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Glucose Metabolism Regulates T Cell Activation Differentiation and Functions

机译:葡萄糖代谢调节T细胞的活化分化和功能

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摘要

The adaptive immune system is equipped to eliminate both tumors and pathogenic microorganisms. It requires a series of complex and coordinated signals to drive the activation, proliferation, and differentiation of appropriate T cell subsets. It is now established that changes in cellular activation are coupled to profound changes in cellular metabolism. In addition, emerging evidence now suggest that specific metabolic alterations associated with distinct T cell subsets may be ancillary to their differentiation and influential in their immune functions. The “Warburg effect” originally used to describe a phenomenon in which most cancer cells relied on aerobic glycolysis for their growth is a key process that sustain T cell activation and differentiation. Here, we review how different aspects of metabolism in T cells influence their functions, focusing on the emerging role of key regulators of glucose metabolism such as HIF-1α. A thorough understanding of the role of metabolism in T cell function could provide insights into mechanisms involved in inflammatory-mediated conditions, with the potential for developing novel therapeutic approaches to treat these diseases.
机译:自适应免疫系统可消除肿瘤和病原微生物。它需要一系列复杂且协调的信号来驱动适当的T细胞亚群的激活,增殖和分化。现在已经确定,细胞活化的变化与细胞代谢的深刻变化相关。此外,现在有新的证据表明与不同的T细胞亚群相关的特定代谢改变可能是其分化的辅助手段,并影响其免疫功能。 “ Warburg效应”最初用来描述一种现象,其中大多数癌细胞的生长依赖有氧糖酵解,这是维持T细胞活化和分化的关键过程。在这里,我们综述了T细胞中新陈代谢的不同方面如何影响其功能,重点研究了葡萄糖代谢关键调节因子(如HIF-1α)的新兴作用。对新陈代谢在T细胞功能中的作用的透彻了解可以提供对炎症介导的疾病所涉及的机制的深入了解,并有可能开发出新颖的治疗方法来治疗这些疾病。

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