Chang Chih-Hao, Pearce Erika L
Department of Pathology and Immunology, Washington University School of Medicine, St. Louis, Missouri, USA.
Department of Immunometabolism, Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany.
Nat Immunol. 2016 Apr;17(4):364-8. doi: 10.1038/ni.3415.
T cells have a pivotal protective role in defense against infection and cancer but also are instrumental in the development of many autoimmune diseases. The regulation of nutrient uptake and utilization in T cells is critically important for the control of their differentiation, and manipulating metabolic pathways in these cells can alter their function and longevity. While the importance of T cell metabolic remodeling in different physiological settings is not fully understood, there is a growing realization that inappropriate metabolic remodeling underlies many aberrant immune responses and that manipulating cellular metabolism can beneficially enhance or temper immunity. Here we comment on the basic metabolic pathways in T cells, followed by a discussion on up-to-date findings about the relationship between metabolism and T cell function and longevity. Furthermore, we expand on potential approaches and applications in which T cells might be manipulated by the reprogramming of metabolic pathways for therapeutic purposes.
T细胞在抵御感染和癌症方面发挥着关键的保护作用,但在许多自身免疫性疾病的发展中也起作用。T细胞中营养物质摄取和利用的调节对于控制其分化至关重要,操纵这些细胞中的代谢途径可以改变它们的功能和寿命。虽然T细胞代谢重塑在不同生理环境中的重要性尚未完全了解,但人们越来越认识到不适当的代谢重塑是许多异常免疫反应的基础,并且操纵细胞代谢可以有益地增强或调节免疫力。在这里,我们评论T细胞中的基本代谢途径,随后讨论关于代谢与T细胞功能和寿命之间关系的最新发现。此外,我们还阐述了通过代谢途径重编程来操纵T细胞以用于治疗目的的潜在方法和应用。