Apical splenic nerve electrical stimulation discloses an anti-inflammatory pathway relying on adrenergic and nicotinic receptors in myeloid cells

炎症 乙酰胆碱 儿茶酚胺能 刺激 烟碱激动剂 胆碱能的 内分泌学 内科学 生物 受体 细胞生物学 医学 多巴胺
作者
Mélanie Guyot,Thomas Simon,Clara Panzolini,Franck Ceppo,Douglas Daoudlarian,Emilie Murris,Eric Macia,Sophie Abélanet,Arun Sridhar,Margriet J. Vervoordeldonk,Nicolas Glaichenhaus,Philippe Blancou
出处
期刊:Brain Behavior and Immunity [Elsevier BV]
卷期号:80: 238-246 被引量:55
标识
DOI:10.1016/j.bbi.2019.03.015
摘要

The autonomic nervous system innervates all lymphoid tissues including the spleen therefore providing a link between the central nervous system and the immune system. The only known mechanism of neural inhibition of inflammation in the spleen relies on the production of norepinephrine by splenic catecholaminergic fibers which binds to β2-adrenergic receptors (β 2-ARs) of CD4+ T cells. These CD4+ T cells trigger the release of acetylcholine that inhibits the secretion of inflammatory cytokines by macrophages through α7 nicotinic acetylcholine receptor (α7nAchRs) signaling. While the vagal anti-inflammatory pathway has been extensively studied in rodents, it remains to be determined whether it coexists with other neural pathways. Here, we have found that three nerve branches project to the spleen in mice. While two of these nerves are associated with an artery and contain catecholaminergic fibers, the third is located at the apex of the spleen and contain both catecholaminergic and cholinergic fibers. We found that electrical stimulation of the apical nerve, but not the arterial nerves, inhibited inflammation independently of lymphocytes. In striking contrast to the anti-inflammatory pathway mechanism described so far, we also found that the inhibition of inflammation by apical nerve electrical stimulation relied on signaling by both β 2-ARs and α7nAchRs in myeloid cells, with these two signaling pathways acting in parallel. Most importantly, apical splenic nerve electrical stimulation mitigated clinical symptoms in a mouse model of rheumatoid arthritis further providing the proof-of-concept that such an approach could be beneficial in patients with Immune-mediated inflammatory diseases.
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