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Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons

The peripheral terminals of primary sensory neurons detect histamine and non-histamine itch-provoking ligands through molecularly distinct transduction mechanisms. It remains unclear, however, whether these distinct pruritogens activate the same or different afferent fibers. We utilized a strategy o...

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Autores principales: Roberson, David P., Gudes, Sagi, Sprague, Jared M., Patoski, Haley A. W., Robson, Victoria K., Blasl, Felix, Duan, Bo, Oh, Seog Bae, Bean, Bruce P., Ma, Qiufu, Binshtok, Alexander M., Woolf, Clifford J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3695070/
https://www.ncbi.nlm.nih.gov/pubmed/23685721
http://dx.doi.org/10.1038/nn.3404
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author Roberson, David P.
Gudes, Sagi
Sprague, Jared M.
Patoski, Haley A. W.
Robson, Victoria K.
Blasl, Felix
Duan, Bo
Oh, Seog Bae
Bean, Bruce P.
Ma, Qiufu
Binshtok, Alexander M.
Woolf, Clifford J.
author_facet Roberson, David P.
Gudes, Sagi
Sprague, Jared M.
Patoski, Haley A. W.
Robson, Victoria K.
Blasl, Felix
Duan, Bo
Oh, Seog Bae
Bean, Bruce P.
Ma, Qiufu
Binshtok, Alexander M.
Woolf, Clifford J.
author_sort Roberson, David P.
collection PubMed
description The peripheral terminals of primary sensory neurons detect histamine and non-histamine itch-provoking ligands through molecularly distinct transduction mechanisms. It remains unclear, however, whether these distinct pruritogens activate the same or different afferent fibers. We utilized a strategy of reversibly silencing specific subsets of murine pruritogen-sensitive sensory axons by targeted delivery of a charged sodium-channel blocker and found that functional blockade of histamine itch did not affect the itch evoked by chloroquine or SLIGRL-NH2, and vice versa. Notably, blocking itch-generating fibers did not reduce pain-associated behavior. However, silencing TRPV1(+) or TRPA1(+) neurons allowed AITC or capsaicin respectively to evoke itch, implying that certain peripheral afferents may normally indirectly inhibit algogens from eliciting itch. These findings support the presence of functionally distinct sets of itch-generating neurons and suggest that targeted silencing of activated sensory fibers may represent a clinically useful anti-pruritic therapeutic approach for histaminergic and non-histaminergic pruritus.
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spelling pubmed-36950702014-01-01 Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons Roberson, David P. Gudes, Sagi Sprague, Jared M. Patoski, Haley A. W. Robson, Victoria K. Blasl, Felix Duan, Bo Oh, Seog Bae Bean, Bruce P. Ma, Qiufu Binshtok, Alexander M. Woolf, Clifford J. Nat Neurosci Article The peripheral terminals of primary sensory neurons detect histamine and non-histamine itch-provoking ligands through molecularly distinct transduction mechanisms. It remains unclear, however, whether these distinct pruritogens activate the same or different afferent fibers. We utilized a strategy of reversibly silencing specific subsets of murine pruritogen-sensitive sensory axons by targeted delivery of a charged sodium-channel blocker and found that functional blockade of histamine itch did not affect the itch evoked by chloroquine or SLIGRL-NH2, and vice versa. Notably, blocking itch-generating fibers did not reduce pain-associated behavior. However, silencing TRPV1(+) or TRPA1(+) neurons allowed AITC or capsaicin respectively to evoke itch, implying that certain peripheral afferents may normally indirectly inhibit algogens from eliciting itch. These findings support the presence of functionally distinct sets of itch-generating neurons and suggest that targeted silencing of activated sensory fibers may represent a clinically useful anti-pruritic therapeutic approach for histaminergic and non-histaminergic pruritus. 2013-05-19 2013-07 /pmc/articles/PMC3695070/ /pubmed/23685721 http://dx.doi.org/10.1038/nn.3404 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Roberson, David P.
Gudes, Sagi
Sprague, Jared M.
Patoski, Haley A. W.
Robson, Victoria K.
Blasl, Felix
Duan, Bo
Oh, Seog Bae
Bean, Bruce P.
Ma, Qiufu
Binshtok, Alexander M.
Woolf, Clifford J.
Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons
title Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons
title_full Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons
title_fullStr Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons
title_full_unstemmed Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons
title_short Activity-dependent silencing reveals functionally distinct itch-generating sensory neurons
title_sort activity-dependent silencing reveals functionally distinct itch-generating sensory neurons
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3695070/
https://www.ncbi.nlm.nih.gov/pubmed/23685721
http://dx.doi.org/10.1038/nn.3404
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