4.7 Article

Autonomic innervation and regulation of the immune system (1987-2007)

Journal

BRAIN BEHAVIOR AND IMMUNITY
Volume 21, Issue 6, Pages 736-745

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbi.2007.03.008

Keywords

sympathetic nervous system; adrenergic receptors; innate immunity; adaptive immunity; neuroanatomical studies; innervation of immune organs

Funding

  1. NIAID NIH HHS [AI37326] Funding Source: Medline
  2. NIMH NIH HHS [MH43778, R01 MH043778-14] Funding Source: Medline

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Since 1987, only a few neuroanatomical studies have been conducted to identify the origin of innervation for the immune system. These studies demonstrated that all primary and secondary immune organs receive a substantial sympathetic innervation from sympathetic postganglionic neurons. Neither the thymus nor spleen receive any sensory neural innervation; however, there is evidence that lymph nodes and bone marrow may be innervated by sensory neurons located in dorsal root ganglia. There is no neuroanatomical evidence for a parasympathetic or vagal nerve supply to any immune organ. Thus, the primary pathway for the neural regulation of immune function is provided by the sympathetic nervous system (SNS) and its main neurotransmitter, norepinephrine (NE). Activation of the SNS primarily inhibits the activity of cells associated with the innate immune system, while it either enhances or inhibits the activity of cells associated with the acquired/adaptive immune system. Innate immune cells express both alpha and beta-adrenergic receptor subtypes, while T and B lymphocytes express adrenergic receptors of the beta2 subtype exclusively, except for murine Th2 cells that lack expression of any subtype. Via these adrenergic receptors, NE is able to regulate the level of immune cell activity by initiating a change in the level of cellular activity, which often involves a change in the level of gene expression for cytokines and antibodies. (C) 2007 Elsevier Inc. All rights reserved.

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