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Leucine-rich diet induces a shift in tumour metabolism from glycolytic towards oxidative phosphorylation, reducing glucose consumption and metastasis in Walker-256 tumour-bearing rats

机译:富含亮氨酸的饮食诱导肿瘤代谢从糖浆朝向氧化磷酸化的转变,降低葡萄糖消费和转移在步行者-256肿瘤大鼠中

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Leucine can stimulate protein synthesis in skeletal muscle, and recent studies have shown an increase in leucine-related mitochondrial biogenesis and oxidative phosphorylation capacity in muscle cells. However, leucine-related effects in tumour tissues are still poorly understood. Thus, we described the effects of leucine in both in vivo and in vitro models of a Walker-256 tumour. Tumour-bearing Wistar rats were randomly distributed into a control group (W; normoprotein diet) and leucine group (LW; leucine-rich diet [normoprotein?+?3% leucine]). After 20 days of tumour evolution, the animals underwent sup18/sup-fludeoxyglucose positron emission computed tomography (sup18/supF-FDG PET-CT) imaging, and after euthanasia, fresh tumour biopsy samples were taken for oxygen consumption rate measurements (Oroboros Oxygraph), electron microscopy analysis and RNA and protein extraction. Our main results from the LW group showed no tumour size change, lower tumour glucose (sup18/supF-FDG) uptake, and reduced metastatic sites. Furthermore, leucine stimulated a shift in tumour metabolism from glycolytic towards oxidative phosphorylation, higher mRNA and protein expression of oxidative phosphorylation components, and enhanced mitochondrial density/area even though the leucine-treated tumour had a higher number of apoptotic nuclei with increased oxidative stress. In summary, a leucine-rich diet directed Walker-256 tumour metabolism to a less glycolytic phenotype profile in which these metabolic alterations were associated with a decrease in tumour aggressiveness and reduction in the number of metastatic sites in rats fed a diet supplemented with this branched-chain amino acid.
机译:亮氨酸可以刺激骨骼肌中的蛋白质合成,最近的研究表明肌肉细胞中亮氨酸相关线粒体生物发生和氧化磷酸化能力的增加。然而,肿瘤组织中的亮氨酸相关的效果仍然很差。因此,我们描述了亮氨酸在步行者-256肿瘤的体内和体外模型中的影响。将肿瘤的Wistar大鼠随机分布到对照组(W; NameProtein饮食)和亮氨酸基团(LW;富含亮氨酸的饮食[Namencrotein?+→3%亮氨酸])中。经过20天的肿瘤进化后,动物接受了 18 -fludeoxyglucose正电子发射计算断层扫描( 18 f-f-f-fdg pet-ct)成像,并在安乐死后,新鲜肿瘤活组织检查样品用于氧气消耗率测量(Oroboros Intraph),电子显微镜分析和RNA和蛋白质提取。我们来自LW组的主要结果显示,肿瘤大小变化,下肿瘤葡萄糖( 18 f-fdg)摄取,降低的转移性位点。此外,亮氨酸刺激肿瘤代谢从糖酵解朝氧化磷酸化的转变,氧化磷酸化组分的较高mRNA和蛋白表达,以及增强的线粒体密度/面积,即使亮氨酸处理的肿瘤具有较高数量的凋亡核,具有增加的氧化应激。总之,富含亮氨酸的饮食针对步行者-256肿瘤代谢到较少的糖型表型谱,其中这些代谢改变与肿瘤侵袭性的降低有关,大鼠喂食饮食中的大鼠转移位点的减少相关-Chain氨基酸。

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