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Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway

Osteoporosis is a chronic inflammatory disease that severely affects quality of life. Cornus officinalis is a Chinese herbal medicine with various bioactive ingredients, among which morroniside is its signature ingredient. Although anti-bone resorption drugs are the main treatment for bone loss, pro...

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Autores principales: Xiao, Jirimutu, Han, Qiuge, Yu, Ziceng, Liu, Mengmin, Sun, Jie, Wu, Mao, Yin, Heng, Fu, Jingyue, Guo, Yang, Wang, Lining, Ma, Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609728/
https://www.ncbi.nlm.nih.gov/pubmed/37895909
http://dx.doi.org/10.3390/ph16101438
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author Xiao, Jirimutu
Han, Qiuge
Yu, Ziceng
Liu, Mengmin
Sun, Jie
Wu, Mao
Yin, Heng
Fu, Jingyue
Guo, Yang
Wang, Lining
Ma, Yong
author_facet Xiao, Jirimutu
Han, Qiuge
Yu, Ziceng
Liu, Mengmin
Sun, Jie
Wu, Mao
Yin, Heng
Fu, Jingyue
Guo, Yang
Wang, Lining
Ma, Yong
author_sort Xiao, Jirimutu
collection PubMed
description Osteoporosis is a chronic inflammatory disease that severely affects quality of life. Cornus officinalis is a Chinese herbal medicine with various bioactive ingredients, among which morroniside is its signature ingredient. Although anti-bone resorption drugs are the main treatment for bone loss, promoting bone anabolism is more suitable for increasing bone mass. Therefore, identifying changes in bone formation induced by morroniside may be conducive to developing effective intervention methods. In this study, morroniside was found to promote the osteogenic differentiation of bone marrow stem cells (BMSCs) and inhibit inflammation-induced bone loss in an in vivo mouse model of inflammatory bone loss. Morroniside enhanced bone density and bone microstructure, and inhibited the expression of IL6, IL1β, and ALP in serum (p < 0.05). Furthermore, in in vitro experiments, BMSCs exposed to 0–256 μM morroniside did not show cytotoxicity. Morroniside inhibited the expression of IL6 and IL1β and promoted the expression of the osteogenic transcription factors Runx2 and OCN. Furthermore, morroniside promoted osteocalcin and Runx2 expression and inhibited TRAF6-mediated NF-κB and MAPK signaling, as well as osteoblast growth and NF-κB nuclear transposition. Thus, morroniside promoted osteogenic differentiation of BMSCs, slowed the occurrence of the inflammatory response, and inhibited bone loss in mice with inflammatory bone loss.
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spelling pubmed-106097282023-10-28 Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway Xiao, Jirimutu Han, Qiuge Yu, Ziceng Liu, Mengmin Sun, Jie Wu, Mao Yin, Heng Fu, Jingyue Guo, Yang Wang, Lining Ma, Yong Pharmaceuticals (Basel) Article Osteoporosis is a chronic inflammatory disease that severely affects quality of life. Cornus officinalis is a Chinese herbal medicine with various bioactive ingredients, among which morroniside is its signature ingredient. Although anti-bone resorption drugs are the main treatment for bone loss, promoting bone anabolism is more suitable for increasing bone mass. Therefore, identifying changes in bone formation induced by morroniside may be conducive to developing effective intervention methods. In this study, morroniside was found to promote the osteogenic differentiation of bone marrow stem cells (BMSCs) and inhibit inflammation-induced bone loss in an in vivo mouse model of inflammatory bone loss. Morroniside enhanced bone density and bone microstructure, and inhibited the expression of IL6, IL1β, and ALP in serum (p < 0.05). Furthermore, in in vitro experiments, BMSCs exposed to 0–256 μM morroniside did not show cytotoxicity. Morroniside inhibited the expression of IL6 and IL1β and promoted the expression of the osteogenic transcription factors Runx2 and OCN. Furthermore, morroniside promoted osteocalcin and Runx2 expression and inhibited TRAF6-mediated NF-κB and MAPK signaling, as well as osteoblast growth and NF-κB nuclear transposition. Thus, morroniside promoted osteogenic differentiation of BMSCs, slowed the occurrence of the inflammatory response, and inhibited bone loss in mice with inflammatory bone loss. MDPI 2023-10-10 /pmc/articles/PMC10609728/ /pubmed/37895909 http://dx.doi.org/10.3390/ph16101438 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xiao, Jirimutu
Han, Qiuge
Yu, Ziceng
Liu, Mengmin
Sun, Jie
Wu, Mao
Yin, Heng
Fu, Jingyue
Guo, Yang
Wang, Lining
Ma, Yong
Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway
title Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway
title_full Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway
title_fullStr Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway
title_full_unstemmed Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway
title_short Morroniside Inhibits Inflammatory Bone Loss through the TRAF6-Mediated NF-κB/MAPK Signalling Pathway
title_sort morroniside inhibits inflammatory bone loss through the traf6-mediated nf-κb/mapk signalling pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609728/
https://www.ncbi.nlm.nih.gov/pubmed/37895909
http://dx.doi.org/10.3390/ph16101438
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