Targeting fatty acid amide hydrolase as a therapeutic strategy for antitussive therapy
File(s)FAA paper ERJ subm final2 MGB edits.doc (503.5 KB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Cough is the most common reason to visit a primary care physician, yet it remains an unmet medical need. Fatty acid amide hydrolase (FAAH) is an enzyme that breaks down endocannabinoids, and inhibition of FAAH produces analgesic and anti-inflammatory effects. Cannabinoids inhibit vagal sensory nerve activation and the cough reflex, so it was hypothesised that FAAH inhibition would produce antitussive activity via elevation of endocannabinoids.
Primary vagal ganglia neurons, tissue bioassay, in vivo electrophysiology and a conscious guinea pig cough model were utilised to investigate a role for fatty acid amides in modulating sensory nerve activation in vagal afferents.
FAAH inhibition produced antitussive activity in guinea pigs with concomitant plasma elevation of the fatty acid amides N-arachidonoylethanolamide (anandamide), palmitoylethanolamide, N-oleoylethanolamide and linoleoylethanolamide. Palmitoylethanolamide inhibited tussive stimulus-induced activation of guinea pig airway innervating vagal ganglia neurons, depolarisation of guinea pig and human vagus, and firing of C-fibre afferents. These effects were mediated via a cannabinoid CB2/Gi/o-coupled pathway and activation of protein phosphatase 2A, resulting in increased calcium sensitivity of calcium-activated potassium channels.
These findings identify FAAH inhibition as a target for the development of novel, antitussive agents without the undesirable side-effects of direct cannabinoid receptor agonists.
Primary vagal ganglia neurons, tissue bioassay, in vivo electrophysiology and a conscious guinea pig cough model were utilised to investigate a role for fatty acid amides in modulating sensory nerve activation in vagal afferents.
FAAH inhibition produced antitussive activity in guinea pigs with concomitant plasma elevation of the fatty acid amides N-arachidonoylethanolamide (anandamide), palmitoylethanolamide, N-oleoylethanolamide and linoleoylethanolamide. Palmitoylethanolamide inhibited tussive stimulus-induced activation of guinea pig airway innervating vagal ganglia neurons, depolarisation of guinea pig and human vagus, and firing of C-fibre afferents. These effects were mediated via a cannabinoid CB2/Gi/o-coupled pathway and activation of protein phosphatase 2A, resulting in increased calcium sensitivity of calcium-activated potassium channels.
These findings identify FAAH inhibition as a target for the development of novel, antitussive agents without the undesirable side-effects of direct cannabinoid receptor agonists.
Date Issued
2017-09-20
Date Acceptance
2017-06-21
Citation
European Respiratory Journal, 2017, 50 (3), pp.1-11
ISSN
0903-1936
Publisher
European Respiratory Society
Start Page
1
End Page
11
Journal / Book Title
European Respiratory Journal
Volume
50
Issue
3
Copyright Statement
© 2017 ERS. This is an author-submitted, peer-reviewed version of a manuscript that has been accepted for publication in the European Respiratory Journal, prior to copy-editing, formatting and typesetting. This version of the manuscript may not be duplicated or reproduced without prior permission from the copyright owner, the European Respiratory Society. The publisher is not responsible or liable for any errors or omissions in this version of the manuscript or in any version derived from it by any other parties. The final, copy-edited, published article, which is the version of record, is available without a subscription 18 months after the date of issue publication.
Sponsor
Medical Research Council (MRC)
Medical Research Council (MRC)
Medical Research Council (MRC)
Identifier
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000412289900013&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=1ba7043ffcc86c417c072aa74d649202
Grant Number
G1000758
MR/K020293/1
G1000758
Subjects
Science & Technology
Life Sciences & Biomedicine
Respiratory System
SELECTIVE ANTAGONIST
CHRONIC COUGH
GUINEA-PIG
CB2
PALMITOYLETHANOLAMIDE
VASORELAXATION
ANANDAMIDE
INHIBITOR
FAAH
OLEOYLETHANOLAMIDE
Adult
Aged
Amidohydrolases
Animals
Antitussive Agents
Aza Compounds
Cannabinoid Receptor Modulators
Cannabinoids
Capsaicin
Cough
Enzyme Inhibitors
Female
Guinea Pigs
Humans
Male
Middle Aged
Receptor, Cannabinoid, CB2
Spiro Compounds
Vagus Nerve
Vagus Nerve
Animals
Humans
Guinea Pigs
Cough
Aza Compounds
Cannabinoids
Capsaicin
Spiro Compounds
Amidohydrolases
Receptor, Cannabinoid, CB2
Antitussive Agents
Enzyme Inhibitors
Adult
Aged
Middle Aged
Female
Male
Cannabinoid Receptor Modulators
11 Medical and Health Sciences
Respiratory System
Publication Status
Published
Article Number
ARTN 1700782
Date Publish Online
2017-09-20