A Novel Role of Microglial NADPH Oxidase in Mediating Extra-Synaptic Function of Norepinephrine in Regulating Brain Immune Homeostasis

被引:54
作者
Jiang, Lulu [1 ,2 ]
Chen, Shih-Heng [2 ]
Chu, Chun-Hsien [2 ]
Wang, Shi-Jun [2 ]
Oyarzabal, Esteban [2 ]
Wilson, Belinda [2 ]
Sanders, Virginia [3 ]
Xie, Keqin [1 ]
Wang, Qingshan [2 ]
Hong, Jau-Shyong [2 ]
机构
[1] Shandong Univ, Inst Toxicol, Sch Publ Hlth, Jinan 250012, Shandong, Peoples R China
[2] NIEHS, Neuropharmacol Sect, Neurobiol Lab, NIH, Res Triangle Pk, NC 27709 USA
[3] Ohio State Univ, Inst Behav Med Res, Dept Mol Virol Immunol & Med Genet, Columbus, OH 43210 USA
基金
美国国家卫生研究院;
关键词
extra-synaptic; neurotransmitter; volume transmission; DSP-4; neurodegeneration; BETA-ADRENERGIC-RECEPTOR; LIPOPOLYSACCHARIDE-INDUCED NEUROTOXICITY; B-LYMPHOCYTE FUNCTION; TUMOR-NECROSIS-FACTOR; DOPAMINERGIC-NEURONS; NORADRENERGIC NEURONS; LOCUS-COERULEUS; IN-VIVO; SUPEROXIDE-PRODUCTION; PARKINSONS-DISEASE;
D O I
10.1002/glia.22801
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Although the peripheral anti-inflammatory effect of norepinephrine (NE) is well documented, the mechanism by which this neurotransmitter functions as an anti-inflammatory/neuroprotective agent in the central nervous system (CNS) is unclear. This article aimed to determine the anti-inflammatory/neuroprotective effects and underlying mechanisms of NE in inflammation-based dopaminergic neurotoxicity models. In mice, NE-depleting toxin N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine (DSP-4) was injected at 6 months of lipopolysaccharide (LPS)-induced neuroinflammation. It was found that NE depletion enhanced LPS-induced dopaminergic neuron loss in the substantia nigra. This piece of in vivo data prompted us to conduct a series of studies in an effort to elucidate the mechanism as to how NE affects dopamine neuron survival by using primary midbrain neuron/glia cultures. Results showed that submicromolar concentrations of NE dose-dependently protected dopaminergic neurons from LPS-induced neurotoxicity by inhibiting microglia activation and subsequent release of pro-inflammatory factors. However, NE-elicited neuroprotection was not totally abolished in cultures from 2-adrenergic receptor (2-AR)-deficient mice, suggesting that novel pathways other than 2-AR are involved. To this end, It was found that submicromolar NE dose-dependently inhibited NADPH oxidase (NOX2)-generated superoxide, which contributes to the anti-inflammatory and neuroprotective effects of NE. This novel mechanism was indeed adrenergic receptors independent since both (+) and (-) optic isomers of NE displayed the same potency. We further demonstrated that NE inhibited LPS-induced NOX2 activation by blocking the translocation of its cytosolic subunit to plasma membranes. In summary, we revealed a potential physiological role of NE in maintaining brain immune homeostasis and protecting neurons via a novel mechanism. GLIA 2015;63:1057-1072
引用
收藏
页码:1057 / 1072
页数:16
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