Literature DB >> 16728519

Reflex regulation of airway smooth muscle tone.

Brendan J Canning1.   

Abstract

Autonomic nerves in most mammalian species mediate both contractions and relaxations of airway smooth muscle. Cholinergic-parasympathetic nerves mediate contractions, whereas adrenergic-sympathetic and/or noncholinergic parasympathetic nerves mediate relaxations. Sympathetic-adrenergic innervation of human airway smooth muscle is sparse or nonexistent based on histological analyses and plays little or no role in regulating airway caliber. Rather, in humans and in many other species, postganglionic noncholinergic parasympathetic nerves provide the only relaxant innervation of airway smooth muscle. These noncholinergic nerves are anatomically and physiologically distinct from the postganglionic cholinergic parasympathetic nerves and differentially regulated by reflexes. Although bronchopulmonary vagal afferent nerves provide the primary afferent input regulating airway autonomic nerve activity, extrapulmonary afferent nerves, both vagal and nonvagal, can also reflexively regulate autonomic tone in airway smooth muscle. Reflexes result in either an enhanced activity in one or more of the autonomic efferent pathways, or a withdrawal of baseline cholinergic tone. These parallel excitatory and inhibitory afferent and efferent pathways add complexity to autonomic control of airway caliber. Dysfunction or dysregulation of these afferent and efferent nerves likely contributes to the pathogenesis of obstructive airways diseases and may account for the pulmonary symptoms associated with extrapulmonary disorders, including gastroesophageal reflux disease, cardiovascular disease, and rhinosinusitis.

Entities:  

Mesh:

Year:  2006        PMID: 16728519     DOI: 10.1152/japplphysiol.00313.2006

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  64 in total

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Review 2.  Neurotrophins in lung health and disease.

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3.  The Effects of Nerve Growth Factor on Nicotinic Synaptic Transmission in Mouse Airway Parasympathetic Neurons.

Authors:  Letitia A Weigand; Kevin Kwong; Allen C Myers
Journal:  Am J Respir Cell Mol Biol       Date:  2015-10       Impact factor: 6.914

4.  The effect of hyperpolarization-activated cyclic nucleotide-gated ion channel inhibitors on the vagal control of guinea pig airway smooth muscle tone.

Authors:  Alice E McGovern; Jed Robusto; Joanna Rakoczy; David G Simmons; Simon Phipps; Stuart B Mazzone
Journal:  Br J Pharmacol       Date:  2014-08       Impact factor: 8.739

Review 5.  β-Adrenoceptor modulation in chronic obstructive pulmonary disease: present and future perspectives.

Authors:  Maria Gabriella Matera; Luigino Calzetta; Mario Cazzola
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6.  Vagotomy reverses established allergen-induced airway hyperreactivity to methacholine in the mouse.

Authors:  M Allen McAlexander; Stephen H Gavett; Marian Kollarik; Bradley J Undem
Journal:  Respir Physiol Neurobiol       Date:  2015-04-01       Impact factor: 1.931

Review 7.  Airway Innervation and Plasticity in Asthma.

Authors:  L E M Kistemaker; Y S Prakash
Journal:  Physiology (Bethesda)       Date:  2019-07-01

Review 8.  Airway smooth muscle in the pathophysiology and treatment of asthma.

Authors:  Diana C Doeing; Julian Solway
Journal:  J Appl Physiol (1985)       Date:  2013-01-10

Review 9.  Brain-derived neurotrophic factor in the airways.

Authors:  Y S Prakash; Richard J Martin
Journal:  Pharmacol Ther       Date:  2014-02-19       Impact factor: 12.310

10.  Tissue optical clearing, three-dimensional imaging, and computer morphometry in whole mouse lungs and human airways.

Authors:  Gregory D Scott; Emily D Blum; Allison D Fryer; David B Jacoby
Journal:  Am J Respir Cell Mol Biol       Date:  2014-07       Impact factor: 6.914

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