular organisms have had to evolve both systemic and cellular responses to hypoxia. Our reliance on oxygen for efficient adenosine triphosphate (ATP) generation has meant that the cellular metabolic network is particularly sensitive to alterations in oxygen tension. Metabolic changes in response to hypoxia are elicited through both direct mechanisms, such as the reduction in ATP generation by oxidative phosphorylation or inhibition of fatty-acid desaturation, and indirect mechanisms including changes in isozyme expression through hypoxia-responsive transcription factor activity. Significant regions of cancers often grow in hypoxic conditions owing to the lack of a functional vasculature. As hypoxic tumour areas contain some of the most malignant cells, it is important that we understand the role metabolism has in keeping these cells alive. This review will outline our current understanding of many of the hypoxia-induced changes in cancer cell metabolism, how they are affected by other genetic defects often present in cancers, and how these metabolic alterations support the malignant hypoxic phenotype.
机译:低氧张力(缺氧)是后生动物自其单细胞祖先进化而来以来一直在与之抗衡的生理和病理生理刺激。缺氧对组织的影响可以是阳性或阴性,这取决于严重性,持续时间和环境。从长期来看,低氧通常与正常功能不符,因此多细胞生物不得不发展对低氧的全身和细胞反应。我们依靠氧气来高效生成三磷酸腺苷(ATP),这意味着细胞代谢网络对氧气张力的变化特别敏感。缺氧反应中的代谢变化是通过两种直接机制引起的,例如通过氧化磷酸化减少ATP生成或抑制脂肪酸去饱和而产生的间接机制,以及包括通过缺氧反应性转录因子活性改变同工酶表达的间接机制。由于缺乏功能性脉管系统,癌症的重要区域常在低氧状态下生长。由于缺氧肿瘤区域包含一些最恶性的细胞,因此重要的是我们了解新陈代谢在保持这些细胞存活中的作用。这篇综述将概述我们目前对许多缺氧引起的癌细胞代谢变化的理解,它们如何受到癌症中常见的其他遗传缺陷的影响,以及这些代谢变化如何支持恶性低氧表型。

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