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Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis

The widespread use of therapeutic glucocorticoids has increased the incidences of glucocorticoid-induced osteoporosis (GIOP). Oxidative stress and mitochondrial dysfunction are major causes of GIOP; therefore, alleviation of excess oxidative stress in osteoblasts is a potential therapeutic strategy...

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Detalles Bibliográficos
Autores principales: Yao, Xue-wei, Liu, Zhi-yi, Ma, Neng-feng, Jiang, Wen-kai, Zhou, Zhi, Chen, Bing, Guan, Wen-gang, Yan, Jun-jie, Yang, Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9908349/
https://www.ncbi.nlm.nih.gov/pubmed/36778207
http://dx.doi.org/10.1155/2023/3602962
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author Yao, Xue-wei
Liu, Zhi-yi
Ma, Neng-feng
Jiang, Wen-kai
Zhou, Zhi
Chen, Bing
Guan, Wen-gang
Yan, Jun-jie
Yang, Min
author_facet Yao, Xue-wei
Liu, Zhi-yi
Ma, Neng-feng
Jiang, Wen-kai
Zhou, Zhi
Chen, Bing
Guan, Wen-gang
Yan, Jun-jie
Yang, Min
author_sort Yao, Xue-wei
collection PubMed
description The widespread use of therapeutic glucocorticoids has increased the incidences of glucocorticoid-induced osteoporosis (GIOP). Oxidative stress and mitochondrial dysfunction are major causes of GIOP; therefore, alleviation of excess oxidative stress in osteoblasts is a potential therapeutic strategy for osteoporosis. Exosomes derived from ADSCs (ADSCs-Exos), as novel cell-free therapeutics, can modulate various biological processes, such as immunomodulation, reduce oxidative damage, and promote tissue repair as well as regeneration. In this study, ADSCs-Exos restored the viability and osteogenic potential of MC3T3-E1 cells by attenuating apoptosis, oxidative damage, intracellular ROS generation, and mitochondrial dysfunction. Moreover, after pretreatment with ADSCs-Exos, Nrf2 expressions were upregulated in Dex-stimulated osteoblasts. Inhibitory assays showed that silencing Nrf2 partially eliminated the protective effects of ADSCs-Exos. The rat model assays confirmed that ADSCs-Exos alleviated the Dex-induced increase in oxidation levels, restored bone mass of the distal femur, and increased the expressions of Nrf2 and osteogenic markers in bone tissues. Thus, ADSCs-Exos alleviated apoptosis and oxidative stress by regulating Nrf2/HO-1 expressions after Dex and prevented the development of GIOP in vivo.
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spelling pubmed-99083492023-02-09 Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis Yao, Xue-wei Liu, Zhi-yi Ma, Neng-feng Jiang, Wen-kai Zhou, Zhi Chen, Bing Guan, Wen-gang Yan, Jun-jie Yang, Min Oxid Med Cell Longev Research Article The widespread use of therapeutic glucocorticoids has increased the incidences of glucocorticoid-induced osteoporosis (GIOP). Oxidative stress and mitochondrial dysfunction are major causes of GIOP; therefore, alleviation of excess oxidative stress in osteoblasts is a potential therapeutic strategy for osteoporosis. Exosomes derived from ADSCs (ADSCs-Exos), as novel cell-free therapeutics, can modulate various biological processes, such as immunomodulation, reduce oxidative damage, and promote tissue repair as well as regeneration. In this study, ADSCs-Exos restored the viability and osteogenic potential of MC3T3-E1 cells by attenuating apoptosis, oxidative damage, intracellular ROS generation, and mitochondrial dysfunction. Moreover, after pretreatment with ADSCs-Exos, Nrf2 expressions were upregulated in Dex-stimulated osteoblasts. Inhibitory assays showed that silencing Nrf2 partially eliminated the protective effects of ADSCs-Exos. The rat model assays confirmed that ADSCs-Exos alleviated the Dex-induced increase in oxidation levels, restored bone mass of the distal femur, and increased the expressions of Nrf2 and osteogenic markers in bone tissues. Thus, ADSCs-Exos alleviated apoptosis and oxidative stress by regulating Nrf2/HO-1 expressions after Dex and prevented the development of GIOP in vivo. Hindawi 2023-02-01 /pmc/articles/PMC9908349/ /pubmed/36778207 http://dx.doi.org/10.1155/2023/3602962 Text en Copyright © 2023 Xue-wei Yao et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Yao, Xue-wei
Liu, Zhi-yi
Ma, Neng-feng
Jiang, Wen-kai
Zhou, Zhi
Chen, Bing
Guan, Wen-gang
Yan, Jun-jie
Yang, Min
Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis
title Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis
title_full Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis
title_fullStr Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis
title_full_unstemmed Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis
title_short Exosomes from Adipose-Derived Stem Cells Alleviate Dexamethasone-Induced Bone Loss by Regulating the Nrf2/HO-1 Axis
title_sort exosomes from adipose-derived stem cells alleviate dexamethasone-induced bone loss by regulating the nrf2/ho-1 axis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9908349/
https://www.ncbi.nlm.nih.gov/pubmed/36778207
http://dx.doi.org/10.1155/2023/3602962
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