前往化源商城

Journal of Immunology 2015-09-01

Reshaping of Human Macrophage Polarization through Modulation of Glucose Catabolic Pathways.

Elena Izquierdo, Víctor Delgado Cuevas, Salvador Fernández-Arroyo, Marta Riera-Borrull, Emmanuel Orta-Zavalza, Jorge Joven, Eduardo Rial, Angel L Corbi, María M Escribese

文献索引:J. Immunol. 195 , 2442-51, (2015)

全文:HTML全文

摘要

Macrophages integrate information from the tissue microenvironment and adjust their effector functions according to the prevalent extracellular stimuli. Therefore, macrophages can acquire a variety of activation (polarization) states, and this functional plasticity allows the adequate initiation, regulation, and resolution of inflammatory responses. Modulation of the glucose metabolism contributes to the macrophage adaptation to the surrounding cytokine milieu, as exemplified by the distinct glucose catabolism of macrophages exposed to LPS/IFN-γ or IL-4. To dissect the acquisition of macrophage effector functions in the absence of activating cytokines, we assessed the bioenergetic profile of macrophages generated in the presence of GM-CSF (GM-MØ) or M-CSF (M-MØ), which do not release pro- or anti-inflammatory cytokines unless subjected to additional activating stimuli. Compared to M-MØ, GM-MØ displayed higher oxygen consumption rate and aerobic glycolysis (extracellular acidification rate [ECAR]), as well as higher expression of genes encoding glycolytic enzymes. However, M-MØ exhibited a significantly higher oxygen consumption rate/ECAR ratio. Surprisingly, whereas aerobic glycolysis positively regulated IL1B, TNF, and INHBA mRNA expression in both macrophage subtypes, mitochondrial respiration negatively affected IL6, IL1B, TNF, and CXCL10 mRNA expression in M-MØ. The physiological significance of these results became evident under low oxygen tensions, as hypoxia enhanced ECAR in M-MØ via HIF-1α and HIF-2α, increased expression of glycolytic enzymes and GM-MØ-specific genes, and diminished expression of M-MØ-associated genes. Therefore, our data indicate that GM-MØ and M-MØ display distinct bioenergetic profiles, and that hypoxia triggers a transcriptomic switch in macrophages by promoting a HIF-1α/HIF-2α-dependent increase in ECAR.Copyright © 2015 by The American Association of Immunologists, Inc.

相关化合物

结构式 名称/CAS号 全部文献
二甲基亚砜 结构式 二甲基亚砜
CAS:67-68-5
L-谷氨酰胺 结构式 L-谷氨酰胺
CAS:56-85-9
草氨酸钠 结构式 草氨酸钠
CAS:565-73-1
碳酰氰-4-三氟甲氧基苯腙 结构式 碳酰氰-4-三氟甲氧基苯腙
CAS:370-86-5
鱼藤酮 结构式 鱼藤酮
CAS:83-79-4
噻唑兰 结构式 噻唑兰
CAS:298-93-1
8-辛酰氧基芘-1,3,6-三磺酸三钠盐 结构式 8-辛酰氧基芘-1,3,6-三磺酸三钠盐
CAS:115787-84-3