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Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity

Chronic high-fat diet (HFD) consumption not only promotes obesity and insulin resistance, but also causes bone loss through mechanisms that are not well understood. Here, we fed wild-type CD-1 mice either chow or a HFD (43% of energy from fat) for 18 weeks; HFD-fed mice exhibited decreased trabecula...

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Autores principales: Kim, Sarah, Henneicke, Holger, Cavanagh, Lauryn L., Macfarlane, Eugenie, Thai, Lee Joanne, Foong, Daphne, Gasparini, Sylvia J., Fong-Yee, Colette, Swarbrick, Michael M., Seibel, Markus J., Zhou, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8408138/
https://www.ncbi.nlm.nih.gov/pubmed/34465731
http://dx.doi.org/10.1038/s41413-021-00159-9
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author Kim, Sarah
Henneicke, Holger
Cavanagh, Lauryn L.
Macfarlane, Eugenie
Thai, Lee Joanne
Foong, Daphne
Gasparini, Sylvia J.
Fong-Yee, Colette
Swarbrick, Michael M.
Seibel, Markus J.
Zhou, Hong
author_facet Kim, Sarah
Henneicke, Holger
Cavanagh, Lauryn L.
Macfarlane, Eugenie
Thai, Lee Joanne
Foong, Daphne
Gasparini, Sylvia J.
Fong-Yee, Colette
Swarbrick, Michael M.
Seibel, Markus J.
Zhou, Hong
author_sort Kim, Sarah
collection PubMed
description Chronic high-fat diet (HFD) consumption not only promotes obesity and insulin resistance, but also causes bone loss through mechanisms that are not well understood. Here, we fed wild-type CD-1 mice either chow or a HFD (43% of energy from fat) for 18 weeks; HFD-fed mice exhibited decreased trabecular volume (−28%) and cortical thickness (−14%) compared to chow-fed mice. In HFD-fed mice, bone loss was due to reduced bone formation and mineral apposition, without obvious effects on bone resorption. HFD feeding also increased skeletal expression of sclerostin and caused deterioration of the osteocyte lacunocanalicular network (LCN). In mice fed HFD, skeletal glucocorticoid signaling was activated relative to chow-fed mice, independent of serum corticosterone concentrations. We therefore examined whether skeletal glucocorticoid signaling was necessary for HFD-induced bone loss, using transgenic mice lacking glucocorticoid signaling in osteoblasts and osteocytes (HSD2(OB/OCY)-tg mice). In HSD2(OB/OCY)-tg mice, bone formation and mineral apposition rates were not suppressed by HFD, and bone loss was significantly attenuated. Interestingly, in HSD2(OB/OCY)-tg mice fed HFD, both Wnt signaling (less sclerostin induction, increased β-catenin expression) and glucose uptake were significantly increased, relative to diet- and genotype-matched controls. The osteocyte LCN remained intact in HFD-fed HSD2(OB/OCY)-tg mice. When fed a HFD, HSD2(OB/OCY)-tg mice also increased their energy expenditure and were protected against obesity, insulin resistance, and dyslipidemia. Therefore, glucocorticoid signaling in osteoblasts and osteocytes contributes to the suppression of bone formation in HFD-fed mice. Skeletal glucocorticoid signaling is also an important determinant of glucose uptake in bone, which influences the whole-body metabolic response to HFD.
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spelling pubmed-84081382021-09-16 Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity Kim, Sarah Henneicke, Holger Cavanagh, Lauryn L. Macfarlane, Eugenie Thai, Lee Joanne Foong, Daphne Gasparini, Sylvia J. Fong-Yee, Colette Swarbrick, Michael M. Seibel, Markus J. Zhou, Hong Bone Res Article Chronic high-fat diet (HFD) consumption not only promotes obesity and insulin resistance, but also causes bone loss through mechanisms that are not well understood. Here, we fed wild-type CD-1 mice either chow or a HFD (43% of energy from fat) for 18 weeks; HFD-fed mice exhibited decreased trabecular volume (−28%) and cortical thickness (−14%) compared to chow-fed mice. In HFD-fed mice, bone loss was due to reduced bone formation and mineral apposition, without obvious effects on bone resorption. HFD feeding also increased skeletal expression of sclerostin and caused deterioration of the osteocyte lacunocanalicular network (LCN). In mice fed HFD, skeletal glucocorticoid signaling was activated relative to chow-fed mice, independent of serum corticosterone concentrations. We therefore examined whether skeletal glucocorticoid signaling was necessary for HFD-induced bone loss, using transgenic mice lacking glucocorticoid signaling in osteoblasts and osteocytes (HSD2(OB/OCY)-tg mice). In HSD2(OB/OCY)-tg mice, bone formation and mineral apposition rates were not suppressed by HFD, and bone loss was significantly attenuated. Interestingly, in HSD2(OB/OCY)-tg mice fed HFD, both Wnt signaling (less sclerostin induction, increased β-catenin expression) and glucose uptake were significantly increased, relative to diet- and genotype-matched controls. The osteocyte LCN remained intact in HFD-fed HSD2(OB/OCY)-tg mice. When fed a HFD, HSD2(OB/OCY)-tg mice also increased their energy expenditure and were protected against obesity, insulin resistance, and dyslipidemia. Therefore, glucocorticoid signaling in osteoblasts and osteocytes contributes to the suppression of bone formation in HFD-fed mice. Skeletal glucocorticoid signaling is also an important determinant of glucose uptake in bone, which influences the whole-body metabolic response to HFD. Nature Publishing Group UK 2021-09-01 /pmc/articles/PMC8408138/ /pubmed/34465731 http://dx.doi.org/10.1038/s41413-021-00159-9 Text en © The Author(s) 2021 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Kim, Sarah
Henneicke, Holger
Cavanagh, Lauryn L.
Macfarlane, Eugenie
Thai, Lee Joanne
Foong, Daphne
Gasparini, Sylvia J.
Fong-Yee, Colette
Swarbrick, Michael M.
Seibel, Markus J.
Zhou, Hong
Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity
title Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity
title_full Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity
title_fullStr Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity
title_full_unstemmed Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity
title_short Osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity
title_sort osteoblastic glucocorticoid signaling exacerbates high-fat-diet- induced bone loss and obesity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8408138/
https://www.ncbi.nlm.nih.gov/pubmed/34465731
http://dx.doi.org/10.1038/s41413-021-00159-9
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