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Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling

Fibroblast growth factors (FGFs) and their receptors (FGFRs) are involved in demyelinating pathologies including multiple sclerosis (MS). In our recent study, oligodendrocyte‐specific deletion of FGFR1 resulted in a milder disease course, less inflammation, reduced myelin and axon damage in EAE. The...

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Autores principales: Kamali, Salar, Rajendran, Ranjithkumar, Stadelmann, Christine, Karnati, Srikanth, Rajendran, Vinothkumar, Giraldo‐Velasquez, Mario, Berghoff, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8018040/
https://www.ncbi.nlm.nih.gov/pubmed/33103299
http://dx.doi.org/10.1111/bpa.12916
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author Kamali, Salar
Rajendran, Ranjithkumar
Stadelmann, Christine
Karnati, Srikanth
Rajendran, Vinothkumar
Giraldo‐Velasquez, Mario
Berghoff, Martin
author_facet Kamali, Salar
Rajendran, Ranjithkumar
Stadelmann, Christine
Karnati, Srikanth
Rajendran, Vinothkumar
Giraldo‐Velasquez, Mario
Berghoff, Martin
author_sort Kamali, Salar
collection PubMed
description Fibroblast growth factors (FGFs) and their receptors (FGFRs) are involved in demyelinating pathologies including multiple sclerosis (MS). In our recent study, oligodendrocyte‐specific deletion of FGFR1 resulted in a milder disease course, less inflammation, reduced myelin and axon damage in EAE. The objective of this study was to elucidate the role of oligodendroglial FGFR2 in MOG(35‐55)‐induced EAE. Oligodendrocyte‐specific knockout of FGFR2 (Fgfr2(ind) (−/−)) was achieved by application of tamoxifen; EAE was induced using the MOG(35‐55) peptide. EAE symptoms were monitored over 62 days. Spinal cord tissue was analysed by histology, immunohistochemistry and western blot. Fgfr2(ind) (−/−) mice revealed a milder disease course, less myelin damage and enhanced axonal density. The number of oligodendrocytes was not affected in demyelinated areas. However, protein expression of FGFR2, FGF2 and FGF9 was downregulated in Fgfr2(ind) (−/−) mice. FGF/FGFR dependent signalling proteins were differentially regulated; pAkt was upregulated and pERK was downregulated in Fgfr2(ind) (−/−) mice. The number of CD3(+) T cells, Mac3(+) cells and B220(+) B cells was less in demyelinated lesions of Fgfr2(ind) (−/−) mice. Furthermore, expression of IL‐1β, TNF‐α and CD200 was less in Fgfr2(ind) (−/−) mice than controls. Fgfr2(ind) (−/−) mice showed an upregulation of PLP and downregulation of the remyelination inhibitors SEMA3A and TGF‐β expression. These data suggest that cell‐specific deletion of FGFR2 in oligodendrocytes has anti‐inflammatory and neuroprotective effects accompanied by changes in FGF/FGFR dependent signalling, inflammatory cytokines and expression of remyelination inhibitors. Thus, FGFRs in oligodendrocytes may represent potential targets for the treatment of inflammatory and demyelinating diseases including MS.
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spelling pubmed-80180402021-09-03 Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling Kamali, Salar Rajendran, Ranjithkumar Stadelmann, Christine Karnati, Srikanth Rajendran, Vinothkumar Giraldo‐Velasquez, Mario Berghoff, Martin Brain Pathol Research Articles Fibroblast growth factors (FGFs) and their receptors (FGFRs) are involved in demyelinating pathologies including multiple sclerosis (MS). In our recent study, oligodendrocyte‐specific deletion of FGFR1 resulted in a milder disease course, less inflammation, reduced myelin and axon damage in EAE. The objective of this study was to elucidate the role of oligodendroglial FGFR2 in MOG(35‐55)‐induced EAE. Oligodendrocyte‐specific knockout of FGFR2 (Fgfr2(ind) (−/−)) was achieved by application of tamoxifen; EAE was induced using the MOG(35‐55) peptide. EAE symptoms were monitored over 62 days. Spinal cord tissue was analysed by histology, immunohistochemistry and western blot. Fgfr2(ind) (−/−) mice revealed a milder disease course, less myelin damage and enhanced axonal density. The number of oligodendrocytes was not affected in demyelinated areas. However, protein expression of FGFR2, FGF2 and FGF9 was downregulated in Fgfr2(ind) (−/−) mice. FGF/FGFR dependent signalling proteins were differentially regulated; pAkt was upregulated and pERK was downregulated in Fgfr2(ind) (−/−) mice. The number of CD3(+) T cells, Mac3(+) cells and B220(+) B cells was less in demyelinated lesions of Fgfr2(ind) (−/−) mice. Furthermore, expression of IL‐1β, TNF‐α and CD200 was less in Fgfr2(ind) (−/−) mice than controls. Fgfr2(ind) (−/−) mice showed an upregulation of PLP and downregulation of the remyelination inhibitors SEMA3A and TGF‐β expression. These data suggest that cell‐specific deletion of FGFR2 in oligodendrocytes has anti‐inflammatory and neuroprotective effects accompanied by changes in FGF/FGFR dependent signalling, inflammatory cytokines and expression of remyelination inhibitors. Thus, FGFRs in oligodendrocytes may represent potential targets for the treatment of inflammatory and demyelinating diseases including MS. John Wiley and Sons Inc. 2021-01-04 /pmc/articles/PMC8018040/ /pubmed/33103299 http://dx.doi.org/10.1111/bpa.12916 Text en © 2020 The Authors. Brain Pathology published by John Wiley & Sons Ltd on behalf of International Society of Neuropathology This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Kamali, Salar
Rajendran, Ranjithkumar
Stadelmann, Christine
Karnati, Srikanth
Rajendran, Vinothkumar
Giraldo‐Velasquez, Mario
Berghoff, Martin
Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling
title Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling
title_full Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling
title_fullStr Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling
title_full_unstemmed Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling
title_short Oligodendrocyte‐specific deletion of FGFR2 ameliorates MOG(35‐55)‐induced EAE through ERK and Akt signalling
title_sort oligodendrocyte‐specific deletion of fgfr2 ameliorates mog(35‐55)‐induced eae through erk and akt signalling
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8018040/
https://www.ncbi.nlm.nih.gov/pubmed/33103299
http://dx.doi.org/10.1111/bpa.12916
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