Byersdorfer Craig Alan
Department of Pediatrics, Division of Blood and Marrow Transplantation and Cellular Therapies, University of Pittsburgh , Pittsburgh, PA , USA.
Front Immunol. 2014 Dec 18;5:641. doi: 10.3389/fimmu.2014.00641. eCollection 2014.
Activation represents a significant bioenergetic challenge for T-cells, which must undergo metabolic reprogramming to keep pace with increased energetic demands. This review focuses on the role of fatty acid metabolism, both in vitro and in vivo, following T-cell activation. Based upon previous studies in the literature, as well as accumulating evidence in allogeneic cells, I propose a multi-step model of in vivo metabolic reprogramming. In this model, a primary determinant of metabolic phenotype is the ubiquity and duration of antigen exposure. The implications of this model, as well as the future challenges and opportunities in studying T-cell metabolism, will be discussed.
激活对T细胞而言是一项重大的生物能量挑战,T细胞必须进行代谢重编程以跟上不断增加的能量需求。本综述聚焦于T细胞激活后脂肪酸代谢在体外和体内的作用。基于先前文献中的研究以及同种异体细胞中不断积累的证据,我提出了一个体内代谢重编程的多步骤模型。在这个模型中,代谢表型的一个主要决定因素是抗原暴露的普遍性和持续时间。将讨论该模型的意义以及研究T细胞代谢未来面临的挑战和机遇。