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Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes

Insufficient insulin production or action in diabetic states is associated with growth retardation and impaired bone healing, while the underling mechanisms are unknown. In this study, we sought to define the role of insulin signaling in the growth plate. Insulin treatment of embryonic metatarsal bo...

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Autores principales: Zhang, Fengjie, He, Qiling, Tsang, Wing Pui, Garvey, W Timothy, Chan, Wai Yee, Wan, Chao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4472128/
https://www.ncbi.nlm.nih.gov/pubmed/26273523
http://dx.doi.org/10.1038/boneres.2014.12
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author Zhang, Fengjie
He, Qiling
Tsang, Wing Pui
Garvey, W Timothy
Chan, Wai Yee
Wan, Chao
author_facet Zhang, Fengjie
He, Qiling
Tsang, Wing Pui
Garvey, W Timothy
Chan, Wai Yee
Wan, Chao
author_sort Zhang, Fengjie
collection PubMed
description Insufficient insulin production or action in diabetic states is associated with growth retardation and impaired bone healing, while the underling mechanisms are unknown. In this study, we sought to define the role of insulin signaling in the growth plate. Insulin treatment of embryonic metatarsal bones from wild-type mice increased chondrocyte proliferation. Mice lacking insulin receptor (IR) selectively in chondrocytes (CartIR(−/−)) had no discernable differences in total femoral length compared to control littermates. However, CartIR(−/−) mice exhibited an increase in chondrocyte numbers in the growth plate than that of the controls. Chondrocytes lacking IR had elevated insulin-like growth factor (IGF)-1R mRNA and protein levels. Subsequently, IGF-1 induced phosphorylation of Akt and ERK was enhanced, while this action was eliminated when the cells were treated with IGF-1R inhibitor Picropodophyllin. Deletion of the IR impaired chondrogenic differentiation, and the effect could not be restored by treatment of insulin, but partially rescued by IGF-1 treatment. Intriguingly, the size of hypertrophic chondrocytes was smaller in CartIR(−/−) mice when compared with that of the control littermates, which was associated with upregulation of tuberous sclerosis complex 2 (TSC2). These results suggest that deletion of the IR in chondrocytes sensitizes IGF-1R signaling and action, IR and IGF-1R coordinate to regulate the proliferation, differentiation and hypertrophy of growth plate chondrocytes.
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spelling pubmed-44721282015-08-13 Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes Zhang, Fengjie He, Qiling Tsang, Wing Pui Garvey, W Timothy Chan, Wai Yee Wan, Chao Bone Res Article Insufficient insulin production or action in diabetic states is associated with growth retardation and impaired bone healing, while the underling mechanisms are unknown. In this study, we sought to define the role of insulin signaling in the growth plate. Insulin treatment of embryonic metatarsal bones from wild-type mice increased chondrocyte proliferation. Mice lacking insulin receptor (IR) selectively in chondrocytes (CartIR(−/−)) had no discernable differences in total femoral length compared to control littermates. However, CartIR(−/−) mice exhibited an increase in chondrocyte numbers in the growth plate than that of the controls. Chondrocytes lacking IR had elevated insulin-like growth factor (IGF)-1R mRNA and protein levels. Subsequently, IGF-1 induced phosphorylation of Akt and ERK was enhanced, while this action was eliminated when the cells were treated with IGF-1R inhibitor Picropodophyllin. Deletion of the IR impaired chondrogenic differentiation, and the effect could not be restored by treatment of insulin, but partially rescued by IGF-1 treatment. Intriguingly, the size of hypertrophic chondrocytes was smaller in CartIR(−/−) mice when compared with that of the control littermates, which was associated with upregulation of tuberous sclerosis complex 2 (TSC2). These results suggest that deletion of the IR in chondrocytes sensitizes IGF-1R signaling and action, IR and IGF-1R coordinate to regulate the proliferation, differentiation and hypertrophy of growth plate chondrocytes. Nature Publishing Group 2014-07-01 /pmc/articles/PMC4472128/ /pubmed/26273523 http://dx.doi.org/10.1038/boneres.2014.12 Text en Copyright © 2014 Sichuan University http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Article
Zhang, Fengjie
He, Qiling
Tsang, Wing Pui
Garvey, W Timothy
Chan, Wai Yee
Wan, Chao
Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes
title Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes
title_full Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes
title_fullStr Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes
title_full_unstemmed Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes
title_short Insulin exerts direct, IGF-1 independent actions in growth plate chondrocytes
title_sort insulin exerts direct, igf-1 independent actions in growth plate chondrocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4472128/
https://www.ncbi.nlm.nih.gov/pubmed/26273523
http://dx.doi.org/10.1038/boneres.2014.12
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