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Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling

OBJECTIVES: Intracellular reactive oxygen species (ROS) induced by receptor activator of NF‐kB ligand (RANKL) has been proven to be a critical factor in the development of osteoclasts. This study aimed to prove that schisandrin A (Sch), a novel anti‐oxidant compound, is able to suppress osteoclastog...

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Autores principales: Ni, Shuo, Qian, Zhi, Yuan, Yin, Li, Dejian, Zhong, Zeyuan, Ghorbani, Farnaz, Zhang, Xu, Zhang, Fangxue, Zhang, Zhenhua, Liu, Zichen, Yu, Baoqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7574870/
https://www.ncbi.nlm.nih.gov/pubmed/32871020
http://dx.doi.org/10.1111/cpr.12882
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author Ni, Shuo
Qian, Zhi
Yuan, Yin
Li, Dejian
Zhong, Zeyuan
Ghorbani, Farnaz
Zhang, Xu
Zhang, Fangxue
Zhang, Zhenhua
Liu, Zichen
Yu, Baoqing
author_facet Ni, Shuo
Qian, Zhi
Yuan, Yin
Li, Dejian
Zhong, Zeyuan
Ghorbani, Farnaz
Zhang, Xu
Zhang, Fangxue
Zhang, Zhenhua
Liu, Zichen
Yu, Baoqing
author_sort Ni, Shuo
collection PubMed
description OBJECTIVES: Intracellular reactive oxygen species (ROS) induced by receptor activator of NF‐kB ligand (RANKL) has been proven to be a critical factor in the development of osteoclasts. This study aimed to prove that schisandrin A (Sch), a novel anti‐oxidant compound, is able to suppress osteoclastogenesis and prevent bone loss in ovariectomized (OVX) mice by suppressing ROS via nuclear factor erythroid 2‐related factor (Nrf2). MATERIAL AND METHODS: Micro‐CT was used to detect bone formation. The effects of Sch on receptor activator of nuclear factor‐κB (NF‐κB) ligand (RANKL)‐induced reactive oxygen species (ROS) were measured by dihydroethidium (DHE) staining in vivo and 2',7'‐dichlorodihydrofluorescein diacetate (DCFH‐DA) staining in vitro. Immunofluorescence staining was used to detect the expression of Nrf2 in vivo. siRNA was used to evaluate the effect of Nrf2 in osteoclastogenesis. RESULTS: Sch suppresses RANKL‐induced ROS production by regulating nuclear factor erythroid 2‐related factor (Nrf2) in vitro and vivo. Mechanistically, Sch enhances the expression of Nrf2 by regulating the degradation of Nrf2. Further, Sch suppresses phosphorylation of P65 and its nuclear translocation, as well as the degradation of IκBα. Collectively, our findings reveal that Sch protects against OVX‐induced bone loss by suppressing ROS via Nrf2. CONCLUSIONS: Our results showed the potential of anti‐oxidant compound schisandrin A in the treatment of osteoporosis, highlighting Nrf2 as a novel promising target in osteoclast‐related disease.
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spelling pubmed-75748702020-10-23 Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling Ni, Shuo Qian, Zhi Yuan, Yin Li, Dejian Zhong, Zeyuan Ghorbani, Farnaz Zhang, Xu Zhang, Fangxue Zhang, Zhenhua Liu, Zichen Yu, Baoqing Cell Prolif Original Articles OBJECTIVES: Intracellular reactive oxygen species (ROS) induced by receptor activator of NF‐kB ligand (RANKL) has been proven to be a critical factor in the development of osteoclasts. This study aimed to prove that schisandrin A (Sch), a novel anti‐oxidant compound, is able to suppress osteoclastogenesis and prevent bone loss in ovariectomized (OVX) mice by suppressing ROS via nuclear factor erythroid 2‐related factor (Nrf2). MATERIAL AND METHODS: Micro‐CT was used to detect bone formation. The effects of Sch on receptor activator of nuclear factor‐κB (NF‐κB) ligand (RANKL)‐induced reactive oxygen species (ROS) were measured by dihydroethidium (DHE) staining in vivo and 2',7'‐dichlorodihydrofluorescein diacetate (DCFH‐DA) staining in vitro. Immunofluorescence staining was used to detect the expression of Nrf2 in vivo. siRNA was used to evaluate the effect of Nrf2 in osteoclastogenesis. RESULTS: Sch suppresses RANKL‐induced ROS production by regulating nuclear factor erythroid 2‐related factor (Nrf2) in vitro and vivo. Mechanistically, Sch enhances the expression of Nrf2 by regulating the degradation of Nrf2. Further, Sch suppresses phosphorylation of P65 and its nuclear translocation, as well as the degradation of IκBα. Collectively, our findings reveal that Sch protects against OVX‐induced bone loss by suppressing ROS via Nrf2. CONCLUSIONS: Our results showed the potential of anti‐oxidant compound schisandrin A in the treatment of osteoporosis, highlighting Nrf2 as a novel promising target in osteoclast‐related disease. John Wiley and Sons Inc. 2020-09-01 /pmc/articles/PMC7574870/ /pubmed/32871020 http://dx.doi.org/10.1111/cpr.12882 Text en © 2020 The Authors. Cell Proliferation published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Ni, Shuo
Qian, Zhi
Yuan, Yin
Li, Dejian
Zhong, Zeyuan
Ghorbani, Farnaz
Zhang, Xu
Zhang, Fangxue
Zhang, Zhenhua
Liu, Zichen
Yu, Baoqing
Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling
title Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling
title_full Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling
title_fullStr Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling
title_full_unstemmed Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling
title_short Schisandrin A restrains osteoclastogenesis by inhibiting reactive oxygen species and activating Nrf2 signalling
title_sort schisandrin a restrains osteoclastogenesis by inhibiting reactive oxygen species and activating nrf2 signalling
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7574870/
https://www.ncbi.nlm.nih.gov/pubmed/32871020
http://dx.doi.org/10.1111/cpr.12882
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