肿瘤细胞的低碳生活

Low carbon lifestyle of tumor cells

  • 摘要: 细胞能量异常是肿瘤细胞的十大特征之一,正常细胞能量代谢主要通过线粒体氧化磷酸化释放二氧化碳,而肿瘤细胞能量代谢主要通过有氧糖酵解产生乳酸代替二氧化碳释放,这种能量代谢的特点使内环境中二氧化碳释放减少。因此,肿瘤细胞处于一种低碳生活状态,具有体细胞逐渐恶变的进程中获得特征性生长表型,在肿瘤细胞增殖、侵袭转移中发挥独特的生物学作用。本文就肿瘤细胞低碳生活与肿瘤细胞主要的特殊能量需求、基因突变、环境选择、酸抵抗、凋亡逃避和肿瘤干细胞特性维持等机制进行综述。

     

    Abstract: The deregulation of cellular energetics is one of the hallmarks of cancer cells. The metabolism of tumor cells is unique in that aerobic glycolysis occurs with increased glycolysis and decreased mitochondrial oxidative phosphorylation, even in the presence of oxygen. The Warburg effect is related to the original observation that proliferating tumor cells consume glucose at a high rate and release lactate, not CO2. In terms of carbon emissions, a low carbon lifestyle exists in tumor cells. This lifestyle represents one such mechanism whereby increased entry of glucose ensures rapid proliferation and sustenance of biological processes critical for proliferation, metastasis, and adaptation, and further proliferation at the metastatic site. The underlying mechanisms involve directing glucose toward biosynthesis, rapid cell energy generation, gene mutation, environmental selection, acid resistance, escape from apoptosis and maintaince of tumor stem cell.

     

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