Cargando…

Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells

Body weight is a component of the mechanical theory of OA (osteoarthritis) pathogenesis. Obesity was also found to be a risk factor for digital OA involving non-weight-bearing joints, which suggested that metabolism influences the occurrence and progression of OA. The metabolic origin of OA has been...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhao, X, Dong, Y, Zhang, J, Li, D, Hu, G, Yao, J, Li, Y, Huang, P, Zhang, M, Huang, Z, Zhang, Y, Miao, Y, Xu, Q, Li, H
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4855655/
https://www.ncbi.nlm.nih.gov/pubmed/27077804
http://dx.doi.org/10.1038/cddis.2016.68
_version_ 1782430388247855104
author Zhao, X
Dong, Y
Zhang, J
Li, D
Hu, G
Yao, J
Li, Y
Huang, P
Zhang, M
Zhang, J
Huang, Z
Zhang, Y
Miao, Y
Xu, Q
Li, H
author_facet Zhao, X
Dong, Y
Zhang, J
Li, D
Hu, G
Yao, J
Li, Y
Huang, P
Zhang, M
Zhang, J
Huang, Z
Zhang, Y
Miao, Y
Xu, Q
Li, H
author_sort Zhao, X
collection PubMed
description Body weight is a component of the mechanical theory of OA (osteoarthritis) pathogenesis. Obesity was also found to be a risk factor for digital OA involving non-weight-bearing joints, which suggested that metabolism influences the occurrence and progression of OA. The metabolic origin of OA has been partially attributed to the involvement of adipokines, such as leptin, the levels of which are significantly and positively correlated with cartilage degeneration in OA patients. However, the mechanisms by which leptin-induced cartilage degeneration occurs are poorly understood. The discovery of chondrogenic progenitor cells (CPCs) opened up new opportunities for investigation. Investigating the effects of leptin on differentiation and proliferation in CPCs would increase our understanding of the roles played by leptin in the aetiology and development of OA. Here, CPCs were harvested using single-cell sorting from rat cartilage tissues to obtain mesenchymal stem-like cells, which possess clonogenicity, proliferation and stemness. High doses of leptin decreased the ability of the CPCs to migrate, inhibited their chondrogenic potential and increased their osteogenic potential, suggesting that leptin changes differentiation fates in CPCs. High doses of leptin induced cell cycle arrest and senescence in CPCs by activating the p53/p21 pathway and inhibiting the Sirt1 pathway. Inhibiting the Sirt1 pathway accelerated cartilage senescence in knockout (KO) mice. Activating the leptin pathway induced higher Ob-Rb expression and was significantly correlated with cartilage degeneration (lower levels of Coll-2) and tissue senescence (higher levels of p53/p21 and lower levels of Sirt1) in OA patients, suggesting that leptin-induced CPCs senescence contributes to the development of OA. Taken together, our results reveal new links between obesity and cartilage damage that are induced by leptin-mediated effects on cell behaviour and senescence.
format Online
Article
Text
id pubmed-4855655
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-48556552016-05-10 Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells Zhao, X Dong, Y Zhang, J Li, D Hu, G Yao, J Li, Y Huang, P Zhang, M Zhang, J Huang, Z Zhang, Y Miao, Y Xu, Q Li, H Cell Death Dis Original Article Body weight is a component of the mechanical theory of OA (osteoarthritis) pathogenesis. Obesity was also found to be a risk factor for digital OA involving non-weight-bearing joints, which suggested that metabolism influences the occurrence and progression of OA. The metabolic origin of OA has been partially attributed to the involvement of adipokines, such as leptin, the levels of which are significantly and positively correlated with cartilage degeneration in OA patients. However, the mechanisms by which leptin-induced cartilage degeneration occurs are poorly understood. The discovery of chondrogenic progenitor cells (CPCs) opened up new opportunities for investigation. Investigating the effects of leptin on differentiation and proliferation in CPCs would increase our understanding of the roles played by leptin in the aetiology and development of OA. Here, CPCs were harvested using single-cell sorting from rat cartilage tissues to obtain mesenchymal stem-like cells, which possess clonogenicity, proliferation and stemness. High doses of leptin decreased the ability of the CPCs to migrate, inhibited their chondrogenic potential and increased their osteogenic potential, suggesting that leptin changes differentiation fates in CPCs. High doses of leptin induced cell cycle arrest and senescence in CPCs by activating the p53/p21 pathway and inhibiting the Sirt1 pathway. Inhibiting the Sirt1 pathway accelerated cartilage senescence in knockout (KO) mice. Activating the leptin pathway induced higher Ob-Rb expression and was significantly correlated with cartilage degeneration (lower levels of Coll-2) and tissue senescence (higher levels of p53/p21 and lower levels of Sirt1) in OA patients, suggesting that leptin-induced CPCs senescence contributes to the development of OA. Taken together, our results reveal new links between obesity and cartilage damage that are induced by leptin-mediated effects on cell behaviour and senescence. Nature Publishing Group 2016-04 2016-04-14 /pmc/articles/PMC4855655/ /pubmed/27077804 http://dx.doi.org/10.1038/cddis.2016.68 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Zhao, X
Dong, Y
Zhang, J
Li, D
Hu, G
Yao, J
Li, Y
Huang, P
Zhang, M
Zhang, J
Huang, Z
Zhang, Y
Miao, Y
Xu, Q
Li, H
Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells
title Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells
title_full Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells
title_fullStr Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells
title_full_unstemmed Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells
title_short Leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells
title_sort leptin changes differentiation fate and induces senescence in chondrogenic progenitor cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4855655/
https://www.ncbi.nlm.nih.gov/pubmed/27077804
http://dx.doi.org/10.1038/cddis.2016.68
work_keys_str_mv AT zhaox leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT dongy leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT zhangj leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT lid leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT hug leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT yaoj leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT liy leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT huangp leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT zhangm leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT zhangj leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT huangz leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT zhangy leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT miaoy leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT xuq leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells
AT lih leptinchangesdifferentiationfateandinducessenescenceinchondrogenicprogenitorcells