Cargando…

Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways

Asiatic acid is a triterpenoid compound extracted from a medicinal plant Centella asiatica. It has been used as a highly efficient compound for the treatment of cancer and hyperlipidemia, as well as possessing potential antiinflammatory properties. However, its effects on bone metabolism and osteopo...

Descripción completa

Detalles Bibliográficos
Autores principales: Hong, Guoju, Zhou, Lin, Han, Xiaorui, Sun, Ping, Chen, Zhenqiu, He, Wei, Tickner, Jennifer, Chen, Leilei, Shi, Xuguang, Xu, Jiake
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7120530/
https://www.ncbi.nlm.nih.gov/pubmed/32292339
http://dx.doi.org/10.3389/fphar.2020.00331
_version_ 1783514992706846720
author Hong, Guoju
Zhou, Lin
Han, Xiaorui
Sun, Ping
Chen, Zhenqiu
He, Wei
Tickner, Jennifer
Chen, Leilei
Shi, Xuguang
Xu, Jiake
author_facet Hong, Guoju
Zhou, Lin
Han, Xiaorui
Sun, Ping
Chen, Zhenqiu
He, Wei
Tickner, Jennifer
Chen, Leilei
Shi, Xuguang
Xu, Jiake
author_sort Hong, Guoju
collection PubMed
description Asiatic acid is a triterpenoid compound extracted from a medicinal plant Centella asiatica. It has been used as a highly efficient compound for the treatment of cancer and hyperlipidemia, as well as possessing potential antiinflammatory properties. However, its effects on bone metabolism and osteoporosis haven’t been reported. The purpose of our research were to reveal the biomolecular effects of asiatic acid on osteoclasts, and its underlying molecular mechanisms regulating its effects on receptor activator of NF-κB ligand (RANKL)-induced signaling pathways. We found that asiatic acid inhibited multinucleated tartrate-resistant acid phosphatase (TRAcP)-positive osteoclast differentiation and osteoclast induced bone loss. Real time PCR showed that asiatic acid reduced the expression of down-cascade target genes including Ctsk, Nfatc1, Calcr, and Atp6v0d2. Western blot and luciferase reporter gene assays revealed that asiatic acid inhibits RANKL mediated NF-κB and NFATc1 signalings. Further, in vivo study demonstrated asiatic acid attenuates estrogen deficiency-induced bone loss in ovariectomized mice. MicroCT and histology analyses revealed that osteoclast numbers were significantly suppressed in asiatic acid treated groups. Furthermore, serum levels of TRAcP and CTX-1 were downregulated in treated groups. Taken together, our data show that asiatic acid can inhibit osteoclastic formation and reduce OVX-induced bone resorption through RANKL-activated NF-κB or NFATc1 signaling, suggesting that asiatic acid may be a potential and effective natural compound for the therapy of excessive RANKL-related osteolytic diseases.
format Online
Article
Text
id pubmed-7120530
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-71205302020-04-14 Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways Hong, Guoju Zhou, Lin Han, Xiaorui Sun, Ping Chen, Zhenqiu He, Wei Tickner, Jennifer Chen, Leilei Shi, Xuguang Xu, Jiake Front Pharmacol Pharmacology Asiatic acid is a triterpenoid compound extracted from a medicinal plant Centella asiatica. It has been used as a highly efficient compound for the treatment of cancer and hyperlipidemia, as well as possessing potential antiinflammatory properties. However, its effects on bone metabolism and osteoporosis haven’t been reported. The purpose of our research were to reveal the biomolecular effects of asiatic acid on osteoclasts, and its underlying molecular mechanisms regulating its effects on receptor activator of NF-κB ligand (RANKL)-induced signaling pathways. We found that asiatic acid inhibited multinucleated tartrate-resistant acid phosphatase (TRAcP)-positive osteoclast differentiation and osteoclast induced bone loss. Real time PCR showed that asiatic acid reduced the expression of down-cascade target genes including Ctsk, Nfatc1, Calcr, and Atp6v0d2. Western blot and luciferase reporter gene assays revealed that asiatic acid inhibits RANKL mediated NF-κB and NFATc1 signalings. Further, in vivo study demonstrated asiatic acid attenuates estrogen deficiency-induced bone loss in ovariectomized mice. MicroCT and histology analyses revealed that osteoclast numbers were significantly suppressed in asiatic acid treated groups. Furthermore, serum levels of TRAcP and CTX-1 were downregulated in treated groups. Taken together, our data show that asiatic acid can inhibit osteoclastic formation and reduce OVX-induced bone resorption through RANKL-activated NF-κB or NFATc1 signaling, suggesting that asiatic acid may be a potential and effective natural compound for the therapy of excessive RANKL-related osteolytic diseases. Frontiers Media S.A. 2020-03-27 /pmc/articles/PMC7120530/ /pubmed/32292339 http://dx.doi.org/10.3389/fphar.2020.00331 Text en Copyright © 2020 Hong, Zhou, Han, Sun, Chen, He, Tickner, Chen, Shi and Xu http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Hong, Guoju
Zhou, Lin
Han, Xiaorui
Sun, Ping
Chen, Zhenqiu
He, Wei
Tickner, Jennifer
Chen, Leilei
Shi, Xuguang
Xu, Jiake
Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways
title Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways
title_full Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways
title_fullStr Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways
title_full_unstemmed Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways
title_short Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways
title_sort asiatic acid inhibits ovx-induced osteoporosis and osteoclastogenesis via regulating rankl-mediated nf-κb and nfatc1 signaling pathways
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7120530/
https://www.ncbi.nlm.nih.gov/pubmed/32292339
http://dx.doi.org/10.3389/fphar.2020.00331
work_keys_str_mv AT hongguoju asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT zhoulin asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT hanxiaorui asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT sunping asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT chenzhenqiu asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT hewei asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT ticknerjennifer asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT chenleilei asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT shixuguang asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways
AT xujiake asiaticacidinhibitsovxinducedosteoporosisandosteoclastogenesisviaregulatingranklmediatednfkbandnfatc1signalingpathways