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Neural Reflex Regulation of Systemic Inflammation: Potential New Targets for Sepsis Therapy

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Journal Front Physiol
Date 2015 Jan 8
PMID 25566088
Citations 25
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Abstract

Sepsis progresses to multiple organ dysfunction due to the uncontrolled release of inflammatory mediators, and a growing body of evidence shows that neural signals play a significant role in modulating the immune response. Thus, similar toall other physiological systems, the immune system is both connected to and regulated by the central nervous system. The efferent arc consists of the activation of the hypothalamic-pituitary-adrenal axis, sympathetic activation, the cholinergic anti-inflammatory reflex, and the local release of physiological neuromodulators. Immunosensory activity is centered on the production of pro-inflammatory cytokines, signals that are conveyed to the brain through different pathways. The activation of peripheral sensory nerves, i.e., vagal paraganglia by the vagus nerve, and carotid body (CB) chemoreceptors by the carotid/sinus nerve are broadly discussed here. Despite cytokine receptor expression in vagal afferent fibers, pro-inflammatory cytokines have no significant effect on vagus nerve activity. Thus, the CB may be the source of immunosensory inputs and incoming neural signals and, in fact, sense inflammatory mediators, playing a protective role during sepsis. Considering that CB stimulation increases sympathetic activity and adrenal glucocorticoids release, the electrical stimulation of arterial chemoreceptors may be suitable therapeutic approach for regulating systemic inflammation.

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References
1.
Alvarez Perez Gil A, Barbosa Navarro L, Patipo Vera M, Petricevich V . Anti-inflammatory and antinociceptive activities of the ethanolic extract of Bougainvillea xbuttiana. J Ethnopharmacol. 2012; 144(3):712-9. DOI: 10.1016/j.jep.2012.10.018. View

2.
Bluthe R, Kent S, Kelley K, Dantzer R . Lipopolysaccharide and interleukin-1 depress food-motivated behavior in mice by a vagal-mediated mechanism. Brain Behav Immun. 1995; 9(3):242-6. DOI: 10.1006/brbi.1995.1023. View

3.
Ladino J, Bancalari E, Suguihara C . Ventilatory response to hypoxia during endotoxemia in young rats: role of nitric oxide. Pediatr Res. 2007; 62(2):134-8. DOI: 10.1203/PDR.0b013e318098721a. View

4.
Mascarucci P, Perego C, Terrazzino S, De Simoni M . Glutamate release in the nucleus tractus solitarius induced by peripheral lipopolysaccharide and interleukin-1 beta. Neuroscience. 1998; 86(4):1285-90. DOI: 10.1016/s0306-4522(98)00105-5. View

5.
Donoghue S, Felder R, Jordan D, Spyer K . The central projections of carotid baroreceptors and chemoreceptors in the cat: a neurophysiological study. J Physiol. 1984; 347:397-409. PMC: 1199453. DOI: 10.1113/jphysiol.1984.sp015072. View