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Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice

Glucocorticoid (GC)‐induced osteoporosis is a widespread health problem that is accompanied with increased fracture risk. Detrimental effects of anti‐inflammatory GC therapy on bone have been ascribed to the excess in GC exposure, but it is unknown whether there is also a role for disruption of the...

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Autores principales: Schilperoort, Maaike, Kroon, Jan, Kooijman, Sander, Smit, Annelies E., Gentenaar, Max, Mletzko, Kathrin, Schmidt, Felix N., van Ruijven, Leo, Busse, Björn, Pereira, Alberto M., Appelman‐Dijkstra, Natasha M., Bravenboer, Nathalie, Rensen, Patrick C.N., Meijer, Onno C., Winter, Elizabeth M.
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/PMC8520718/
https://www.ncbi.nlm.nih.gov/pubmed/34592793
http://dx.doi.org/10.1111/acel.13474
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author Schilperoort, Maaike
Kroon, Jan
Kooijman, Sander
Smit, Annelies E.
Gentenaar, Max
Mletzko, Kathrin
Schmidt, Felix N.
van Ruijven, Leo
Busse, Björn
Pereira, Alberto M.
Appelman‐Dijkstra, Natasha M.
Bravenboer, Nathalie
Rensen, Patrick C.N.
Meijer, Onno C.
Winter, Elizabeth M.
author_facet Schilperoort, Maaike
Kroon, Jan
Kooijman, Sander
Smit, Annelies E.
Gentenaar, Max
Mletzko, Kathrin
Schmidt, Felix N.
van Ruijven, Leo
Busse, Björn
Pereira, Alberto M.
Appelman‐Dijkstra, Natasha M.
Bravenboer, Nathalie
Rensen, Patrick C.N.
Meijer, Onno C.
Winter, Elizabeth M.
author_sort Schilperoort, Maaike
collection PubMed
description Glucocorticoid (GC)‐induced osteoporosis is a widespread health problem that is accompanied with increased fracture risk. Detrimental effects of anti‐inflammatory GC therapy on bone have been ascribed to the excess in GC exposure, but it is unknown whether there is also a role for disruption of the endogenous GC rhythm that is inherent to GC therapy. To investigate this, we implanted female C57Bl/6J mice with slow‐release corticosterone (CORT) pellets to blunt the rhythm in CORT levels without inducing hypercortisolism. Flattening of CORT rhythm reduced cortical and trabecular bone volume and thickness, whilst bone structure was maintained in mice injected with supraphysiologic CORT at the time of their endogenous GC peak. Mechanistically, mice with a flattened CORT rhythm showed disrupted circadian gene expression patterns in bone, along with changes in circulating bone turnover markers indicative of a negative balance in bone remodelling. Indeed, double calcein labelling of bone in vivo revealed a reduced bone formation in mice with a flattened CORT rhythm. Collectively, these perturbations in bone turnover and structure decreased bone strength and stiffness, as determined by mechanical testing. In conclusion, we demonstrate for the first time that flattening of the GC rhythm disrupts the circadian clock in bone and results in an osteoporotic phenotype in mice. Our findings indicate that at least part of the fracture risk associated with GC therapy may be the consequence of a disturbed GC rhythm, rather than excess GC exposure alone, and that a dampened GC rhythm may contribute to the age‐related risk of osteoporosis.
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spelling pubmed-85207182021-10-25 Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice Schilperoort, Maaike Kroon, Jan Kooijman, Sander Smit, Annelies E. Gentenaar, Max Mletzko, Kathrin Schmidt, Felix N. van Ruijven, Leo Busse, Björn Pereira, Alberto M. Appelman‐Dijkstra, Natasha M. Bravenboer, Nathalie Rensen, Patrick C.N. Meijer, Onno C. Winter, Elizabeth M. Aging Cell Original Papers Glucocorticoid (GC)‐induced osteoporosis is a widespread health problem that is accompanied with increased fracture risk. Detrimental effects of anti‐inflammatory GC therapy on bone have been ascribed to the excess in GC exposure, but it is unknown whether there is also a role for disruption of the endogenous GC rhythm that is inherent to GC therapy. To investigate this, we implanted female C57Bl/6J mice with slow‐release corticosterone (CORT) pellets to blunt the rhythm in CORT levels without inducing hypercortisolism. Flattening of CORT rhythm reduced cortical and trabecular bone volume and thickness, whilst bone structure was maintained in mice injected with supraphysiologic CORT at the time of their endogenous GC peak. Mechanistically, mice with a flattened CORT rhythm showed disrupted circadian gene expression patterns in bone, along with changes in circulating bone turnover markers indicative of a negative balance in bone remodelling. Indeed, double calcein labelling of bone in vivo revealed a reduced bone formation in mice with a flattened CORT rhythm. Collectively, these perturbations in bone turnover and structure decreased bone strength and stiffness, as determined by mechanical testing. In conclusion, we demonstrate for the first time that flattening of the GC rhythm disrupts the circadian clock in bone and results in an osteoporotic phenotype in mice. Our findings indicate that at least part of the fracture risk associated with GC therapy may be the consequence of a disturbed GC rhythm, rather than excess GC exposure alone, and that a dampened GC rhythm may contribute to the age‐related risk of osteoporosis. John Wiley and Sons Inc. 2021-09-30 2021-10 /pmc/articles/PMC8520718/ /pubmed/34592793 http://dx.doi.org/10.1111/acel.13474 Text en © 2021 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Papers
Schilperoort, Maaike
Kroon, Jan
Kooijman, Sander
Smit, Annelies E.
Gentenaar, Max
Mletzko, Kathrin
Schmidt, Felix N.
van Ruijven, Leo
Busse, Björn
Pereira, Alberto M.
Appelman‐Dijkstra, Natasha M.
Bravenboer, Nathalie
Rensen, Patrick C.N.
Meijer, Onno C.
Winter, Elizabeth M.
Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice
title Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice
title_full Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice
title_fullStr Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice
title_full_unstemmed Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice
title_short Loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice
title_sort loss of glucocorticoid rhythm induces an osteoporotic phenotype in female mice
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8520718/
https://www.ncbi.nlm.nih.gov/pubmed/34592793
http://dx.doi.org/10.1111/acel.13474
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