促炎细胞因子
下调和上调
脂多糖
内分泌学
肿瘤坏死因子α
内科学
炎症
线粒体ROS
化学
黑素皮质素
糖皮质激素受体
皮质酮
生物
糖皮质激素
氧化应激
医学
激素
生物化学
基因
作者
Emiko Kasahara,Atsuo Sekiyama,Mika Hori,Daisuke Kuratsune,Naoki Fujisawa,Dai Chida,Keiichi Hiramoto,Jiawei Li,Haruki Okamura,Masayasu Inoue,Seiichi Kitagawa
摘要
<b><i>Objective:</i></b> Although psychological and/or physiological stress has been well documented to influence immune responses, the precise mechanism for immunomodulation remains to be elucidated. The present work describes the role of the hypothalamic-pituitary-adrenal (HPA) axis in the mechanism of stress-mediated enhanced-resistance to lethality after lipopolysaccharide (LPS) injection. <b><i>Methods/Results:</i></b> Preconditioning with restraint stress (RS) resulted in enhanced activation of the HPA axis in response to LPS injection and suppressed LPS-induced release of proinflammatory cytokines and nitric oxide metabolites. Melanocortin 2 receptor-deficient mice (MC2R<sup>-/-</sup>) failed to increase plasma levels of glucocorticoids in response to LPS injection, and exhibited high sensitivity to LPS-induced lethality with enhanced release of proinflammatory cytokines as compared with MC2R<sup>+/-</sup> mice. Real-time PCR analysis revealed that RS induced upregulation of uncoupling protein-2 (UCP2) in macrophages in the lung and the liver of MC2R<sup>+/-</sup>, but not of MC2R<sup>-/-</sup>, mice. In addition, RS increased UCP2-dependent uncoupling activity of isolated mitochondria from the liver of MC2R<sup>+/-</sup>, but not of MC2R<sup>-/-</sup>, mice. In vitro study revealed that corticosterone and dexamethasone directly increased UCP2 expression in mouse RAW 264.7 macrophages and suppressed the generation of LPS-induced mitochondrial reactive oxygen species (ROS) and TNF-α production. Knockdown of UCP2 by small interfering RNA blunted the dexamethasone action for suppressing LPS-induced mitochondrial ROS and TNF-α production. <b><i>Conclusion:</i></b> The present work suggests that RS enhances activation of the HPA axis to release glucocorticoids and upregulation of UCP2 in macrophages, thereby increasing the resistance to endotoxin-induced systemic inflammation and death.
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