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Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit

Most cutaneous C fibers, including both peptidergic and nonpeptidergic subtypes, are presumed to be nociceptors and respond to noxious input in a graded manner. However, mechanically sensitive, nonpeptidergic C fibers also respond to mechanical input in the innocuous range, so the degree to which th...

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Autores principales: Warwick, Charles, Cassidy, Colleen, Hachisuka, Junichi, Wright, Margaret C., Baumbauer, Kyle M., Adelman, Peter C., Lee, Kuan H., Smith, Kelly M., Sheahan, Tayler D., Ross, Sarah E., Koerber, H. Richard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8206522/
https://www.ncbi.nlm.nih.gov/pubmed/34130311
http://dx.doi.org/10.1097/j.pain.0000000000002227
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author Warwick, Charles
Cassidy, Colleen
Hachisuka, Junichi
Wright, Margaret C.
Baumbauer, Kyle M.
Adelman, Peter C.
Lee, Kuan H.
Smith, Kelly M.
Sheahan, Tayler D.
Ross, Sarah E.
Koerber, H. Richard
author_facet Warwick, Charles
Cassidy, Colleen
Hachisuka, Junichi
Wright, Margaret C.
Baumbauer, Kyle M.
Adelman, Peter C.
Lee, Kuan H.
Smith, Kelly M.
Sheahan, Tayler D.
Ross, Sarah E.
Koerber, H. Richard
author_sort Warwick, Charles
collection PubMed
description Most cutaneous C fibers, including both peptidergic and nonpeptidergic subtypes, are presumed to be nociceptors and respond to noxious input in a graded manner. However, mechanically sensitive, nonpeptidergic C fibers also respond to mechanical input in the innocuous range, so the degree to which they contribute to nociception remains unclear. To address this gap, we investigated the function of nonpeptidergic afferents using the Mrgprd(Cre) allele. In real-time place aversion studies, we found that low-frequency optogenetic activation of Mrgrpd(Cre) lineage neurons was not aversive in naive mice but became aversive after spared nerve injury (SNI). To address the underlying mechanisms of this allodynia, we recorded responses from lamina I spinoparabrachial (SPB) neurons using the semi-intact ex vivo preparation. After SNI, innocuous brushing of the skin gave rise to abnormal activity in lamina I SPB neurons, consisting of an increase in the proportion of recorded neurons that responded with excitatory postsynaptic potentials or action potentials. This increase was likely due, at least in part, to an increase in the proportion of lamina I SPB neurons that received input on optogenetic activation of Mrgprd(Cre) lineage neurons. Intriguingly, in SPB neurons, there was a significant increase in the excitatory postsynaptic current latency from Mrgprd(Cre) lineage input after SNI, consistent with the possibility that the greater activation post-SNI could be due to the recruitment of a new polysynaptic circuit. Together, our findings suggest that Mrgprd(Cre) lineage neurons can provide mechanical input to the dorsal horn that is nonnoxious before injury but becomes noxious afterwards because of the engagement of a previously silent polysynaptic circuit in the dorsal horn.
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spelling pubmed-82065222021-06-16 Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit Warwick, Charles Cassidy, Colleen Hachisuka, Junichi Wright, Margaret C. Baumbauer, Kyle M. Adelman, Peter C. Lee, Kuan H. Smith, Kelly M. Sheahan, Tayler D. Ross, Sarah E. Koerber, H. Richard Pain Research Paper Most cutaneous C fibers, including both peptidergic and nonpeptidergic subtypes, are presumed to be nociceptors and respond to noxious input in a graded manner. However, mechanically sensitive, nonpeptidergic C fibers also respond to mechanical input in the innocuous range, so the degree to which they contribute to nociception remains unclear. To address this gap, we investigated the function of nonpeptidergic afferents using the Mrgprd(Cre) allele. In real-time place aversion studies, we found that low-frequency optogenetic activation of Mrgrpd(Cre) lineage neurons was not aversive in naive mice but became aversive after spared nerve injury (SNI). To address the underlying mechanisms of this allodynia, we recorded responses from lamina I spinoparabrachial (SPB) neurons using the semi-intact ex vivo preparation. After SNI, innocuous brushing of the skin gave rise to abnormal activity in lamina I SPB neurons, consisting of an increase in the proportion of recorded neurons that responded with excitatory postsynaptic potentials or action potentials. This increase was likely due, at least in part, to an increase in the proportion of lamina I SPB neurons that received input on optogenetic activation of Mrgprd(Cre) lineage neurons. Intriguingly, in SPB neurons, there was a significant increase in the excitatory postsynaptic current latency from Mrgprd(Cre) lineage input after SNI, consistent with the possibility that the greater activation post-SNI could be due to the recruitment of a new polysynaptic circuit. Together, our findings suggest that Mrgprd(Cre) lineage neurons can provide mechanical input to the dorsal horn that is nonnoxious before injury but becomes noxious afterwards because of the engagement of a previously silent polysynaptic circuit in the dorsal horn. Wolters Kluwer 2021-07 2021-02-04 /pmc/articles/PMC8206522/ /pubmed/34130311 http://dx.doi.org/10.1097/j.pain.0000000000002227 Text en Copyright © 2021 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the International Association for the Study of Pain. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution-Non Commercial-No Derivatives License 4.0 (CCBY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) , where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Research Paper
Warwick, Charles
Cassidy, Colleen
Hachisuka, Junichi
Wright, Margaret C.
Baumbauer, Kyle M.
Adelman, Peter C.
Lee, Kuan H.
Smith, Kelly M.
Sheahan, Tayler D.
Ross, Sarah E.
Koerber, H. Richard
Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit
title Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit
title_full Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit
title_fullStr Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit
title_full_unstemmed Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit
title_short Mrgprd(Cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit
title_sort mrgprd(cre) lineage neurons mediate optogenetic allodynia through an emergent polysynaptic circuit
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8206522/
https://www.ncbi.nlm.nih.gov/pubmed/34130311
http://dx.doi.org/10.1097/j.pain.0000000000002227
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