Department of Neurology, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.
Wiley Interdiscip Rev Syst Biol Med. 2020 Sep;12(5):e1486. doi: 10.1002/wsbm.1486. Epub 2020 Feb 27.
Pro-inflammatory signals induce metabolic reprogramming in innate and adaptive immune cells of both myeloid and lymphoid lineage, characterized by a shift to aerobic glycolysis akin to the Warburg effect first described in cancer. Blocking the switch to aerobic glycolysis impairs the survival, differentiation, and effector functions of pro-inflammatory cell types while favoring anti-inflammatory and regulatory phenotypes. Glycolytic reprogramming may therefore represent a selective vulnerability of inflammatory immune cells, providing an opportunity to modulate immune responses in autoimmune disease without broad toxicity in other tissues of the body. The mechanisms by which aerobic glycolysis and the balance between glycolysis and oxidative phosphorylation regulate immune responses have only begun to be understood, with many additional insights expected in the years to come. Immunometabolic therapies targeting aerobic glycolysis include both pharmacologic inhibitors of key enzymes and glucose-restricted diets, such as the ketogenic diet. Animal studies support a role for these pharmacologic and dietary therapies for the treatment of autoimmune diseases, and in a few cases proof of concept has been demonstrated in human disease. Nonetheless, much more work is needed to establish the clinical safety and efficacy of these treatments. This article is categorized under: Biological Mechanisms > Metabolism Translational, Genomic, and Systems Medicine > Translational Medicine Biological Mechanisms > Cell Signaling.
促炎信号诱导髓系和淋巴系固有免疫细胞和适应性免疫细胞的代谢重编程,其特征是向有氧糖酵解转变,类似于最初在癌症中描述的瓦博格效应。阻断向有氧糖酵解的转变会损害促炎细胞类型的存活、分化和效应功能,而有利于抗炎和调节表型。因此,糖酵解重编程可能代表炎症免疫细胞的选择性脆弱性,为在自身免疫性疾病中调节免疫反应提供了机会,而不会对体内其他组织产生广泛的毒性。有氧糖酵解和糖酵解与氧化磷酸化之间的平衡调节免疫反应的机制才刚刚开始被理解,预计在未来几年内会有更多的见解。针对有氧糖酵解的免疫代谢疗法包括关键酶的药理学抑制剂和葡萄糖限制饮食,如生酮饮食。动物研究支持这些药理学和饮食疗法在治疗自身免疫性疾病中的作用,在少数情况下,在人类疾病中已经证明了概念验证。然而,仍需要更多的工作来确定这些治疗方法的临床安全性和疗效。本文属于以下类别: 生物学机制 > 代谢 转化、基因组和系统医学 > 转化医学 生物学机制 > 细胞信号。