Neurogenic Inflammation and Asthma
- 1 January 1992
- journal article
- review article
- Published by Taylor & Francis in Journal of Asthma
- Vol. 29 (3) , 165-180
- https://doi.org/10.3109/02770909209099025
Abstract
The release of neurotransmitters may exacerbate the inflammatory response. Such neurogenic inflammation has been documented in a number of inflammatory diseases. Neurogenic inflammation due to release of neuropeptides from sensory nerves has been demonstrated in airways of several species, particularly rodents, and may contribute to the inflammatory response in asthmatic airways. Tachykinins (substance P and neurokinin A) released from airway sensory nerves may cause bronchoconstriction, vasodilatation, plasma exudation, and mucus secretion, whereas another sensory neuropeptide, calcitonin generelated peptide, may contribute to hyperemia of inflammation. Airway epithelial damage in asthma exposes sensory nerves which may become sensitized by inflammatory products (including prostaglandins and cytokines) so that neuropeptides are released via a local reflex trigger such as bradykinin, resulting in exaggerated inflammation. The effects of tachykinins may be amplified further by loss of the major degrading enzyme, neutral endopeptidase, from epithelial cells. Direct evidence for neurogenic inflammation in asthma is still awaited, however. Several strategies for reducing neurogenic inflammation are possible, particularly inhibition of neuropeptide release from sensory nerves by stimulating prejunctional receptors such as mu-opioid receptors.Keywords
This publication has 96 references indexed in Scilit:
- Capsaicin pretreatment does not inhibit allergen‐induced airway microvascular leakage in guinea pigAllergy, 1991
- New aspects of the therapeutic potential of theophylline in asthmaJournal of Allergy and Clinical Immunology, 1989
- Effect of sensory neuropeptides on canine bronchial and pulmonary vessels in vitroLife Sciences, 1989
- Antidromic vasodilatation and neurogenic inflammationInflammation Research, 1988
- The sensory-efferent function of capsaicin-sensitive sensory neuronsGeneral Pharmacology: The Vascular System, 1988
- Effect of inhaled substance P and neurokinin A on the airways of normal and asthmatic subjects.Thorax, 1987
- Effect of nedocromil sodium on sulphur dioxide induced bronchoconstriction.Thorax, 1987
- Occurrence and effects of multiple tachykinins; Sustance P, neurokinin A and neuropeptide K in human lower airwaysLife Sciences, 1987
- Substance P and capsaicin‐induced contraction of human bronchiActa Physiologica Scandinavica, 1983
- Protective effect of drugs on bronchoconstriction induced by sulphur dioxide.Thorax, 1982