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Dynamic scenario of metabolic pathway adaptation in tumors and therapeutic approach

机译:肿瘤中代谢途径适应的动态情况和治疗方法

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摘要

Cancer cells need to regulate their metabolic program to fuel several activities, including unlimited proliferation, resistance to cell death, invasion and metastasis. The aim of this work is to revise this complex scenario. Starting from proliferating cancer cells located in well-oxygenated regions, they may express the so-called “Warburg effect” or aerobic glycolysis, meaning that although a plenty of oxygen is available, cancer cells choose glycolysis, the sole pathway that allows a biomass formation and DNA duplication, needed for cell division. Although oxygen does not represent the primary font of energy, diffusion rate reduces oxygen tension and the emerging hypoxia promotes “anaerobic glycolysis” through the hypoxia inducible factor-1α-dependent up-regulation. The acquired hypoxic phenotype is endowed with high resistance to cell death and high migration capacities, although these cells are less proliferating. Cells using aerobic or anaerobic glycolysis survive only in case they extrude acidic metabolites acidifying the extracellular space. Acidosis drives cancer cells from glycolysis to OxPhos, and OxPhos transforms the available alternative substrates into energy used to fuel migration and distant organ colonization.Thus, metabolic adaptations sustain different energy-requiring ability of cancer cells, but render them responsive to perturbations by anti-metabolic agents, such as inhibitors of glycolysis and/or OxPhos.
机译:癌细胞需要调节其代谢程序以促进多种活动,包括无限增殖,抗细胞死亡,侵袭和转移。这项工作的目的是修改这种复杂的情况。从位于高氧区域的癌细胞开始增殖,它们可能表达所谓的“ Warburg效应”或有氧糖酵解,这意味着尽管有大量的氧气可用,癌细胞还是选择糖酵解,糖酵解是唯一可以形成生物质的途径。和DNA复制,这是细胞分裂所必需的。尽管氧气不代表能量的主要形式,但扩散速率降低了氧气的张力,新出现的缺氧通过缺氧诱导因子-1α依赖性上调促进“厌氧糖酵解”。尽管这些细胞增殖较少,但获得性低氧表型具有对细胞死亡的高抗性和高迁移能力。使用需氧或厌氧糖酵解的细胞只有在挤压酸性代谢物酸化细胞外空间的情况下才能存活。酸中毒将癌细胞从糖酵解转移到OxPhos,OxPhos将可用的替代底物转化为能量以促进迁移和远处器官定植,因此,代谢适应维持了癌细胞不同的能量需求能力,但使它们对抗微生物反应产生了反应。代谢剂,例如糖酵解和/或OxPhos抑制剂。

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