Cargando…

Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways

Osteoporosis, a metabolic bone disease, is characterized by an excessive formation and activation of osteoclasts. Anti-catabolic treatment using natural compounds has been proposed as a potential therapeutic strategy against the osteoclast related osteolytic diseases. In this study, the activity of...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhou, Lin, Song, Fangming, Liu, Qian, Yang, Mingli, Zhao, Jinmin, Tan, Renxiang, Xu, Jun, Zhang, Ge, Quinn, Julian M. W., Tickner, Jennifer, Xu, Jiake
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4661856/
https://www.ncbi.nlm.nih.gov/pubmed/26580592
http://dx.doi.org/10.3390/ijms161125998
_version_ 1782403061536260096
author Zhou, Lin
Song, Fangming
Liu, Qian
Yang, Mingli
Zhao, Jinmin
Tan, Renxiang
Xu, Jun
Zhang, Ge
Quinn, Julian M. W.
Tickner, Jennifer
Xu, Jiake
author_facet Zhou, Lin
Song, Fangming
Liu, Qian
Yang, Mingli
Zhao, Jinmin
Tan, Renxiang
Xu, Jun
Zhang, Ge
Quinn, Julian M. W.
Tickner, Jennifer
Xu, Jiake
author_sort Zhou, Lin
collection PubMed
description Osteoporosis, a metabolic bone disease, is characterized by an excessive formation and activation of osteoclasts. Anti-catabolic treatment using natural compounds has been proposed as a potential therapeutic strategy against the osteoclast related osteolytic diseases. In this study, the activity of berberine sulfate (an orally available form of berberine) on osteoclast differentiation and its underlying molecular mechanisms of action were investigated. Using bone marrow macrophages (BMMs) derived osteoclast culture system, we showed that berberine sulfate at the dose of 0.25, 0.5 and 1 μM significantly inhibited the formation of osteoclasts. Notably, berberine sulfate at these doses did not affect the BMM viability. In addition, we observed that berberine sulfate inhibited the expression of osteoclast marker genes, including cathepsin K (Ctsk), nuclear factor of activated T cells cytoplasmic 1 (NFATc1), tartrate resistant acid phosphatase (TRAcP, Acp5) and Vacuolar-type H+-ATPase V0 subunit D2 (V-ATPase d2). Luciferase reporter gene assay and Western blot analysis further revealed that berberine sulfate inhibits receptor for activation of nuclear factor ligand (RANKL)-induced NF-κB and NFAT activity. Taken together, our results suggest that berberine sulfate is a natural compound potentially useful for the treatment of osteoporosis.
format Online
Article
Text
id pubmed-4661856
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-46618562015-12-10 Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways Zhou, Lin Song, Fangming Liu, Qian Yang, Mingli Zhao, Jinmin Tan, Renxiang Xu, Jun Zhang, Ge Quinn, Julian M. W. Tickner, Jennifer Xu, Jiake Int J Mol Sci Article Osteoporosis, a metabolic bone disease, is characterized by an excessive formation and activation of osteoclasts. Anti-catabolic treatment using natural compounds has been proposed as a potential therapeutic strategy against the osteoclast related osteolytic diseases. In this study, the activity of berberine sulfate (an orally available form of berberine) on osteoclast differentiation and its underlying molecular mechanisms of action were investigated. Using bone marrow macrophages (BMMs) derived osteoclast culture system, we showed that berberine sulfate at the dose of 0.25, 0.5 and 1 μM significantly inhibited the formation of osteoclasts. Notably, berberine sulfate at these doses did not affect the BMM viability. In addition, we observed that berberine sulfate inhibited the expression of osteoclast marker genes, including cathepsin K (Ctsk), nuclear factor of activated T cells cytoplasmic 1 (NFATc1), tartrate resistant acid phosphatase (TRAcP, Acp5) and Vacuolar-type H+-ATPase V0 subunit D2 (V-ATPase d2). Luciferase reporter gene assay and Western blot analysis further revealed that berberine sulfate inhibits receptor for activation of nuclear factor ligand (RANKL)-induced NF-κB and NFAT activity. Taken together, our results suggest that berberine sulfate is a natural compound potentially useful for the treatment of osteoporosis. MDPI 2015-11-13 /pmc/articles/PMC4661856/ /pubmed/26580592 http://dx.doi.org/10.3390/ijms161125998 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhou, Lin
Song, Fangming
Liu, Qian
Yang, Mingli
Zhao, Jinmin
Tan, Renxiang
Xu, Jun
Zhang, Ge
Quinn, Julian M. W.
Tickner, Jennifer
Xu, Jiake
Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways
title Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways
title_full Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways
title_fullStr Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways
title_full_unstemmed Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways
title_short Berberine Sulfate Attenuates Osteoclast Differentiation through RANKL Induced NF-κB and NFAT Pathways
title_sort berberine sulfate attenuates osteoclast differentiation through rankl induced nf-κb and nfat pathways
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4661856/
https://www.ncbi.nlm.nih.gov/pubmed/26580592
http://dx.doi.org/10.3390/ijms161125998
work_keys_str_mv AT zhoulin berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT songfangming berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT liuqian berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT yangmingli berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT zhaojinmin berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT tanrenxiang berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT xujun berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT zhangge berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT quinnjulianmw berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT ticknerjennifer berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways
AT xujiake berberinesulfateattenuatesosteoclastdifferentiationthroughranklinducednfkbandnfatpathways