Cargando…

Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity

INTRODUCTION: The primary somatosensory cortex has an important role in nociceptive sensory-discriminative processing. Altered peripheral inputs produced by deafferentation or by long-term changes in levels of afferent stimulation can result in plasticity of cortex. Capsaicin-induced depletion of C-...

Descripción completa

Detalles Bibliográficos
Autores principales: Komaki, Alireza, Shahidi, Siamak, Sarihi, Abdolrahman, Hasanein, Parisa, Lashgari, Reza, Haghparast, Abbas, Salehi, Iraj, Arami, Masoomeh Kourosh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Iranian Neuroscience Society 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202540/
https://www.ncbi.nlm.nih.gov/pubmed/25337340
_version_ 1782340306606227456
author Komaki, Alireza
Shahidi, Siamak
Sarihi, Abdolrahman
Hasanein, Parisa
Lashgari, Reza
Haghparast, Abbas
Salehi, Iraj
Arami, Masoomeh Kourosh
author_facet Komaki, Alireza
Shahidi, Siamak
Sarihi, Abdolrahman
Hasanein, Parisa
Lashgari, Reza
Haghparast, Abbas
Salehi, Iraj
Arami, Masoomeh Kourosh
author_sort Komaki, Alireza
collection PubMed
description INTRODUCTION: The primary somatosensory cortex has an important role in nociceptive sensory-discriminative processing. Altered peripheral inputs produced by deafferentation or by long-term changes in levels of afferent stimulation can result in plasticity of cortex. Capsaicin-induced depletion of C-fiber afferents results in plasticity of the somatosensory system. Plasticity includes short-term and long-term changes in synaptic strength. We studied the interaction between paired-pulse facilitation, as one form of short-term plasticity, with long-term potentiation (LTP) in the neocortex of normal and C-fiber depleted freely moving rat. METHODS: Neonatally capsaicin-treated rats and their controls were allowed to mature until they reached a weight between 250 and 300g. Then animals were anesthetized with ketamine and xylazine. For recording and stimulation, twisted teflon-coated stainless steel wires were implanted into somatosensory cortex or corpus callusom. In experiments for LTP induction, after two weeks of recovery period, 30 high frequency pulse trains were delivered once per day for 12 days. Paired-pulse ratio (PPR) was monitored before and after the induction of LTP in capsaicin-treated and control rats. RESULTS: Paired-pulse stimulation affected all field potential components at intervals < 200 ms. The largest changes occurred at intervals between 20-30 ms. C-fiber depletion postponed the development of LTP, whereas it had no effect on PPR. DISCUSSION: This finding provides further evidence that the expression of this form of LTP is postsynaptic. Furthermore, these results suggest that the effect of C-fiber depletion on cortical LTP is also postsynaptic and, therefore, is not caused by a decrease in neurotransmitter release.
format Online
Article
Text
id pubmed-4202540
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Iranian Neuroscience Society
record_format MEDLINE/PubMed
spelling pubmed-42025402014-10-21 Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity Komaki, Alireza Shahidi, Siamak Sarihi, Abdolrahman Hasanein, Parisa Lashgari, Reza Haghparast, Abbas Salehi, Iraj Arami, Masoomeh Kourosh Basic Clin Neurosci Research Papers INTRODUCTION: The primary somatosensory cortex has an important role in nociceptive sensory-discriminative processing. Altered peripheral inputs produced by deafferentation or by long-term changes in levels of afferent stimulation can result in plasticity of cortex. Capsaicin-induced depletion of C-fiber afferents results in plasticity of the somatosensory system. Plasticity includes short-term and long-term changes in synaptic strength. We studied the interaction between paired-pulse facilitation, as one form of short-term plasticity, with long-term potentiation (LTP) in the neocortex of normal and C-fiber depleted freely moving rat. METHODS: Neonatally capsaicin-treated rats and their controls were allowed to mature until they reached a weight between 250 and 300g. Then animals were anesthetized with ketamine and xylazine. For recording and stimulation, twisted teflon-coated stainless steel wires were implanted into somatosensory cortex or corpus callusom. In experiments for LTP induction, after two weeks of recovery period, 30 high frequency pulse trains were delivered once per day for 12 days. Paired-pulse ratio (PPR) was monitored before and after the induction of LTP in capsaicin-treated and control rats. RESULTS: Paired-pulse stimulation affected all field potential components at intervals < 200 ms. The largest changes occurred at intervals between 20-30 ms. C-fiber depletion postponed the development of LTP, whereas it had no effect on PPR. DISCUSSION: This finding provides further evidence that the expression of this form of LTP is postsynaptic. Furthermore, these results suggest that the effect of C-fiber depletion on cortical LTP is also postsynaptic and, therefore, is not caused by a decrease in neurotransmitter release. Iranian Neuroscience Society 2013 /pmc/articles/PMC4202540/ /pubmed/25337340 Text en Copyright © 2013 Iranian Neuroscience Society http://creativecommons.org/licenses/by-nc/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License which allows users to read, copy, distribute and make derivative works for non-commercial purposes from the material, as long as the author of the original work is cited properly.
spellingShingle Research Papers
Komaki, Alireza
Shahidi, Siamak
Sarihi, Abdolrahman
Hasanein, Parisa
Lashgari, Reza
Haghparast, Abbas
Salehi, Iraj
Arami, Masoomeh Kourosh
Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity
title Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity
title_full Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity
title_fullStr Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity
title_full_unstemmed Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity
title_short Effects of Neonatal C-Fiber Depletion on Interaction between Neocortical Short-Term and Long-Term Plasticity
title_sort effects of neonatal c-fiber depletion on interaction between neocortical short-term and long-term plasticity
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202540/
https://www.ncbi.nlm.nih.gov/pubmed/25337340
work_keys_str_mv AT komakialireza effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity
AT shahidisiamak effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity
AT sarihiabdolrahman effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity
AT hasaneinparisa effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity
AT lashgarireza effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity
AT haghparastabbas effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity
AT salehiiraj effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity
AT aramimasoomehkourosh effectsofneonatalcfiberdepletiononinteractionbetweenneocorticalshorttermandlongtermplasticity