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The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat

Brainstem respiratory neuronal network significantly contributes to cough motor pattern generation. Neuronal populations in the pre-Bötzinger complex (PreBötC) represent a substantial component for respiratory rhythmogenesis. We studied the role of PreBötC neuronal excitation and inhibition on mecha...

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Autores principales: Shen, Tabitha Y., Poliacek, Ivan, Rose, Melanie J., Musselwhite, M. Nicholas, Kotmanova, Zuzana, Martvon, Lukas, Pitts, Teresa, Davenport, Paul W., Bolser, Donald C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Physiological Society 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8759968/
https://www.ncbi.nlm.nih.gov/pubmed/34879205
http://dx.doi.org/10.1152/jn.00108.2021
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author Shen, Tabitha Y.
Poliacek, Ivan
Rose, Melanie J.
Musselwhite, M. Nicholas
Kotmanova, Zuzana
Martvon, Lukas
Pitts, Teresa
Davenport, Paul W.
Bolser, Donald C.
author_facet Shen, Tabitha Y.
Poliacek, Ivan
Rose, Melanie J.
Musselwhite, M. Nicholas
Kotmanova, Zuzana
Martvon, Lukas
Pitts, Teresa
Davenport, Paul W.
Bolser, Donald C.
author_sort Shen, Tabitha Y.
collection PubMed
description Brainstem respiratory neuronal network significantly contributes to cough motor pattern generation. Neuronal populations in the pre-Bötzinger complex (PreBötC) represent a substantial component for respiratory rhythmogenesis. We studied the role of PreBötC neuronal excitation and inhibition on mechanically induced tracheobronchial cough in 15 spontaneously breathing, pentobarbital anesthetized adult cats (35 mg/kg, iv initially). Neuronal excitation by unilateral microinjection of glutamate analog d,l-homocysteic acid resulted in mild reduction of cough abdominal electromyogram (EMG) amplitudes and very limited temporal changes of cough compared with effects on breathing (very high respiratory rate, high amplitude inspiratory bursts with a short inspiratory phase, and tonic inspiratory motor component). Mean arterial blood pressure temporarily decreased. Blocking glutamate-related neuronal excitation by bilateral microinjections of nonspecific glutamate receptor antagonist kynurenic acid reduced cough inspiratory and expiratory EMG amplitude and shortened most cough temporal characteristics similarly to breathing temporal characteristics. Respiratory rate decreased and blood pressure temporarily increased. Limiting active neuronal inhibition by unilateral and bilateral microinjections of GABA(A) receptor antagonist gabazine resulted in lower cough number, reduced expiratory cough efforts, and prolongation of cough temporal features and breathing phases (with lower respiratory rate). The PreBötC is important for cough motor pattern generation. Excitatory glutamatergic neurotransmission in the PreBötC is involved in control of cough intensity and patterning. GABA(A) receptor-related inhibition in the PreBötC strongly affects breathing and coughing phase durations in the same manner, as well as cough expiratory efforts. In conclusion, differences in effects on cough and breathing are consistent with separate control of these behaviors. NEW & NOTEWORTHY This study is the first to explore the role of the inspiratory rhythm and pattern generator, the pre-Bötzinger complex (PreBötC), in cough motor pattern formation. In the PreBötC, excitatory glutamatergic neurotransmission affects cough intensity and patterning but not rhythm, and GABA(A) receptor-related inhibition affects coughing and breathing phase durations similarly to each other. Our data show that the PreBötC is important for cough motor pattern generation, but cough rhythmogenesis appears to be controlled elsewhere.
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spelling pubmed-87599682022-02-07 The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat Shen, Tabitha Y. Poliacek, Ivan Rose, Melanie J. Musselwhite, M. Nicholas Kotmanova, Zuzana Martvon, Lukas Pitts, Teresa Davenport, Paul W. Bolser, Donald C. J Neurophysiol Research Article Brainstem respiratory neuronal network significantly contributes to cough motor pattern generation. Neuronal populations in the pre-Bötzinger complex (PreBötC) represent a substantial component for respiratory rhythmogenesis. We studied the role of PreBötC neuronal excitation and inhibition on mechanically induced tracheobronchial cough in 15 spontaneously breathing, pentobarbital anesthetized adult cats (35 mg/kg, iv initially). Neuronal excitation by unilateral microinjection of glutamate analog d,l-homocysteic acid resulted in mild reduction of cough abdominal electromyogram (EMG) amplitudes and very limited temporal changes of cough compared with effects on breathing (very high respiratory rate, high amplitude inspiratory bursts with a short inspiratory phase, and tonic inspiratory motor component). Mean arterial blood pressure temporarily decreased. Blocking glutamate-related neuronal excitation by bilateral microinjections of nonspecific glutamate receptor antagonist kynurenic acid reduced cough inspiratory and expiratory EMG amplitude and shortened most cough temporal characteristics similarly to breathing temporal characteristics. Respiratory rate decreased and blood pressure temporarily increased. Limiting active neuronal inhibition by unilateral and bilateral microinjections of GABA(A) receptor antagonist gabazine resulted in lower cough number, reduced expiratory cough efforts, and prolongation of cough temporal features and breathing phases (with lower respiratory rate). The PreBötC is important for cough motor pattern generation. Excitatory glutamatergic neurotransmission in the PreBötC is involved in control of cough intensity and patterning. GABA(A) receptor-related inhibition in the PreBötC strongly affects breathing and coughing phase durations in the same manner, as well as cough expiratory efforts. In conclusion, differences in effects on cough and breathing are consistent with separate control of these behaviors. NEW & NOTEWORTHY This study is the first to explore the role of the inspiratory rhythm and pattern generator, the pre-Bötzinger complex (PreBötC), in cough motor pattern formation. In the PreBötC, excitatory glutamatergic neurotransmission affects cough intensity and patterning but not rhythm, and GABA(A) receptor-related inhibition affects coughing and breathing phase durations similarly to each other. Our data show that the PreBötC is important for cough motor pattern generation, but cough rhythmogenesis appears to be controlled elsewhere. American Physiological Society 2022-01-01 2021-12-08 /pmc/articles/PMC8759968/ /pubmed/34879205 http://dx.doi.org/10.1152/jn.00108.2021 Text en Copyright © 2022 The Authors https://creativecommons.org/licenses/by/4.0/Licensed under Creative Commons Attribution CC-BY 4.0 (https://creativecommons.org/licenses/by/4.0/) . Published by the American Physiological Society.
spellingShingle Research Article
Shen, Tabitha Y.
Poliacek, Ivan
Rose, Melanie J.
Musselwhite, M. Nicholas
Kotmanova, Zuzana
Martvon, Lukas
Pitts, Teresa
Davenport, Paul W.
Bolser, Donald C.
The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat
title The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat
title_full The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat
title_fullStr The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat
title_full_unstemmed The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat
title_short The role of neuronal excitation and inhibition in the pre-Bötzinger complex on the cough reflex in the cat
title_sort role of neuronal excitation and inhibition in the pre-bötzinger complex on the cough reflex in the cat
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8759968/
https://www.ncbi.nlm.nih.gov/pubmed/34879205
http://dx.doi.org/10.1152/jn.00108.2021
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