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Ebi3 knockout aggravates experimental periodontitis via Th17 polarization

To investigate the role of Ebi3-related cytokines (i.e., interleukin [IL]-35 and/or IL-27) in experimental periodontitis using Ebi3 knockout (KO) mice. The maxillary right second molar teeth of Ebi3 KO mice and C57BL/6 mice were tied with a silk ligature to induce periodontitis. Three days after lig...

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Published in:Journal of clinical periodontology 2023-10, Vol.50 (10), p.1406-1418
Main Authors: Goto, Hisashi, Kikuchi, Takeshi, Takayanagi, Yuhei, Kamiya, Yosuke, Suzuki, Yuki, Kawamura, Shotaro, Sawada, Noritaka, Hayashi, Jun-Ichiro, Mitani, Akio
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container_issue 10
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container_title Journal of clinical periodontology
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creator Goto, Hisashi
Kikuchi, Takeshi
Takayanagi, Yuhei
Kamiya, Yosuke
Suzuki, Yuki
Kawamura, Shotaro
Sawada, Noritaka
Hayashi, Jun-Ichiro
Mitani, Akio
description To investigate the role of Ebi3-related cytokines (i.e., interleukin [IL]-35 and/or IL-27) in experimental periodontitis using Ebi3 knockout (KO) mice. The maxillary right second molar teeth of Ebi3 KO mice and C57BL/6 mice were tied with a silk ligature to induce periodontitis. Three days after ligation, gingival tissues were collected for gene expression analyses. Five days after ligation, the maxillae were removed for haematoxylin and eosin staining and immunohistochemistry. Seven days after ligation, the maxillae were removed for micro-computed tomography. The ligated side of Ebi3 KO mice showed intense alveolar bone resorption, which was substantially more pronounced than in wild-type (WT) mice. IL-17A expression was significantly higher in the gingiva of the ligated side of Ebi3 KO mice compared with WT mice. IL-10 expression was significantly lower in Ebi3 KO mice than in WT mice. The ligature-induced alveolar bone resorption in Ebi3 KO mice that received recombinant IL-35 injection was significantly less compared with that in Ebi3 KO mice that received control injection. Together, these findings suggest that Th17 cells exacerbate experimental periodontitis in mice lacking Ebi3 and that IL-35 may play a critical role in inhibiting periodontal tissue destruction.
doi_str_mv 10.1111/jcpe.13859
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subjects Alveolar bone
Bone resorption
Computed tomography
Gene expression
Gum disease
Helper cells
Immunohistochemistry
Lymphocytes T
Periodontitis
title Ebi3 knockout aggravates experimental periodontitis via Th17 polarization
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