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Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression

Background: Irisin, a novel exercise-induced myokine, was shown to mediate beneficial effects of exercise in osteoporosis. Microgravity is a major threat to bone homeostasis of astronauts during long-term spaceflight, which results in decreased bone formation. Methods: The hind-limb unloading mice m...

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Autores principales: Chen, Zhihao, Zhang, Yan, Zhao, Fan, Yin, Chong, Yang, Chaofei, Wang, Xue, Wu, Zixiang, Liang, Shujing, Li, Dijie, Lin, Xiao, Tian, Ye, Hu, Lifang, Li, Yu, Qian, Airong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7072919/
https://www.ncbi.nlm.nih.gov/pubmed/32070052
http://dx.doi.org/10.3390/ijms21041259
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author Chen, Zhihao
Zhang, Yan
Zhao, Fan
Yin, Chong
Yang, Chaofei
Wang, Xue
Wu, Zixiang
Liang, Shujing
Li, Dijie
Lin, Xiao
Tian, Ye
Hu, Lifang
Li, Yu
Qian, Airong
author_facet Chen, Zhihao
Zhang, Yan
Zhao, Fan
Yin, Chong
Yang, Chaofei
Wang, Xue
Wu, Zixiang
Liang, Shujing
Li, Dijie
Lin, Xiao
Tian, Ye
Hu, Lifang
Li, Yu
Qian, Airong
author_sort Chen, Zhihao
collection PubMed
description Background: Irisin, a novel exercise-induced myokine, was shown to mediate beneficial effects of exercise in osteoporosis. Microgravity is a major threat to bone homeostasis of astronauts during long-term spaceflight, which results in decreased bone formation. Methods: The hind-limb unloading mice model and a random position machine are respectively used to simulate microgravity in vivo and in vitro. Results: We demonstrate that not only are bone formation and osteoblast differentiation decreased, but the expression of fibronectin type III domain-containing 5 (Fdnc5; irisin precursor) is also downregulated under simulated microgravity. Moreover, a lower dose of recombinant irisin (r-irisin) (1 nM) promotes osteogenic marker gene (alkaline phosphatase (Alp), collagen type 1 alpha-1(ColIα1)) expressions, ALP activity, and calcium deposition in primary osteoblasts, with no significant effect on osteoblast proliferation. Furthermore, r-irisin could recover the decrease in osteoblast differentiation induced by simulated microgravity. We also find that r-irisin increases β-catenin expression and partly neutralizes the decrease in β-catenin expression induced by simulated microgravity. In addition, β-catenin overexpression could also in part attenuate osteoblast differentiation reduction induced by simulated microgravity. Conclusions: The present study is the first to show that r-irisin positively regulates osteoblast differentiation under simulated microgravity through increasing β-catenin expression, which may reveal a novel mechanism, and it provides a prevention strategy for bone loss and muscle atrophy induced by microgravity.
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spelling pubmed-70729192020-03-19 Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression Chen, Zhihao Zhang, Yan Zhao, Fan Yin, Chong Yang, Chaofei Wang, Xue Wu, Zixiang Liang, Shujing Li, Dijie Lin, Xiao Tian, Ye Hu, Lifang Li, Yu Qian, Airong Int J Mol Sci Article Background: Irisin, a novel exercise-induced myokine, was shown to mediate beneficial effects of exercise in osteoporosis. Microgravity is a major threat to bone homeostasis of astronauts during long-term spaceflight, which results in decreased bone formation. Methods: The hind-limb unloading mice model and a random position machine are respectively used to simulate microgravity in vivo and in vitro. Results: We demonstrate that not only are bone formation and osteoblast differentiation decreased, but the expression of fibronectin type III domain-containing 5 (Fdnc5; irisin precursor) is also downregulated under simulated microgravity. Moreover, a lower dose of recombinant irisin (r-irisin) (1 nM) promotes osteogenic marker gene (alkaline phosphatase (Alp), collagen type 1 alpha-1(ColIα1)) expressions, ALP activity, and calcium deposition in primary osteoblasts, with no significant effect on osteoblast proliferation. Furthermore, r-irisin could recover the decrease in osteoblast differentiation induced by simulated microgravity. We also find that r-irisin increases β-catenin expression and partly neutralizes the decrease in β-catenin expression induced by simulated microgravity. In addition, β-catenin overexpression could also in part attenuate osteoblast differentiation reduction induced by simulated microgravity. Conclusions: The present study is the first to show that r-irisin positively regulates osteoblast differentiation under simulated microgravity through increasing β-catenin expression, which may reveal a novel mechanism, and it provides a prevention strategy for bone loss and muscle atrophy induced by microgravity. MDPI 2020-02-13 /pmc/articles/PMC7072919/ /pubmed/32070052 http://dx.doi.org/10.3390/ijms21041259 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chen, Zhihao
Zhang, Yan
Zhao, Fan
Yin, Chong
Yang, Chaofei
Wang, Xue
Wu, Zixiang
Liang, Shujing
Li, Dijie
Lin, Xiao
Tian, Ye
Hu, Lifang
Li, Yu
Qian, Airong
Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression
title Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression
title_full Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression
title_fullStr Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression
title_full_unstemmed Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression
title_short Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression
title_sort recombinant irisin prevents the reduction of osteoblast differentiation induced by stimulated microgravity through increasing β-catenin expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7072919/
https://www.ncbi.nlm.nih.gov/pubmed/32070052
http://dx.doi.org/10.3390/ijms21041259
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