Department of Thoracic Surgery, Tangdu Hospital, Fourth Military Medical University, Xi'an, China.
State Key Laboratory of Cancer Biology, Department of Biochemistry and Molecular Biology, Fourth Military Medical University, Xi'an, China.
Life Sci. 2018 Sep 1;208:20-25. doi: 10.1016/j.lfs.2018.07.008. Epub 2018 Jul 6.
Cancer cells display altered metabolism distinct from non-transformed cells, which is correlated closely with malignant biocharacteristics. Flexibility remains the central feature of metabolic alteration, enabling cancer cells to survive and thrive in the challenge of inner and outer environments. In this review, we summarise how cancer reprogrammes its metabolism nimbly and adaptively. To begin with, cancer cells adapt metabolism cunningly to supply sufficient materials and energy for infinite proliferation. Further, cancer cells harness metabolism to maintain appropriate cellular redox status, providing survival benefit rather than impairment on tumor growth. Moreover, cancer can switch between different metabolic types flexibly to handle harsh conditions like hypoxia, nutrient deficiency and metabolic inhibition on the journey for expansion. Last but not least, cancer coordinates metabolism of cancerous or stromal cells well to gain support and escape immune destruction. In a word, metabolic flexibility confers indomitable viability on cancer. Exploring such plasticity will help us gain new insights into cancer pathogenesis and cancer therapy.
癌细胞表现出与非转化细胞不同的代谢改变,这与恶性生物学特征密切相关。灵活性仍然是代谢改变的核心特征,使癌细胞能够在内外环境的挑战中生存和茁壮成长。在这篇综述中,我们总结了癌细胞如何灵活地重新编程其代谢。首先,癌细胞巧妙地适应代谢,为无限增殖提供充足的物质和能量。此外,癌细胞利用代谢来维持适当的细胞氧化还原状态,为肿瘤生长提供生存优势,而不是损害。此外,癌症可以在不同的代谢类型之间灵活切换,以应对缺氧、营养缺乏和代谢抑制等恶劣条件,从而在扩张的过程中适应。最后但同样重要的是,癌症很好地协调癌细胞和基质细胞的代谢,以获得支持并逃避免疫破坏。总之,代谢的灵活性赋予了癌症顽强的生存能力。探索这种可塑性将有助于我们深入了解癌症的发病机制和癌症治疗。