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Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice

Fetuin-A / α(2)-Heremans-Schmid-glycoprotein (gene name Ahsg) is a systemic inhibitor of ectopic calcification. Due to its high affinity for calcium phosphate, fetuin-A is highly abundant in mineralized bone matrix. Foreshortened femora in fetuin-A-deficient Ahsg(-/-) mice indicated a role for fetui...

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Autores principales: Brylka, Laura J., Köppert, Sina, Babler, Anne, Kratz, Beate, Denecke, Bernd, Yorgan, Timur A., Etich, Julia, Costa, Ivan G., Brachvogel, Bent, Boor, Peter, Schinke, Thorsten, Jahnen-Dechent, Willi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5663435/
https://www.ncbi.nlm.nih.gov/pubmed/29088242
http://dx.doi.org/10.1371/journal.pone.0187030
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author Brylka, Laura J.
Köppert, Sina
Babler, Anne
Kratz, Beate
Denecke, Bernd
Yorgan, Timur A.
Etich, Julia
Costa, Ivan G.
Brachvogel, Bent
Boor, Peter
Schinke, Thorsten
Jahnen-Dechent, Willi
author_facet Brylka, Laura J.
Köppert, Sina
Babler, Anne
Kratz, Beate
Denecke, Bernd
Yorgan, Timur A.
Etich, Julia
Costa, Ivan G.
Brachvogel, Bent
Boor, Peter
Schinke, Thorsten
Jahnen-Dechent, Willi
author_sort Brylka, Laura J.
collection PubMed
description Fetuin-A / α(2)-Heremans-Schmid-glycoprotein (gene name Ahsg) is a systemic inhibitor of ectopic calcification. Due to its high affinity for calcium phosphate, fetuin-A is highly abundant in mineralized bone matrix. Foreshortened femora in fetuin-A-deficient Ahsg(-/-) mice indicated a role for fetuin-A in bone formation. We studied early postnatal bone development in fetuin-A-deficient mice and discovered that femora from Ahsg(-/-) mice exhibited severely displaced distal epiphyses and deformed growth plates, similar to the human disease slipped capital femoral epiphysis (SCFE). The growth plate slippage occurred in 70% of Ahsg(-/-) mice of both sexes around three weeks postnatal. At this time point, mice weaned and rapidly gained weight and mobility. Epiphysis slippage never occurred in wildtype and heterozygous Ahsg(+/-) mice. Homozygous fetuin-A-deficient Ahsg(-/-) mice and, to a lesser degree, heterozygous Ahsg(+/-) mice showed lesions separating the proliferative zone from the hypertrophic zone of the growth plate. The hypertrophic growth plate cartilage in long bones from Ahsg(-/-) mice was significantly elongated and V-shaped until three weeks of age and thus prior to the slippage. Genome-wide transcriptome analysis of laser-dissected distal femoral growth plates from 13-day-old Ahsg(-/-) mice revealed a JAK-STAT-mediated inflammatory response including a 550-fold induction of the chemokine Cxcl9. At this stage, vascularization of the elongated growth plates was impaired, which was visualized by immunofluorescence staining. Thus, fetuin-A-deficient mice may serve as a rodent model of growth plate pathologies including SCFE and inflammatory cartilage degradation.
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spelling pubmed-56634352017-11-09 Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice Brylka, Laura J. Köppert, Sina Babler, Anne Kratz, Beate Denecke, Bernd Yorgan, Timur A. Etich, Julia Costa, Ivan G. Brachvogel, Bent Boor, Peter Schinke, Thorsten Jahnen-Dechent, Willi PLoS One Research Article Fetuin-A / α(2)-Heremans-Schmid-glycoprotein (gene name Ahsg) is a systemic inhibitor of ectopic calcification. Due to its high affinity for calcium phosphate, fetuin-A is highly abundant in mineralized bone matrix. Foreshortened femora in fetuin-A-deficient Ahsg(-/-) mice indicated a role for fetuin-A in bone formation. We studied early postnatal bone development in fetuin-A-deficient mice and discovered that femora from Ahsg(-/-) mice exhibited severely displaced distal epiphyses and deformed growth plates, similar to the human disease slipped capital femoral epiphysis (SCFE). The growth plate slippage occurred in 70% of Ahsg(-/-) mice of both sexes around three weeks postnatal. At this time point, mice weaned and rapidly gained weight and mobility. Epiphysis slippage never occurred in wildtype and heterozygous Ahsg(+/-) mice. Homozygous fetuin-A-deficient Ahsg(-/-) mice and, to a lesser degree, heterozygous Ahsg(+/-) mice showed lesions separating the proliferative zone from the hypertrophic zone of the growth plate. The hypertrophic growth plate cartilage in long bones from Ahsg(-/-) mice was significantly elongated and V-shaped until three weeks of age and thus prior to the slippage. Genome-wide transcriptome analysis of laser-dissected distal femoral growth plates from 13-day-old Ahsg(-/-) mice revealed a JAK-STAT-mediated inflammatory response including a 550-fold induction of the chemokine Cxcl9. At this stage, vascularization of the elongated growth plates was impaired, which was visualized by immunofluorescence staining. Thus, fetuin-A-deficient mice may serve as a rodent model of growth plate pathologies including SCFE and inflammatory cartilage degradation. Public Library of Science 2017-10-31 /pmc/articles/PMC5663435/ /pubmed/29088242 http://dx.doi.org/10.1371/journal.pone.0187030 Text en © 2017 Brylka et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Brylka, Laura J.
Köppert, Sina
Babler, Anne
Kratz, Beate
Denecke, Bernd
Yorgan, Timur A.
Etich, Julia
Costa, Ivan G.
Brachvogel, Bent
Boor, Peter
Schinke, Thorsten
Jahnen-Dechent, Willi
Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice
title Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice
title_full Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice
title_fullStr Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice
title_full_unstemmed Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice
title_short Post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-A-deficient mice
title_sort post-weaning epiphysiolysis causes distal femur dysplasia and foreshortened hindlimbs in fetuin-a-deficient mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5663435/
https://www.ncbi.nlm.nih.gov/pubmed/29088242
http://dx.doi.org/10.1371/journal.pone.0187030
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