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Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats

Mechanical stress determines bone mass and structure. It is not known whether mechanical loading affects expression of bone regulatory genes in a combined deficiency of estrogen and vitamin D. We studied the effect of mechanical loading on the messenger RNA (mRNA) expression of bone regulatory genes...

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Autores principales: Nepal, Ashwini Kumar, van Essen, Huib W., van der Veen, Albert J., van Wieringen, Wessel N., Stavenuiter, Andrea W. D., Cayami, Ferdy Kurniawan, Pals, Gerard, Micha, Dimitra, Vanderschueren, Dirk, Lips, Paul, Bravenboer, Nathalie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7818391/
https://www.ncbi.nlm.nih.gov/pubmed/32530517
http://dx.doi.org/10.1002/jor.24775
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author Nepal, Ashwini Kumar
van Essen, Huib W.
van der Veen, Albert J.
van Wieringen, Wessel N.
Stavenuiter, Andrea W. D.
Cayami, Ferdy Kurniawan
Pals, Gerard
Micha, Dimitra
Vanderschueren, Dirk
Lips, Paul
Bravenboer, Nathalie
author_facet Nepal, Ashwini Kumar
van Essen, Huib W.
van der Veen, Albert J.
van Wieringen, Wessel N.
Stavenuiter, Andrea W. D.
Cayami, Ferdy Kurniawan
Pals, Gerard
Micha, Dimitra
Vanderschueren, Dirk
Lips, Paul
Bravenboer, Nathalie
author_sort Nepal, Ashwini Kumar
collection PubMed
description Mechanical stress determines bone mass and structure. It is not known whether mechanical loading affects expression of bone regulatory genes in a combined deficiency of estrogen and vitamin D. We studied the effect of mechanical loading on the messenger RNA (mRNA) expression of bone regulatory genes during vitamin D and/or estrogen deficiency. We performed a single bout in vivo axial loading with 14 N peak load, 2 Hz frequency and 360 cycles in right ulnae of nineteen weeks old female control Wistar rats with or without ovariectomy (OVX), vitamin D deficiency and the combination of OVX and vitamin D deficiency (N = 10/group). Total bone RNA was isolated 6 hours after loading, and mRNA expression was detected of Mepe, Fgf23, Dmp1, Phex, Sost, Col1a1, Cyp27b1, Vdr, and Esr1. Serum levels of 25(OH)D, 1,25(OH)(2)D and estradiol were also measured at this time point. The effect of loading, vitamin D and estrogen deficiency and their interaction on bone gene expression was tested using a mixed effect model analysis. Mechanical loading significantly increased the mRNA expression of Mepe, and Sost, whereas it decreased the mRNA expression of Fgf23 and Esr1. Mechanical loading showed a significant interaction with vitamin D deficiency with regard to mRNA expression of Vdr and Esr1. Mechanical loading affected gene expression of Mepe, Fgf23, Sost, and Esr1 independently of vitamin D or estrogen, indicating that mechanical loading may affect bone turnover even during vitamin D deficiency and after menopause.
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spelling pubmed-78183912021-01-29 Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats Nepal, Ashwini Kumar van Essen, Huib W. van der Veen, Albert J. van Wieringen, Wessel N. Stavenuiter, Andrea W. D. Cayami, Ferdy Kurniawan Pals, Gerard Micha, Dimitra Vanderschueren, Dirk Lips, Paul Bravenboer, Nathalie J Orthop Res Research Articles Mechanical stress determines bone mass and structure. It is not known whether mechanical loading affects expression of bone regulatory genes in a combined deficiency of estrogen and vitamin D. We studied the effect of mechanical loading on the messenger RNA (mRNA) expression of bone regulatory genes during vitamin D and/or estrogen deficiency. We performed a single bout in vivo axial loading with 14 N peak load, 2 Hz frequency and 360 cycles in right ulnae of nineteen weeks old female control Wistar rats with or without ovariectomy (OVX), vitamin D deficiency and the combination of OVX and vitamin D deficiency (N = 10/group). Total bone RNA was isolated 6 hours after loading, and mRNA expression was detected of Mepe, Fgf23, Dmp1, Phex, Sost, Col1a1, Cyp27b1, Vdr, and Esr1. Serum levels of 25(OH)D, 1,25(OH)(2)D and estradiol were also measured at this time point. The effect of loading, vitamin D and estrogen deficiency and their interaction on bone gene expression was tested using a mixed effect model analysis. Mechanical loading significantly increased the mRNA expression of Mepe, and Sost, whereas it decreased the mRNA expression of Fgf23 and Esr1. Mechanical loading showed a significant interaction with vitamin D deficiency with regard to mRNA expression of Vdr and Esr1. Mechanical loading affected gene expression of Mepe, Fgf23, Sost, and Esr1 independently of vitamin D or estrogen, indicating that mechanical loading may affect bone turnover even during vitamin D deficiency and after menopause. John Wiley and Sons Inc. 2020-07-21 2021-01 /pmc/articles/PMC7818391/ /pubmed/32530517 http://dx.doi.org/10.1002/jor.24775 Text en © 2020 The Authors. Journal of Orthopaedic Research® published by Wiley Periodicals LLC on behalf of Orthopaedic Research Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Nepal, Ashwini Kumar
van Essen, Huib W.
van der Veen, Albert J.
van Wieringen, Wessel N.
Stavenuiter, Andrea W. D.
Cayami, Ferdy Kurniawan
Pals, Gerard
Micha, Dimitra
Vanderschueren, Dirk
Lips, Paul
Bravenboer, Nathalie
Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats
title Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats
title_full Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats
title_fullStr Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats
title_full_unstemmed Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats
title_short Mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin D deficiency in rats
title_sort mechanical stress regulates bone regulatory gene expression independent of estrogen and vitamin d deficiency in rats
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7818391/
https://www.ncbi.nlm.nih.gov/pubmed/32530517
http://dx.doi.org/10.1002/jor.24775
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