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Spheroid cancer stem cells display reprogrammed metabolism and obtain energy by actively running the tricarboxylic acid (TCA) cycle

机译:球状癌干细胞显示出重新编程的新陈代谢并通过积极运行三羧酸(TCA)循环获得能量

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摘要

The Warburg effect is a metabolic hallmark of cancer cells; cancer cells, unlike normal cells, exclusively activate glycolysis, even in the presence of enough oxygen. On the other hand, intratumoral heterogeneity is currently of interest in cancer research, including that involving cancer stem cells (CSCs). In the present study, we attempted to gain an understanding of metabolism in CSCs that is distinct from that in non-CSCs. After forming spheroids from the OVTOKO (ovarian clear cell adenocarcinoma) and SiHa (cervical squamous cell carcinoma) cell lines, the metabolites of these cells were compared with the metabolites of cancer cells that were cultured in adherent plates. A principle components analysis clearly divided their metabolic features. Amino acids that participate in tricarboxylic acid (TCA) cycle reactions, such as serine and glutamine, were significantly increased in the spheroids. Indeed, spheroids from each cell line contained more total adenylates than did their corresponding cells in adherent cultures. This study demonstrated that cancer metabolism is not limited to aerobic glycolysis (i.e. the Warburg effect), but is flexible and context-dependent. In addition, activation of TCA cycles was suggested to be a metabolic feature of CSCs that was distinct from non-CSCs. The amino acid metabolic pathways discussed here are already considered as targets for cancer therapy, and they are additionally proposed as potential targets for CSC treatment.
机译:Warburg效应是癌细胞的新陈代谢特征。与正常细胞不同,癌细胞即使在有足够氧气的情况下也只能激活糖酵解。另一方面,肿瘤内异质性目前在癌症研究中受到关注,包括涉及癌症干细胞(CSC)的异质性。在本研究中,我们试图了解与非CSC不同的CSC代谢。在从OVTOKO(卵巢透明细胞腺癌)和SiHa(子宫颈鳞状细胞癌)细胞系中形成球状体后,将这些细胞的代谢物与在贴壁板上培养的癌细胞的代谢物进行了比较。主成分分析清楚地划分了它们的代谢特征。参与三羧酸(TCA)循环反应的氨基酸,如丝氨酸和谷氨酰胺,在球体中显着增加。实际上,来自每个细胞系的球状体比其贴壁培养中的相应细胞所含的总腺苷酸多。这项研究表明,癌症代谢不仅限于有氧糖酵解(即Warburg效应),而且是灵活的且取决于环境的。另外,TCA循环的激活被认为是CSCs的代谢特征,与非CSCs不同。这里讨论的氨基酸代谢途径已经被认为是癌症治疗的靶标,并且还被提议作为CSC治疗的潜在靶标。

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