Cargando…

The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs

Phosphocitrate (PC) and its analogue, PC-β ethyl ester, inhibit articular cartilage degeneration in Hartley guinea pigs. However, the underlying molecular mechanisms remain unclear. The present study aimed to investigate the hypothesis that PC exerted its disease-modifying effect on osteoarthritis (...

Descripción completa

Detalles Bibliográficos
Autores principales: Sun, Yubo, Kiraly, Alex J., Cox, Michael, Mauerhan, David R., Hanley, Edward N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5841021/
https://www.ncbi.nlm.nih.gov/pubmed/29545850
http://dx.doi.org/10.3892/etm.2018.5846
_version_ 1783304686808334336
author Sun, Yubo
Kiraly, Alex J.
Cox, Michael
Mauerhan, David R.
Hanley, Edward N.
author_facet Sun, Yubo
Kiraly, Alex J.
Cox, Michael
Mauerhan, David R.
Hanley, Edward N.
author_sort Sun, Yubo
collection PubMed
description Phosphocitrate (PC) and its analogue, PC-β ethyl ester, inhibit articular cartilage degeneration in Hartley guinea pigs. However, the underlying molecular mechanisms remain unclear. The present study aimed to investigate the hypothesis that PC exerted its disease-modifying effect on osteoarthritis (OA), in part, by inhibiting a molecular program similar to that in the endochondral pathway of ossification. The results demonstrated that severe proteoglycan loss occurred in the superficial and middle zones, as well as in the calcified zone of articular cartilage in the Hartley guinea pigs. Subchondral bone advance was greater in the control Hartley guinea pigs compared with PC- or PC analogue-treated guinea pigs. Resorption of cartilage bars or islands and vascular invasion in the growth plate were also greater in the control guinea pigs compared with the PC- or PC analogue-treated guinea pigs. The levels of matrix metalloproteinase-13 and type X collagen within the articular cartilage and growth plate were significantly increased in the control guinea pigs compared with PC-treated guinea pigs (P<0.05). These results indicated that articular chondrocytes in Hartley guinea pigs exhibited a hypertrophic phenotype and recapitulated a developmental molecular program similar to the endochondral pathway of ossification. Activation of this molecular program resulted in resorption of calcified articular cartilage and subchondral bone advance. This suggests that PC and PC analogues exerted their OA disease-modifying activity, in part, by inhibiting this molecular program.
format Online
Article
Text
id pubmed-5841021
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher D.A. Spandidos
record_format MEDLINE/PubMed
spelling pubmed-58410212018-03-15 The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs Sun, Yubo Kiraly, Alex J. Cox, Michael Mauerhan, David R. Hanley, Edward N. Exp Ther Med Articles Phosphocitrate (PC) and its analogue, PC-β ethyl ester, inhibit articular cartilage degeneration in Hartley guinea pigs. However, the underlying molecular mechanisms remain unclear. The present study aimed to investigate the hypothesis that PC exerted its disease-modifying effect on osteoarthritis (OA), in part, by inhibiting a molecular program similar to that in the endochondral pathway of ossification. The results demonstrated that severe proteoglycan loss occurred in the superficial and middle zones, as well as in the calcified zone of articular cartilage in the Hartley guinea pigs. Subchondral bone advance was greater in the control Hartley guinea pigs compared with PC- or PC analogue-treated guinea pigs. Resorption of cartilage bars or islands and vascular invasion in the growth plate were also greater in the control guinea pigs compared with the PC- or PC analogue-treated guinea pigs. The levels of matrix metalloproteinase-13 and type X collagen within the articular cartilage and growth plate were significantly increased in the control guinea pigs compared with PC-treated guinea pigs (P<0.05). These results indicated that articular chondrocytes in Hartley guinea pigs exhibited a hypertrophic phenotype and recapitulated a developmental molecular program similar to the endochondral pathway of ossification. Activation of this molecular program resulted in resorption of calcified articular cartilage and subchondral bone advance. This suggests that PC and PC analogues exerted their OA disease-modifying activity, in part, by inhibiting this molecular program. D.A. Spandidos 2018-04 2018-02-07 /pmc/articles/PMC5841021/ /pubmed/29545850 http://dx.doi.org/10.3892/etm.2018.5846 Text en Copyright: © Sun et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Sun, Yubo
Kiraly, Alex J.
Cox, Michael
Mauerhan, David R.
Hanley, Edward N.
The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs
title The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs
title_full The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs
title_fullStr The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs
title_full_unstemmed The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs
title_short The role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in Hartley guinea pigs
title_sort role of inhibition by phosphocitrate and its analogue in chondrocyte differentiation and subchondral bone advance in hartley guinea pigs
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5841021/
https://www.ncbi.nlm.nih.gov/pubmed/29545850
http://dx.doi.org/10.3892/etm.2018.5846
work_keys_str_mv AT sunyubo theroleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT kiralyalexj theroleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT coxmichael theroleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT mauerhandavidr theroleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT hanleyedwardn theroleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT sunyubo roleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT kiralyalexj roleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT coxmichael roleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT mauerhandavidr roleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs
AT hanleyedwardn roleofinhibitionbyphosphocitrateanditsanalogueinchondrocytedifferentiationandsubchondralboneadvanceinhartleyguineapigs