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Energy metabolic pathways control the fate and function of myeloid immune cells

机译:能量代谢途径控制骨髓免疫细胞的命运和功能

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摘要

The past decade has seen a significant interest in investigating the intracellular metabolism of cells of the immune system. This has increased the realization that immune cells endure metabolic reprogramming upon responding to pathogen-derived or inflammatory signals. More importantly, not only does this metabolic switch provide for the bioenergetic and biosynthetic demands but also it, in a highly specific manner, determines the cellular fate and function. In this review, we discuss the metabolic aspects that regulate the differentiation and function of myeloid cells, pivotal for both innate and adaptive immunity. The manipulation of these pathways can alter the function of these cells and therefore, could provide novel therapeutic approaches in cancer and other chronic inflammatory conditions.
机译:在过去的十年中,人们对研究免疫系统细胞的细胞内代谢产生了浓厚的兴趣。这增加了人们的认识,即免疫细胞在对病原体来源的或炎性的信号作出反应时会承受新的代谢重编程。更重要的是,这种代谢转换不仅提供了生物能量和生物合成需求,而且还以高度特定的方式决定了细胞的命运和功能。在这篇综述中,我们讨论了调节髓样细胞分化和功能的代谢方面,这对于先天和适应性免疫都至关重要。这些途径的操纵可以改变这些细胞的功能,因此可以为癌症和其他慢性炎症性疾病提供新颖的治疗方法。

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