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miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation

AIMS: The long-term failure of autologous saphenous vein bypass grafts due to neointimal thickening is a major clinical burden. Identifying novel strategies to prevent neointimal thickening is important. Thus, this study aimed to identify microRNAs (miRNAs) that are dysregulated during neointimal fo...

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Autores principales: McDonald, Robert A., White, Katie M., Wu, Junxi, Cooley, Brian C., Robertson, Keith E., Halliday, Crawford A., McClure, John D., Francis, Sheila, Lu, Ruifaug, Kennedy, Simon, George, Sarah J., Wan, Song, van Rooij, Eva, Baker, Andrew H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3675389/
https://www.ncbi.nlm.nih.gov/pubmed/23530023
http://dx.doi.org/10.1093/eurheartj/eht105
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author McDonald, Robert A.
White, Katie M.
Wu, Junxi
Cooley, Brian C.
Robertson, Keith E.
Halliday, Crawford A.
McClure, John D.
Francis, Sheila
Lu, Ruifaug
Kennedy, Simon
George, Sarah J.
Wan, Song
van Rooij, Eva
Baker, Andrew H.
author_facet McDonald, Robert A.
White, Katie M.
Wu, Junxi
Cooley, Brian C.
Robertson, Keith E.
Halliday, Crawford A.
McClure, John D.
Francis, Sheila
Lu, Ruifaug
Kennedy, Simon
George, Sarah J.
Wan, Song
van Rooij, Eva
Baker, Andrew H.
author_sort McDonald, Robert A.
collection PubMed
description AIMS: The long-term failure of autologous saphenous vein bypass grafts due to neointimal thickening is a major clinical burden. Identifying novel strategies to prevent neointimal thickening is important. Thus, this study aimed to identify microRNAs (miRNAs) that are dysregulated during neointimal formation and determine their pathophysiological relevance following miRNA manipulation. METHODS AND RESULTS: We undertook a microarray approach to identify dysregulated miRNAs following engraftment in an interpositional porcine graft model. These profiling experiments identified a number of miRNAs which were dysregulated following engraftment. miR-21 levels were substantially elevated following engraftment and these results were confirmed by quantitative real-time PCR in mouse, pig, and human models of vein graft neointimal formation. Genetic ablation of miR-21 in mice or grafted veins dramatically reduced neointimal formation in a mouse model of vein grafting. Furthermore, pharmacological knockdown of miR-21 in human veins resulted in target gene de-repression and a significant reduction in neointimal formation. CONCLUSION: This is the first report demonstrating that miR-21 plays a pathological role in vein graft failure. Furthermore, we also provided evidence that knockdown of miR-21 has therapeutic potential for the prevention of pathological vein graft remodelling.
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spelling pubmed-36753892013-06-07 miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation McDonald, Robert A. White, Katie M. Wu, Junxi Cooley, Brian C. Robertson, Keith E. Halliday, Crawford A. McClure, John D. Francis, Sheila Lu, Ruifaug Kennedy, Simon George, Sarah J. Wan, Song van Rooij, Eva Baker, Andrew H. Eur Heart J Fasttrack Basic Science Paper AIMS: The long-term failure of autologous saphenous vein bypass grafts due to neointimal thickening is a major clinical burden. Identifying novel strategies to prevent neointimal thickening is important. Thus, this study aimed to identify microRNAs (miRNAs) that are dysregulated during neointimal formation and determine their pathophysiological relevance following miRNA manipulation. METHODS AND RESULTS: We undertook a microarray approach to identify dysregulated miRNAs following engraftment in an interpositional porcine graft model. These profiling experiments identified a number of miRNAs which were dysregulated following engraftment. miR-21 levels were substantially elevated following engraftment and these results were confirmed by quantitative real-time PCR in mouse, pig, and human models of vein graft neointimal formation. Genetic ablation of miR-21 in mice or grafted veins dramatically reduced neointimal formation in a mouse model of vein grafting. Furthermore, pharmacological knockdown of miR-21 in human veins resulted in target gene de-repression and a significant reduction in neointimal formation. CONCLUSION: This is the first report demonstrating that miR-21 plays a pathological role in vein graft failure. Furthermore, we also provided evidence that knockdown of miR-21 has therapeutic potential for the prevention of pathological vein graft remodelling. Oxford University Press 2013-06-07 2013-03-25 /pmc/articles/PMC3675389/ /pubmed/23530023 http://dx.doi.org/10.1093/eurheartj/eht105 Text en © The Author 2013. Published by Oxford University Press on behalf of the European Society of Cardiology. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial use, distribution, and reproduction in any medium, provided that the original authorship is properly and fully attributed; the Journal, Learned Society and Oxford University Press are attributed as the original place of publication with correct citation details given; if an article is subsequently reproduced or disseminated not in its entirety but only in part or as a derivative work this must be clearly indicated. For commercial re-use, please contact journals.permissions@oup.com.
spellingShingle Fasttrack Basic Science Paper
McDonald, Robert A.
White, Katie M.
Wu, Junxi
Cooley, Brian C.
Robertson, Keith E.
Halliday, Crawford A.
McClure, John D.
Francis, Sheila
Lu, Ruifaug
Kennedy, Simon
George, Sarah J.
Wan, Song
van Rooij, Eva
Baker, Andrew H.
miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation
title miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation
title_full miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation
title_fullStr miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation
title_full_unstemmed miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation
title_short miRNA-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation
title_sort mirna-21 is dysregulated in response to vein grafting in multiple models and genetic ablation in mice attenuates neointima formation
topic Fasttrack Basic Science Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3675389/
https://www.ncbi.nlm.nih.gov/pubmed/23530023
http://dx.doi.org/10.1093/eurheartj/eht105
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