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Fasting induces anti-Warburg effect that increases respiration but reduces ATP-synthesis to promote apoptosis in colon cancer models

机译:空腹诱导抗Warburg效应增强呼吸作用但减少ATP合成从而促进结肠癌模型中的细胞凋亡

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摘要

Tumor chemoresistance is associated with high aerobic glycolysis rates and reduced oxidative phosphorylation, a phenomenon called “Warburg effect” whose reversal could impair the ability of a wide range of cancer cells to survive in the presence or absence of chemotherapy. In previous studies, Short-term-starvation (STS) was shown to protect normal cells and organs but to sensitize different cancer cell types to chemotherapy but the mechanisms responsible for these effects are poorly understood. We tested the cytotoxicity of Oxaliplatin (OXP) combined with a 48hour STS on the progression of CT26 colorectal tumors. STS potentiated the effects of OXP on the suppression of colon carcinoma growth and glucose uptake in both in vitro and in vivo models. In CT26 cells, STS down-regulated aerobic glycolysis, and glutaminolysis, while increasing oxidative phosphorylation. The STS-dependent increase in both Complex I and Complex II-dependent O2 consumption was associated with increased oxidative stress and reduced ATP synthesis. Chemotherapy caused additional toxicity, which was associated with increased succinate/Complex II-dependent O2 consumption, elevated oxidative stress and apoptosis.These findings indicate that the glucose and amino acid deficiency conditions imposed by STS promote an anti-Warburg effect characterized by increased oxygen consumption but failure to generate ATP, resulting in oxidative damage and apoptosis.
机译:肿瘤化学抗性与高需氧糖酵解速率和减少的氧化磷酸化有关,这种现象称为“ Warburg效应”,其逆转作用可能削弱多种癌细胞在存在或不存在化学疗法下生存的能力。在以前的研究中,短期饥饿(STS)被证明可以保护正常的细胞和器官,但是可以使不同类型的癌细胞对化学疗法敏感,但是导致这些作用的机制却鲜为人知。我们测试了奥沙利铂(OXP)联合48小时STS对CT26大肠肿瘤进展的细胞毒性。 STS在体外和体内模型中均增强了OXP对结肠癌生长和葡萄糖摄取的抑制作用。在CT26细胞中,STS下调有氧糖酵解和谷氨酰胺分解,同时增加氧化磷酸化作用。复杂I和复杂II依赖的O2消耗的STS依赖性增加与氧化应激增加和ATP合成减少有关。化学疗法引起额外的毒性,这与琥珀酸/复杂II依赖的O2消耗增加,氧化应激增加和细胞凋亡有关。这些发现表明STS施加的葡萄糖和氨基酸缺乏症会促进以消耗氧气为特征的抗Warburg效应。但不能产生ATP,导致氧化损伤和细胞凋亡。

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