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Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone

Genome Wide Association Studies suggest that Wnt16 is an important contributor to the mechanisms controlling bone mineral density, cortical thickness, bone strength and ultimately fracture risk. Wnt16 acts on osteoblasts and osteoclasts and, in cortical bone, is predominantly derived from osteoblast...

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Autores principales: Todd, Henry, Galea, Gabriel L., Meakin, Lee B., Delisser, Peter J., Lanyon, Lance E., Windahl, Sara H., Price, Joanna S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599960/
https://www.ncbi.nlm.nih.gov/pubmed/26451596
http://dx.doi.org/10.1371/journal.pone.0140260
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author Todd, Henry
Galea, Gabriel L.
Meakin, Lee B.
Delisser, Peter J.
Lanyon, Lance E.
Windahl, Sara H.
Price, Joanna S.
author_facet Todd, Henry
Galea, Gabriel L.
Meakin, Lee B.
Delisser, Peter J.
Lanyon, Lance E.
Windahl, Sara H.
Price, Joanna S.
author_sort Todd, Henry
collection PubMed
description Genome Wide Association Studies suggest that Wnt16 is an important contributor to the mechanisms controlling bone mineral density, cortical thickness, bone strength and ultimately fracture risk. Wnt16 acts on osteoblasts and osteoclasts and, in cortical bone, is predominantly derived from osteoblasts. This led us to hypothesize that low bone mass would be associated with low levels of Wnt16 expression and that Wnt16 expression would be increased by anabolic factors, including mechanical loading. We therefore investigated Wnt16 expression in the context of ageing, mechanical loading and unloading, estrogen deficiency and replacement, and estrogen receptor α (ERα) depletion. Quantitative real time PCR showed that Wnt16 mRNA expression was lower in cortical bone and marrow of aged compared to young female mice. Neither increased nor decreased (by disuse) mechanical loading altered Wnt16 expression in young female mice, although Wnt16 expression was decreased following ovariectomy. Both 17β-estradiol and the Selective Estrogen Receptor Modulator Tamoxifen increased Wnt16 expression relative to ovariectomy. Wnt16 and ERβ expression were increased in female ERα(-/-) mice when compared to Wild Type. We also addressed potential effects of gender on Wnt16 expression and while the expression was lower in the cortical bone of aged males as in females, it was higher in male bone marrow of aged mice compared to young. In the kidney, which we used as a non-bone reference tissue, Wnt16 expression was unaffected by age in either males or females. In summary, age, and its associated bone loss, is associated with low levels of Wnt16 expression whereas bone loss associated with disuse has no effect on Wnt16 expression. In the artificially loaded mouse tibia we observed no loading-related up-regulation of Wnt16 expression but provide evidence that its expression is influenced by estrogen receptor signaling. These findings suggest that while Wnt16 is not an obligatory contributor to regulation of bone mass per se, it potentially plays a role in influencing pathways associated with regulation of bone mass during ageing and estrogen withdrawal.
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spelling pubmed-45999602015-10-20 Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone Todd, Henry Galea, Gabriel L. Meakin, Lee B. Delisser, Peter J. Lanyon, Lance E. Windahl, Sara H. Price, Joanna S. PLoS One Research Article Genome Wide Association Studies suggest that Wnt16 is an important contributor to the mechanisms controlling bone mineral density, cortical thickness, bone strength and ultimately fracture risk. Wnt16 acts on osteoblasts and osteoclasts and, in cortical bone, is predominantly derived from osteoblasts. This led us to hypothesize that low bone mass would be associated with low levels of Wnt16 expression and that Wnt16 expression would be increased by anabolic factors, including mechanical loading. We therefore investigated Wnt16 expression in the context of ageing, mechanical loading and unloading, estrogen deficiency and replacement, and estrogen receptor α (ERα) depletion. Quantitative real time PCR showed that Wnt16 mRNA expression was lower in cortical bone and marrow of aged compared to young female mice. Neither increased nor decreased (by disuse) mechanical loading altered Wnt16 expression in young female mice, although Wnt16 expression was decreased following ovariectomy. Both 17β-estradiol and the Selective Estrogen Receptor Modulator Tamoxifen increased Wnt16 expression relative to ovariectomy. Wnt16 and ERβ expression were increased in female ERα(-/-) mice when compared to Wild Type. We also addressed potential effects of gender on Wnt16 expression and while the expression was lower in the cortical bone of aged males as in females, it was higher in male bone marrow of aged mice compared to young. In the kidney, which we used as a non-bone reference tissue, Wnt16 expression was unaffected by age in either males or females. In summary, age, and its associated bone loss, is associated with low levels of Wnt16 expression whereas bone loss associated with disuse has no effect on Wnt16 expression. In the artificially loaded mouse tibia we observed no loading-related up-regulation of Wnt16 expression but provide evidence that its expression is influenced by estrogen receptor signaling. These findings suggest that while Wnt16 is not an obligatory contributor to regulation of bone mass per se, it potentially plays a role in influencing pathways associated with regulation of bone mass during ageing and estrogen withdrawal. Public Library of Science 2015-10-09 /pmc/articles/PMC4599960/ /pubmed/26451596 http://dx.doi.org/10.1371/journal.pone.0140260 Text en © 2015 Todd 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Todd, Henry
Galea, Gabriel L.
Meakin, Lee B.
Delisser, Peter J.
Lanyon, Lance E.
Windahl, Sara H.
Price, Joanna S.
Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone
title Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone
title_full Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone
title_fullStr Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone
title_full_unstemmed Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone
title_short Wnt16 Is Associated with Age-Related Bone Loss and Estrogen Withdrawal in Murine Bone
title_sort wnt16 is associated with age-related bone loss and estrogen withdrawal in murine bone
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599960/
https://www.ncbi.nlm.nih.gov/pubmed/26451596
http://dx.doi.org/10.1371/journal.pone.0140260
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