作者
Jan Van den Bossche, Jeroen Baardman, Natasja A Otto, Saskia van der Velden, Annette E Neele, Susan M van den Berg, Rosario Luque-Martin, Hung-Jen Chen, Marieke CS Boshuizen, Mohamed Ahmed, Marten A Hoeksema, Alex F de Vos, Menno PJ de Winther
发表日期
2016/10/11
期刊
Cell reports
卷号
17
期号
3
页码范围
684-696
出版商
Elsevier
简介
Macrophages are innate immune cells that adopt diverse activation states in response to their microenvironment. Editing macrophage activation to dampen inflammatory diseases by promoting the repolarization of inflammatory (M1) macrophages to anti-inflammatory (M2) macrophages is of high interest. Here, we find that mouse and human M1 macrophages fail to convert into M2 cells upon IL-4 exposure in vitro and in vivo. In sharp contrast, M2 macrophages are more plastic and readily repolarized into an inflammatory M1 state. We identify M1-associated inhibition of mitochondrial oxidative phosphorylation as the factor responsible for preventing M1→M2 repolarization. Inhibiting nitric oxide production, a key effector molecule in M1 cells, dampens the decline in mitochondrial function to improve metabolic and phenotypic reprogramming to M2 macrophages. Thus, inflammatory macrophage activation blunts …
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