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Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X

Although spinal processing of sensory information greatly relies on afferent-driven (AD) presynaptic inhibition (PI), our knowledge about how it shapes peripheral input to different types of nociceptive neurons remains insufficient. Here we examined the AD-PI of primary afferent input to spinal neur...

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Autores principales: Krotov, Volodymyr, Agashkov, Kirill, Romanenko, Sergii, Halaidych, Oleh, Andrianov, Yaroslav, Safronov, Boris V., Belan, Pavel, Voitenko, Nana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9874151/
https://www.ncbi.nlm.nih.gov/pubmed/36713779
http://dx.doi.org/10.3389/fncel.2022.1029799
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author Krotov, Volodymyr
Agashkov, Kirill
Romanenko, Sergii
Halaidych, Oleh
Andrianov, Yaroslav
Safronov, Boris V.
Belan, Pavel
Voitenko, Nana
author_facet Krotov, Volodymyr
Agashkov, Kirill
Romanenko, Sergii
Halaidych, Oleh
Andrianov, Yaroslav
Safronov, Boris V.
Belan, Pavel
Voitenko, Nana
author_sort Krotov, Volodymyr
collection PubMed
description Although spinal processing of sensory information greatly relies on afferent-driven (AD) presynaptic inhibition (PI), our knowledge about how it shapes peripheral input to different types of nociceptive neurons remains insufficient. Here we examined the AD-PI of primary afferent input to spinal neurons in the marginal layer, lamina I, and the layer surrounding the central canal, lamina X; two nociceptive-processing regions with similar patterns of direct supply by Aδ- and C-afferents. Unmyelinated C-fibers were selectively activated by electrical stimuli of negative polarity that induced an anodal block of myelinated Aβ/δ-fibers. Combining this approach with the patch-clamp recording in an ex vivo spinal cord preparation, we found that attenuation of the AD-PI by the anodal block of Aβ/δ-fibers resulted in the appearance of new mono- and polysynaptic C-fiber-mediated excitatory postsynaptic current (EPSC) components. Such homosegmental Aβ/δ-AD-PI affected neurons in the segment of the dorsal root entrance as well as in the adjacent rostral segment. In their turn, C-fibers from the L5 dorsal root induced heterosegmental AD-PI of the inputs from the L4 Aδ- and C-afferents to the neurons in the L4 segment. The heterosegmental C-AD-PI was reciprocal since the L4 C-afferents inhibited the L5 Aδ- and C-fiber inputs, as well as some direct L5 Aβ-fiber inputs. Moreover, the C-AD-PI was found to control the spike discharge in spinal neurons. Given that the homosegmental Aβ/δ-AD-PI and heterosegmental C-AD-PI affected a substantial percentage of lamina I and X neurons, we suggest that these basic mechanisms are important for shaping primary afferent input to the neurons in the spinal nociceptive-processing network.
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spelling pubmed-98741512023-01-26 Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X Krotov, Volodymyr Agashkov, Kirill Romanenko, Sergii Halaidych, Oleh Andrianov, Yaroslav Safronov, Boris V. Belan, Pavel Voitenko, Nana Front Cell Neurosci Neuroscience Although spinal processing of sensory information greatly relies on afferent-driven (AD) presynaptic inhibition (PI), our knowledge about how it shapes peripheral input to different types of nociceptive neurons remains insufficient. Here we examined the AD-PI of primary afferent input to spinal neurons in the marginal layer, lamina I, and the layer surrounding the central canal, lamina X; two nociceptive-processing regions with similar patterns of direct supply by Aδ- and C-afferents. Unmyelinated C-fibers were selectively activated by electrical stimuli of negative polarity that induced an anodal block of myelinated Aβ/δ-fibers. Combining this approach with the patch-clamp recording in an ex vivo spinal cord preparation, we found that attenuation of the AD-PI by the anodal block of Aβ/δ-fibers resulted in the appearance of new mono- and polysynaptic C-fiber-mediated excitatory postsynaptic current (EPSC) components. Such homosegmental Aβ/δ-AD-PI affected neurons in the segment of the dorsal root entrance as well as in the adjacent rostral segment. In their turn, C-fibers from the L5 dorsal root induced heterosegmental AD-PI of the inputs from the L4 Aδ- and C-afferents to the neurons in the L4 segment. The heterosegmental C-AD-PI was reciprocal since the L4 C-afferents inhibited the L5 Aδ- and C-fiber inputs, as well as some direct L5 Aβ-fiber inputs. Moreover, the C-AD-PI was found to control the spike discharge in spinal neurons. Given that the homosegmental Aβ/δ-AD-PI and heterosegmental C-AD-PI affected a substantial percentage of lamina I and X neurons, we suggest that these basic mechanisms are important for shaping primary afferent input to the neurons in the spinal nociceptive-processing network. Frontiers Media S.A. 2023-01-11 /pmc/articles/PMC9874151/ /pubmed/36713779 http://dx.doi.org/10.3389/fncel.2022.1029799 Text en Copyright © 2023 Krotov, Agashkov, Romanenko, Halaidych, Andrianov, Safronov, Belan and Voitenko. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Krotov, Volodymyr
Agashkov, Kirill
Romanenko, Sergii
Halaidych, Oleh
Andrianov, Yaroslav
Safronov, Boris V.
Belan, Pavel
Voitenko, Nana
Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X
title Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X
title_full Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X
title_fullStr Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X
title_full_unstemmed Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X
title_short Elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae I and X
title_sort elucidating afferent-driven presynaptic inhibition of primary afferent input to spinal laminae i and x
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9874151/
https://www.ncbi.nlm.nih.gov/pubmed/36713779
http://dx.doi.org/10.3389/fncel.2022.1029799
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