Cargando…

Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats

STUDY DESIGN: Experimental animal study. PURPOSE: To evaluate pain-related behavior and changes in glial activity in the spinal dorsal horn after combined sciatic nerve compression and nucleus pulposus (NP) application in rats. OVERVIEW OF LITERATURE: Mechanical compression and inflammation caused b...

Descripción completa

Detalles Bibliográficos
Autores principales: Norimoto, Masaki, Sakuma, Yoshihiro, Suzuki, Miyako, Orita, Sumihisa, Yamauchi, Kazuyo, Inoue, Gen, Aoki, Yasuchika, Ishikawa, Tetsuhiro, Miyagi, Masayuki, Kamoda, Hiroto, Kubota, Gou, Oikawa, Yasuhiro, Inage, Kazuhide, Sainoh, Takeshi, Sato, Jun, Nakamura, Junichi, Toyone, Tomoaki, Takahashi, Kazuhisa, Ohtori, Seiji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society of Spine Surgery 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4206803/
https://www.ncbi.nlm.nih.gov/pubmed/25346806
http://dx.doi.org/10.4184/asj.2014.8.5.549
_version_ 1782340874678566912
author Norimoto, Masaki
Sakuma, Yoshihiro
Suzuki, Miyako
Orita, Sumihisa
Yamauchi, Kazuyo
Inoue, Gen
Aoki, Yasuchika
Ishikawa, Tetsuhiro
Miyagi, Masayuki
Kamoda, Hiroto
Kubota, Gou
Oikawa, Yasuhiro
Inage, Kazuhide
Sainoh, Takeshi
Sato, Jun
Nakamura, Junichi
Toyone, Tomoaki
Takahashi, Kazuhisa
Ohtori, Seiji
author_facet Norimoto, Masaki
Sakuma, Yoshihiro
Suzuki, Miyako
Orita, Sumihisa
Yamauchi, Kazuyo
Inoue, Gen
Aoki, Yasuchika
Ishikawa, Tetsuhiro
Miyagi, Masayuki
Kamoda, Hiroto
Kubota, Gou
Oikawa, Yasuhiro
Inage, Kazuhide
Sainoh, Takeshi
Sato, Jun
Nakamura, Junichi
Toyone, Tomoaki
Takahashi, Kazuhisa
Ohtori, Seiji
author_sort Norimoto, Masaki
collection PubMed
description STUDY DESIGN: Experimental animal study. PURPOSE: To evaluate pain-related behavior and changes in glial activity in the spinal dorsal horn after combined sciatic nerve compression and nucleus pulposus (NP) application in rats. OVERVIEW OF LITERATURE: Mechanical compression and inflammation caused by prostaglandins and cytokines at disc herniation sites induce pain. Structural changes and pain-associated cytokines in the dorsal root ganglia and spinal dorsal horn contribute to prolonged pain. Glial cells in the spinal dorsal horn may also function in pain transmission. METHODS: The sciatic nerve was compressed with NP for 2 seconds using forceps in the NP+nerve compression group; the sham-operated group received neither compression nor NP; and the control group received no operation. Mechanical hyperalgesia was measured for 3 weeks using von Frey filaments. Glial activity in the spinal dorsal horn was examined 7 days and 14 days postsurgery using anti-glial fibrillary acidic protein and anti-Ionized calcium binding adaptor molecule-1 antibodies to detect astrocytes and microglia, respectively. RESULTS: Mechanical hyperalgesia was detected throughout the 14-day observation in the NP+nerve compression group, but not in control or sham-operated groups (p<0.05). Both astrocytes and microglia were significantly increased in the spinal dorsal horn of the NP+nerve compression group compared to control and sham groups on days 7 and 14 (p<0.05). CONCLUSIONS: Nerve compression with NP application produces pain-related behavior, and up-regulates astrocytes and microglia in the spinal dorsal horn, suggesting that these glia may be related to pain transmission.
format Online
Article
Text
id pubmed-4206803
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Korean Society of Spine Surgery
record_format MEDLINE/PubMed
spelling pubmed-42068032014-10-24 Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats Norimoto, Masaki Sakuma, Yoshihiro Suzuki, Miyako Orita, Sumihisa Yamauchi, Kazuyo Inoue, Gen Aoki, Yasuchika Ishikawa, Tetsuhiro Miyagi, Masayuki Kamoda, Hiroto Kubota, Gou Oikawa, Yasuhiro Inage, Kazuhide Sainoh, Takeshi Sato, Jun Nakamura, Junichi Toyone, Tomoaki Takahashi, Kazuhisa Ohtori, Seiji Asian Spine J Basic Study STUDY DESIGN: Experimental animal study. PURPOSE: To evaluate pain-related behavior and changes in glial activity in the spinal dorsal horn after combined sciatic nerve compression and nucleus pulposus (NP) application in rats. OVERVIEW OF LITERATURE: Mechanical compression and inflammation caused by prostaglandins and cytokines at disc herniation sites induce pain. Structural changes and pain-associated cytokines in the dorsal root ganglia and spinal dorsal horn contribute to prolonged pain. Glial cells in the spinal dorsal horn may also function in pain transmission. METHODS: The sciatic nerve was compressed with NP for 2 seconds using forceps in the NP+nerve compression group; the sham-operated group received neither compression nor NP; and the control group received no operation. Mechanical hyperalgesia was measured for 3 weeks using von Frey filaments. Glial activity in the spinal dorsal horn was examined 7 days and 14 days postsurgery using anti-glial fibrillary acidic protein and anti-Ionized calcium binding adaptor molecule-1 antibodies to detect astrocytes and microglia, respectively. RESULTS: Mechanical hyperalgesia was detected throughout the 14-day observation in the NP+nerve compression group, but not in control or sham-operated groups (p<0.05). Both astrocytes and microglia were significantly increased in the spinal dorsal horn of the NP+nerve compression group compared to control and sham groups on days 7 and 14 (p<0.05). CONCLUSIONS: Nerve compression with NP application produces pain-related behavior, and up-regulates astrocytes and microglia in the spinal dorsal horn, suggesting that these glia may be related to pain transmission. Korean Society of Spine Surgery 2014-10 2014-10-18 /pmc/articles/PMC4206803/ /pubmed/25346806 http://dx.doi.org/10.4184/asj.2014.8.5.549 Text en Copyright © 2014 by Korean Society of Spine Surgery http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Basic Study
Norimoto, Masaki
Sakuma, Yoshihiro
Suzuki, Miyako
Orita, Sumihisa
Yamauchi, Kazuyo
Inoue, Gen
Aoki, Yasuchika
Ishikawa, Tetsuhiro
Miyagi, Masayuki
Kamoda, Hiroto
Kubota, Gou
Oikawa, Yasuhiro
Inage, Kazuhide
Sainoh, Takeshi
Sato, Jun
Nakamura, Junichi
Toyone, Tomoaki
Takahashi, Kazuhisa
Ohtori, Seiji
Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats
title Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats
title_full Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats
title_fullStr Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats
title_full_unstemmed Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats
title_short Up-Regulation of Pain Behavior and Glial Activity in the Spinal Cord after Compression and Application of Nucleus Pulposus onto the Sciatic Nerve in Rats
title_sort up-regulation of pain behavior and glial activity in the spinal cord after compression and application of nucleus pulposus onto the sciatic nerve in rats
topic Basic Study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4206803/
https://www.ncbi.nlm.nih.gov/pubmed/25346806
http://dx.doi.org/10.4184/asj.2014.8.5.549
work_keys_str_mv AT norimotomasaki upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT sakumayoshihiro upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT suzukimiyako upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT oritasumihisa upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT yamauchikazuyo upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT inouegen upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT aokiyasuchika upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT ishikawatetsuhiro upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT miyagimasayuki upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT kamodahiroto upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT kubotagou upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT oikawayasuhiro upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT inagekazuhide upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT sainohtakeshi upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT satojun upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT nakamurajunichi upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT toyonetomoaki upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT takahashikazuhisa upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats
AT ohtoriseiji upregulationofpainbehaviorandglialactivityinthespinalcordaftercompressionandapplicationofnucleuspulposusontothesciaticnerveinrats