Cargando…

Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity

Activated microglia involved in the development of orofacial pain hypersensitivity have two major polarization states. The aim of this study was to assess the involvement of the aging-related phenotypic conversion of medullary microglia in the enhancement of intraoral pain sensitivity using senescen...

Descripción completa

Detalles Bibliográficos
Autores principales: Ikutame, Daisuke, Urata, Kentaro, Oto, Tatsuki, Fujiwara, Shintaro, Iinuma, Toshimitsu, Shibuta, Ikuko, Hayashi, Yoshinori, Hitomi, Suzuro, Iwata, Koichi, Shinoda, Masamichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660637/
https://www.ncbi.nlm.nih.gov/pubmed/33114176
http://dx.doi.org/10.3390/ijms21217871
_version_ 1783609046205464576
author Ikutame, Daisuke
Urata, Kentaro
Oto, Tatsuki
Fujiwara, Shintaro
Iinuma, Toshimitsu
Shibuta, Ikuko
Hayashi, Yoshinori
Hitomi, Suzuro
Iwata, Koichi
Shinoda, Masamichi
author_facet Ikutame, Daisuke
Urata, Kentaro
Oto, Tatsuki
Fujiwara, Shintaro
Iinuma, Toshimitsu
Shibuta, Ikuko
Hayashi, Yoshinori
Hitomi, Suzuro
Iwata, Koichi
Shinoda, Masamichi
author_sort Ikutame, Daisuke
collection PubMed
description Activated microglia involved in the development of orofacial pain hypersensitivity have two major polarization states. The aim of this study was to assess the involvement of the aging-related phenotypic conversion of medullary microglia in the enhancement of intraoral pain sensitivity using senescence-accelerated mice (SAM)-prone/8 (SAMP8) and SAM-resistant/1 (SAMR1) mice. Mechanical head-withdrawal threshold (MHWT) was measured for 21 days post palatal mucosal incision. The number of CD11c-immunoreactive (IR) cells [affective microglia (M1)] and CD163-IR cells [protective microglia (M2)], and tumor-necrosis-factor-α (TNF-α)-IR M1 and interleukin (IL)-10-IR M2 were analyzed via immunohistochemistry on days 3 and 11 following incision. The decrease in MHWT observed following incision was enhanced in SAMP8 mice. M1 levels and the number of TNF-α-IR M1 were increased on day 3 in SAMP8 mice compared with those in SAMR1 mice. On day 11, M1 and M2 activation was observed in both groups, whereas IL-10-IR M2 levels were attenuated in SAMP8 mice, and the number of TNF-α-IR M1 cells increased, compared to those in SAMR1 mice. These results suggest that the mechanical allodynia observed following intraoral injury is potentiated and sustained in SAMP8 mice due to enhancement of TNF-α signaling, M1 activation, and an attenuation of M2 activation accompanying IL-10 release.
format Online
Article
Text
id pubmed-7660637
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-76606372020-11-13 Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity Ikutame, Daisuke Urata, Kentaro Oto, Tatsuki Fujiwara, Shintaro Iinuma, Toshimitsu Shibuta, Ikuko Hayashi, Yoshinori Hitomi, Suzuro Iwata, Koichi Shinoda, Masamichi Int J Mol Sci Article Activated microglia involved in the development of orofacial pain hypersensitivity have two major polarization states. The aim of this study was to assess the involvement of the aging-related phenotypic conversion of medullary microglia in the enhancement of intraoral pain sensitivity using senescence-accelerated mice (SAM)-prone/8 (SAMP8) and SAM-resistant/1 (SAMR1) mice. Mechanical head-withdrawal threshold (MHWT) was measured for 21 days post palatal mucosal incision. The number of CD11c-immunoreactive (IR) cells [affective microglia (M1)] and CD163-IR cells [protective microglia (M2)], and tumor-necrosis-factor-α (TNF-α)-IR M1 and interleukin (IL)-10-IR M2 were analyzed via immunohistochemistry on days 3 and 11 following incision. The decrease in MHWT observed following incision was enhanced in SAMP8 mice. M1 levels and the number of TNF-α-IR M1 were increased on day 3 in SAMP8 mice compared with those in SAMR1 mice. On day 11, M1 and M2 activation was observed in both groups, whereas IL-10-IR M2 levels were attenuated in SAMP8 mice, and the number of TNF-α-IR M1 cells increased, compared to those in SAMR1 mice. These results suggest that the mechanical allodynia observed following intraoral injury is potentiated and sustained in SAMP8 mice due to enhancement of TNF-α signaling, M1 activation, and an attenuation of M2 activation accompanying IL-10 release. MDPI 2020-10-23 /pmc/articles/PMC7660637/ /pubmed/33114176 http://dx.doi.org/10.3390/ijms21217871 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ikutame, Daisuke
Urata, Kentaro
Oto, Tatsuki
Fujiwara, Shintaro
Iinuma, Toshimitsu
Shibuta, Ikuko
Hayashi, Yoshinori
Hitomi, Suzuro
Iwata, Koichi
Shinoda, Masamichi
Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity
title Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity
title_full Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity
title_fullStr Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity
title_full_unstemmed Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity
title_short Aging-Related Phenotypic Conversion of Medullary Microglia Enhances Intraoral Incisional Pain Sensitivity
title_sort aging-related phenotypic conversion of medullary microglia enhances intraoral incisional pain sensitivity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7660637/
https://www.ncbi.nlm.nih.gov/pubmed/33114176
http://dx.doi.org/10.3390/ijms21217871
work_keys_str_mv AT ikutamedaisuke agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT uratakentaro agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT ototatsuki agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT fujiwarashintaro agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT iinumatoshimitsu agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT shibutaikuko agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT hayashiyoshinori agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT hitomisuzuro agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT iwatakoichi agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity
AT shinodamasamichi agingrelatedphenotypicconversionofmedullarymicrogliaenhancesintraoralincisionalpainsensitivity