Anaesthetic impairment of immune function is mediated via GABA(A) receptors.

GABA(A) receptors are members of the Cys-loop family of neurotransmitter receptors, proteins which are responsible for fast synaptic transmission, and are the site of action of wide range of drugs. Recent work has shown that Cys-loop receptors are present on immune cells, but their physiological rol...

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Main Authors: Daniel W Wheeler, Andrew J Thompson, Federico Corletto, Jill Reckless, Justin C T Loke, Nicolas Lapaque, Andrew J Grant, Pietro Mastroeni, David J Grainger, Claire L Padgett, John A O'Brien, Nigel G A Miller, John Trowsdale, Sarah C R Lummis, David K Menon, John S Beech
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-02-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3044756?pdf=render
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author Daniel W Wheeler
Andrew J Thompson
Federico Corletto
Jill Reckless
Justin C T Loke
Nicolas Lapaque
Andrew J Grant
Pietro Mastroeni
David J Grainger
Claire L Padgett
John A O'Brien
Nigel G A Miller
John Trowsdale
Sarah C R Lummis
David K Menon
John S Beech
author_facet Daniel W Wheeler
Andrew J Thompson
Federico Corletto
Jill Reckless
Justin C T Loke
Nicolas Lapaque
Andrew J Grant
Pietro Mastroeni
David J Grainger
Claire L Padgett
John A O'Brien
Nigel G A Miller
John Trowsdale
Sarah C R Lummis
David K Menon
John S Beech
author_sort Daniel W Wheeler
collection DOAJ
description GABA(A) receptors are members of the Cys-loop family of neurotransmitter receptors, proteins which are responsible for fast synaptic transmission, and are the site of action of wide range of drugs. Recent work has shown that Cys-loop receptors are present on immune cells, but their physiological roles and the effects of drugs that modify their function in the innate immune system are currently unclear. We are interested in how and why anaesthetics increase infections in intensive care patients; a serious problem as more than 50% of patients with severe sepsis will die. As many anaesthetics act via GABA(A) receptors, the aim of this study was to determine if these receptors are present on immune cells, and could play a role in immunocompromising patients.We demonstrate, using RT-PCR, that monocytes express GABA(A) receptors constructed of α1, α4, β2, γ1 and/or δ subunits. Whole cell patch clamp electrophysiological studies show that GABA can activate these receptors, resulting in the opening of a chloride-selective channel; activation is inhibited by the GABA(A) receptor antagonists bicuculline and picrotoxin, but not enhanced by the positive modulator diazepam. The anaesthetic drugs propofol and thiopental, which can act via GABA(A) receptors, impaired monocyte function in classic immunological chemotaxis and phagocytosis assays, an effect reversed by bicuculline and picrotoxin.Our results show that functional GABA(A) receptors are present on monocytes with properties similar to CNS GABA(A) receptors. The functional data provide a possible explanation as to why chronic propofol and thiopental administration can increase the risk of infection in critically ill patients: their action on GABA(A) receptors inhibits normal monocyte behaviour. The data also suggest a potential solution: monocyte GABA(A) receptors are insensitive to diazepam, thus the use of benzodiazepines as an alternative anesthetising agent may be advantageous where infection is a life threatening problem.
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spelling doaj.art-23173b15fc8b4b9690a691153a3c3a032022-12-22T03:58:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-02-0162e1715210.1371/journal.pone.0017152Anaesthetic impairment of immune function is mediated via GABA(A) receptors.Daniel W WheelerAndrew J ThompsonFederico CorlettoJill RecklessJustin C T LokeNicolas LapaqueAndrew J GrantPietro MastroeniDavid J GraingerClaire L PadgettJohn A O'BrienNigel G A MillerJohn TrowsdaleSarah C R LummisDavid K MenonJohn S BeechGABA(A) receptors are members of the Cys-loop family of neurotransmitter receptors, proteins which are responsible for fast synaptic transmission, and are the site of action of wide range of drugs. Recent work has shown that Cys-loop receptors are present on immune cells, but their physiological roles and the effects of drugs that modify their function in the innate immune system are currently unclear. We are interested in how and why anaesthetics increase infections in intensive care patients; a serious problem as more than 50% of patients with severe sepsis will die. As many anaesthetics act via GABA(A) receptors, the aim of this study was to determine if these receptors are present on immune cells, and could play a role in immunocompromising patients.We demonstrate, using RT-PCR, that monocytes express GABA(A) receptors constructed of α1, α4, β2, γ1 and/or δ subunits. Whole cell patch clamp electrophysiological studies show that GABA can activate these receptors, resulting in the opening of a chloride-selective channel; activation is inhibited by the GABA(A) receptor antagonists bicuculline and picrotoxin, but not enhanced by the positive modulator diazepam. The anaesthetic drugs propofol and thiopental, which can act via GABA(A) receptors, impaired monocyte function in classic immunological chemotaxis and phagocytosis assays, an effect reversed by bicuculline and picrotoxin.Our results show that functional GABA(A) receptors are present on monocytes with properties similar to CNS GABA(A) receptors. The functional data provide a possible explanation as to why chronic propofol and thiopental administration can increase the risk of infection in critically ill patients: their action on GABA(A) receptors inhibits normal monocyte behaviour. The data also suggest a potential solution: monocyte GABA(A) receptors are insensitive to diazepam, thus the use of benzodiazepines as an alternative anesthetising agent may be advantageous where infection is a life threatening problem.http://europepmc.org/articles/PMC3044756?pdf=render
spellingShingle Daniel W Wheeler
Andrew J Thompson
Federico Corletto
Jill Reckless
Justin C T Loke
Nicolas Lapaque
Andrew J Grant
Pietro Mastroeni
David J Grainger
Claire L Padgett
John A O'Brien
Nigel G A Miller
John Trowsdale
Sarah C R Lummis
David K Menon
John S Beech
Anaesthetic impairment of immune function is mediated via GABA(A) receptors.
PLoS ONE
title Anaesthetic impairment of immune function is mediated via GABA(A) receptors.
title_full Anaesthetic impairment of immune function is mediated via GABA(A) receptors.
title_fullStr Anaesthetic impairment of immune function is mediated via GABA(A) receptors.
title_full_unstemmed Anaesthetic impairment of immune function is mediated via GABA(A) receptors.
title_short Anaesthetic impairment of immune function is mediated via GABA(A) receptors.
title_sort anaesthetic impairment of immune function is mediated via gaba a receptors
url http://europepmc.org/articles/PMC3044756?pdf=render
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