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The Role of Sodium Hydrogen Exchanger 1 in Dysregulation of Proton Dynamics and Reprogramming of Cancer Metabolism as a Sequela

机译:氢交换剂1在质子动力学失调和癌症代谢后代重编程中的作用

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摘要

Cancer cells have an unusual regulation of hydrogen ion dynamics that are driven by poor vascularity perfusion, regional hypoxia, and increased glycolysis. All these forces synergize/orchestrate together to create extracellular acidity and intracellular alkalinity. Precisely, they lead to extracellular pH (pHe) values as low as 6.2 and intracellular pH values as high as 8. This unique pH gradient (∆pHi to ∆pHe) across the cell membrane increases as the tumor progresses, and is markedly displaced from the electrochemical equilibrium of protons. These unusual pH dynamics influence cancer cell biology, including proliferation, metastasis, and metabolic adaptation. Warburg metabolism with increased glycolysis, even in the presence of Oxygen with the subsequent reduction in Krebs’ cycle, is a common feature of most cancers. This metabolic reprogramming confers evolutionary advantages to cancer cells by enhancing their resistance to hypoxia, to chemotherapy or radiotherapy, allowing rapid production of biological building blocks that support cellular proliferation, and shielding against damaging mitochondrial free radicals. In this article, we highlight the interconnected roles of dysregulated pH dynamics in cancer initiation, progression, adaptation, and in determining the programming and re-programming of tumor cell metabolism.
机译:癌细胞对氢离子动力学的调节异常,这是由血管灌注不良,局部缺氧和糖酵解增加引起的。所有这些力协同/协调在一起以产生细胞外酸度和细胞内碱度。准确地说,它们会导致细胞外pH(pHe)值低至6.2,而细胞内pH值高达8。随着肿瘤的进展,整个细胞膜上独特的pH梯度(∆pHi至∆pHe)会增加,并且明显偏离质子的电化学平衡。这些异常的pH动态影响癌细胞生物学,包括增殖,转移和代谢适应。大多数癌症的共同特征是,即使存在氧气,但随后的Krebs循环减少,Warburg的新陈代谢和糖酵解作用也会增强。这种代谢重编程通过增强癌细胞对缺氧,化学疗法或放射疗法的抵抗力,从而允许癌细胞快速产生支持细胞增殖的生物构件,并屏蔽有害的线粒体自由基,从而赋予癌细胞进化优势。在本文中,我们着重指出了pH动力学失调在癌症的发生,发展,适应以及确定肿瘤细胞代谢的编程和重新编程中的相互关联作用。

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