Cargando…

Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone

Background: Osteopontin has been implicated in vascular calcification formation and vein graft intimal hyperplasia, and its expression can be triggered by pro-inflammatory activation of cells. The role of osteopontin and the temporal formation of microcalcification in vein grafts is poorly understoo...

Descripción completa

Detalles Bibliográficos
Autores principales: McQueen, Liam W., Ladak, Shameem S., Layton, Georgia R., Wadey, Kerry, George, Sarah J., Angelini, Gianni D., Murphy, Gavin J., Zakkar, Mustafa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10670684/
https://www.ncbi.nlm.nih.gov/pubmed/37998362
http://dx.doi.org/10.3390/cells12222627
_version_ 1785149338374111232
author McQueen, Liam W.
Ladak, Shameem S.
Layton, Georgia R.
Wadey, Kerry
George, Sarah J.
Angelini, Gianni D.
Murphy, Gavin J.
Zakkar, Mustafa
author_facet McQueen, Liam W.
Ladak, Shameem S.
Layton, Georgia R.
Wadey, Kerry
George, Sarah J.
Angelini, Gianni D.
Murphy, Gavin J.
Zakkar, Mustafa
author_sort McQueen, Liam W.
collection PubMed
description Background: Osteopontin has been implicated in vascular calcification formation and vein graft intimal hyperplasia, and its expression can be triggered by pro-inflammatory activation of cells. The role of osteopontin and the temporal formation of microcalcification in vein grafts is poorly understood with a lack of understanding of the interaction between haemodynamic changes and the activation of osteopontin. Methods: We used a porcine model of vein interposition grafts, and human long saphenous veins exposed to ex vivo perfusion, to study the activation of osteopontin using polymerase chain reaction, immunostaining, and (18)F-sodium fluoride autoradiography. Results: The porcine model showed that osteopontin is active in grafts within 1 week following surgery and demonstrated the presence of microcalcification. A brief pretreatment of long saphenous veins with dexamethasone can suppress osteopontin activation. Prolonged culture of veins after exposure to acute arterial haemodynamics resulted in the formation of microcalcification but this was suppressed by pretreatment with dexamethasone. (18)F-sodium fluoride uptake was significantly increased as early as 1 week in both models, and the pretreatment of long saphenous veins with dexamethasone was able to abolish its uptake. Conclusions: Osteopontin is activated in vein grafts and is associated with microcalcification formation. A brief pretreatment of veins ex vivo with dexamethasone can suppress its activation and associated microcalcification.
format Online
Article
Text
id pubmed-10670684
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-106706842023-11-15 Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone McQueen, Liam W. Ladak, Shameem S. Layton, Georgia R. Wadey, Kerry George, Sarah J. Angelini, Gianni D. Murphy, Gavin J. Zakkar, Mustafa Cells Article Background: Osteopontin has been implicated in vascular calcification formation and vein graft intimal hyperplasia, and its expression can be triggered by pro-inflammatory activation of cells. The role of osteopontin and the temporal formation of microcalcification in vein grafts is poorly understood with a lack of understanding of the interaction between haemodynamic changes and the activation of osteopontin. Methods: We used a porcine model of vein interposition grafts, and human long saphenous veins exposed to ex vivo perfusion, to study the activation of osteopontin using polymerase chain reaction, immunostaining, and (18)F-sodium fluoride autoradiography. Results: The porcine model showed that osteopontin is active in grafts within 1 week following surgery and demonstrated the presence of microcalcification. A brief pretreatment of long saphenous veins with dexamethasone can suppress osteopontin activation. Prolonged culture of veins after exposure to acute arterial haemodynamics resulted in the formation of microcalcification but this was suppressed by pretreatment with dexamethasone. (18)F-sodium fluoride uptake was significantly increased as early as 1 week in both models, and the pretreatment of long saphenous veins with dexamethasone was able to abolish its uptake. Conclusions: Osteopontin is activated in vein grafts and is associated with microcalcification formation. A brief pretreatment of veins ex vivo with dexamethasone can suppress its activation and associated microcalcification. MDPI 2023-11-15 /pmc/articles/PMC10670684/ /pubmed/37998362 http://dx.doi.org/10.3390/cells12222627 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
McQueen, Liam W.
Ladak, Shameem S.
Layton, Georgia R.
Wadey, Kerry
George, Sarah J.
Angelini, Gianni D.
Murphy, Gavin J.
Zakkar, Mustafa
Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone
title Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone
title_full Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone
title_fullStr Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone
title_full_unstemmed Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone
title_short Osteopontin Activation and Microcalcification in Venous Grafts Can Be Modulated by Dexamethasone
title_sort osteopontin activation and microcalcification in venous grafts can be modulated by dexamethasone
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10670684/
https://www.ncbi.nlm.nih.gov/pubmed/37998362
http://dx.doi.org/10.3390/cells12222627
work_keys_str_mv AT mcqueenliamw osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone
AT ladakshameems osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone
AT laytongeorgiar osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone
AT wadeykerry osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone
AT georgesarahj osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone
AT angelinigiannid osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone
AT murphygavinj osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone
AT zakkarmustafa osteopontinactivationandmicrocalcificationinvenousgraftscanbemodulatedbydexamethasone