Cargando…

Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents

BACKGROUND: Osteoporosis is the most prevalent skeletal disorder, characterized by a low bone mineral density (BMD) and bone structural deterioration, leading to bone fragility fractures. Accelerated bone resorption by osteoclasts has been established as a principal mechanism in osteoporosis. Howeve...

Descripción completa

Detalles Bibliográficos
Autores principales: Yamaza, Takayoshi, Miura, Yasuo, Bi, Yanming, Liu, Yongzhong, Akiyama, Kentaro, Sonoyama, Wataru, Patel, Voymesh, Gutkind, Silvio, Young, Marian, Gronthos, Stan, Le, Anh, Wang, Cun-Yu, Chen, WanJun, Shi, Songtao
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2440798/
https://www.ncbi.nlm.nih.gov/pubmed/18612428
http://dx.doi.org/10.1371/journal.pone.0002615
_version_ 1782156577703198720
author Yamaza, Takayoshi
Miura, Yasuo
Bi, Yanming
Liu, Yongzhong
Akiyama, Kentaro
Sonoyama, Wataru
Patel, Voymesh
Gutkind, Silvio
Young, Marian
Gronthos, Stan
Le, Anh
Wang, Cun-Yu
Chen, WanJun
Shi, Songtao
author_facet Yamaza, Takayoshi
Miura, Yasuo
Bi, Yanming
Liu, Yongzhong
Akiyama, Kentaro
Sonoyama, Wataru
Patel, Voymesh
Gutkind, Silvio
Young, Marian
Gronthos, Stan
Le, Anh
Wang, Cun-Yu
Chen, WanJun
Shi, Songtao
author_sort Yamaza, Takayoshi
collection PubMed
description BACKGROUND: Osteoporosis is the most prevalent skeletal disorder, characterized by a low bone mineral density (BMD) and bone structural deterioration, leading to bone fragility fractures. Accelerated bone resorption by osteoclasts has been established as a principal mechanism in osteoporosis. However, recent experimental evidences suggest that inappropriate apoptosis of osteoblasts/osteocytes accounts for, at least in part, the imbalance in bone remodeling as occurs in osteoporosis. The aim of this study is to examine whether aspirin, which has been reported as an effective drug improving bone mineral density in human epidemiology studies, regulates the balance between bone resorption and bone formation at stem cell levels. METHODS AND FINDINGS: We found that T cell-mediated bone marrow mesenchymal stem cell (BMMSC) impairment plays a crucial role in ovariectomized-induced osteoporosis. Ex vivo mechanistic studies revealed that T cell-mediated BMMSC impairment was mainly attributed to the apoptosis of BMMSCs via the Fas/Fas ligand pathway. To explore potential of using pharmacologic stem cell based intervention as an approach for osteoporosis treatment, we selected ovariectomy (OVX)-induced ostoeporosis mouse model to examine feasibility and mechanism of aspirin-mediated therapy for osteoporosis. We found that aspirin can inhibit T cell activation and Fas ligand induced BMMSC apoptosis in vitro. Further, we revealed that aspirin increases osteogenesis of BMMSCs by aiming at telomerase activity and inhibits osteoclast activity in OVX mice, leading to ameliorating bone density. CONCLUSION: Our findings have revealed a novel osteoporosis mechanism in which activated T cells induce BMMSC apoptosis via Fas/Fas ligand pathway and suggested that pharmacologic stem cell based intervention by aspirin may be a new alternative in osteoporosis treatment including activated osteoblasts and inhibited osteoclasts.
format Text
id pubmed-2440798
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-24407982008-07-09 Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents Yamaza, Takayoshi Miura, Yasuo Bi, Yanming Liu, Yongzhong Akiyama, Kentaro Sonoyama, Wataru Patel, Voymesh Gutkind, Silvio Young, Marian Gronthos, Stan Le, Anh Wang, Cun-Yu Chen, WanJun Shi, Songtao PLoS One Research Article BACKGROUND: Osteoporosis is the most prevalent skeletal disorder, characterized by a low bone mineral density (BMD) and bone structural deterioration, leading to bone fragility fractures. Accelerated bone resorption by osteoclasts has been established as a principal mechanism in osteoporosis. However, recent experimental evidences suggest that inappropriate apoptosis of osteoblasts/osteocytes accounts for, at least in part, the imbalance in bone remodeling as occurs in osteoporosis. The aim of this study is to examine whether aspirin, which has been reported as an effective drug improving bone mineral density in human epidemiology studies, regulates the balance between bone resorption and bone formation at stem cell levels. METHODS AND FINDINGS: We found that T cell-mediated bone marrow mesenchymal stem cell (BMMSC) impairment plays a crucial role in ovariectomized-induced osteoporosis. Ex vivo mechanistic studies revealed that T cell-mediated BMMSC impairment was mainly attributed to the apoptosis of BMMSCs via the Fas/Fas ligand pathway. To explore potential of using pharmacologic stem cell based intervention as an approach for osteoporosis treatment, we selected ovariectomy (OVX)-induced ostoeporosis mouse model to examine feasibility and mechanism of aspirin-mediated therapy for osteoporosis. We found that aspirin can inhibit T cell activation and Fas ligand induced BMMSC apoptosis in vitro. Further, we revealed that aspirin increases osteogenesis of BMMSCs by aiming at telomerase activity and inhibits osteoclast activity in OVX mice, leading to ameliorating bone density. CONCLUSION: Our findings have revealed a novel osteoporosis mechanism in which activated T cells induce BMMSC apoptosis via Fas/Fas ligand pathway and suggested that pharmacologic stem cell based intervention by aspirin may be a new alternative in osteoporosis treatment including activated osteoblasts and inhibited osteoclasts. Public Library of Science 2008-07-09 /pmc/articles/PMC2440798/ /pubmed/18612428 http://dx.doi.org/10.1371/journal.pone.0002615 Text en Yamaza et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yamaza, Takayoshi
Miura, Yasuo
Bi, Yanming
Liu, Yongzhong
Akiyama, Kentaro
Sonoyama, Wataru
Patel, Voymesh
Gutkind, Silvio
Young, Marian
Gronthos, Stan
Le, Anh
Wang, Cun-Yu
Chen, WanJun
Shi, Songtao
Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents
title Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents
title_full Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents
title_fullStr Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents
title_full_unstemmed Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents
title_short Pharmacologic Stem Cell Based Intervention as a New Approach to Osteoporosis Treatment in Rodents
title_sort pharmacologic stem cell based intervention as a new approach to osteoporosis treatment in rodents
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2440798/
https://www.ncbi.nlm.nih.gov/pubmed/18612428
http://dx.doi.org/10.1371/journal.pone.0002615
work_keys_str_mv AT yamazatakayoshi pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT miurayasuo pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT biyanming pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT liuyongzhong pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT akiyamakentaro pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT sonoyamawataru pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT patelvoymesh pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT gutkindsilvio pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT youngmarian pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT gronthosstan pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT leanh pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT wangcunyu pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT chenwanjun pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents
AT shisongtao pharmacologicstemcellbasedinterventionasanewapproachtoosteoporosistreatmentinrodents