Cargando…

Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial

AIMS: The fragmentation and loss of elastic fibre in the tunica media of the aorta are pathological hallmarks of Marfan syndrome (MFS) but the dynamics of elastin degradation and its relationship to aortic size and physiological growth remain poorly understood. METHODS AND RESULTS: In this post hoc...

Descripción completa

Detalles Bibliográficos
Autores principales: Iskandar, Zaid, Dodd, Matthew, Huang, Jeffrey, Chin, Calvin W L, Stuart, Graham, Caputo, Massimo, Clayton, Tim, Child, Anne, Jin, Xu Yu, Aragon-Martin, José Antonio, Gibb, Jack, Flather, Marcus, Choy, Anna-Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10567063/
https://www.ncbi.nlm.nih.gov/pubmed/37829559
http://dx.doi.org/10.1093/ehjopen/oead095
_version_ 1785119044090724352
author Iskandar, Zaid
Dodd, Matthew
Huang, Jeffrey
Chin, Calvin W L
Stuart, Graham
Caputo, Massimo
Clayton, Tim
Child, Anne
Jin, Xu Yu
Aragon-Martin, José Antonio
Gibb, Jack
Flather, Marcus
Choy, Anna-Maria
author_facet Iskandar, Zaid
Dodd, Matthew
Huang, Jeffrey
Chin, Calvin W L
Stuart, Graham
Caputo, Massimo
Clayton, Tim
Child, Anne
Jin, Xu Yu
Aragon-Martin, José Antonio
Gibb, Jack
Flather, Marcus
Choy, Anna-Maria
author_sort Iskandar, Zaid
collection PubMed
description AIMS: The fragmentation and loss of elastic fibre in the tunica media of the aorta are pathological hallmarks of Marfan syndrome (MFS) but the dynamics of elastin degradation and its relationship to aortic size and physiological growth remain poorly understood. METHODS AND RESULTS: In this post hoc analysis of the AIMS randomized controlled trial, the association of plasma desmosine (pDES)—a specific biomarker of mature elastin degradation—with age and aortic size was analysed in 113 patients with MFS and compared to 109 healthy controls. There was a strong association between age and pDES in both groups, with higher pDES levels in the lower age groups compared to adults. During childhood, pDES increased and peaked during early adolescence, and thereafter decreased to lower adult levels. This trend was exaggerated in young individuals with MFS but in those above 25 years of age, pDES levels were comparable to controls despite the presence of aortic root dilation. In MFS children, increased aortic diameter relative to controls was seen at an early age and although the increase in diameter was less after adolescence, aortic root size continued to increase steadily with age. In MFS participants, there was an indication of a positive association between baseline pDES levels and aortic root dilatation during up to 5 years of follow-up. CONCLUSION: This study has shown that developmental age has a significant effect on levels of elastin turnover as measured by pDES in MFS individuals as well as healthy controls. This effect is exaggerated in those with MFS with increased levels seen during the period of physiologic development that plateaus towards adulthood. This suggests an early onset of pathophysiology that may present an important opportunity for disease-modifying intervention.
format Online
Article
Text
id pubmed-10567063
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-105670632023-10-12 Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial Iskandar, Zaid Dodd, Matthew Huang, Jeffrey Chin, Calvin W L Stuart, Graham Caputo, Massimo Clayton, Tim Child, Anne Jin, Xu Yu Aragon-Martin, José Antonio Gibb, Jack Flather, Marcus Choy, Anna-Maria Eur Heart J Open Original Article AIMS: The fragmentation and loss of elastic fibre in the tunica media of the aorta are pathological hallmarks of Marfan syndrome (MFS) but the dynamics of elastin degradation and its relationship to aortic size and physiological growth remain poorly understood. METHODS AND RESULTS: In this post hoc analysis of the AIMS randomized controlled trial, the association of plasma desmosine (pDES)—a specific biomarker of mature elastin degradation—with age and aortic size was analysed in 113 patients with MFS and compared to 109 healthy controls. There was a strong association between age and pDES in both groups, with higher pDES levels in the lower age groups compared to adults. During childhood, pDES increased and peaked during early adolescence, and thereafter decreased to lower adult levels. This trend was exaggerated in young individuals with MFS but in those above 25 years of age, pDES levels were comparable to controls despite the presence of aortic root dilation. In MFS children, increased aortic diameter relative to controls was seen at an early age and although the increase in diameter was less after adolescence, aortic root size continued to increase steadily with age. In MFS participants, there was an indication of a positive association between baseline pDES levels and aortic root dilatation during up to 5 years of follow-up. CONCLUSION: This study has shown that developmental age has a significant effect on levels of elastin turnover as measured by pDES in MFS individuals as well as healthy controls. This effect is exaggerated in those with MFS with increased levels seen during the period of physiologic development that plateaus towards adulthood. This suggests an early onset of pathophysiology that may present an important opportunity for disease-modifying intervention. Oxford University Press 2023-10-09 /pmc/articles/PMC10567063/ /pubmed/37829559 http://dx.doi.org/10.1093/ehjopen/oead095 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of the European Society of Cardiology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Article
Iskandar, Zaid
Dodd, Matthew
Huang, Jeffrey
Chin, Calvin W L
Stuart, Graham
Caputo, Massimo
Clayton, Tim
Child, Anne
Jin, Xu Yu
Aragon-Martin, José Antonio
Gibb, Jack
Flather, Marcus
Choy, Anna-Maria
Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial
title Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial
title_full Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial
title_fullStr Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial
title_full_unstemmed Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial
title_short Exaggerated elastin turnover in young individuals with Marfan syndrome: new insights from the AIMS trial
title_sort exaggerated elastin turnover in young individuals with marfan syndrome: new insights from the aims trial
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10567063/
https://www.ncbi.nlm.nih.gov/pubmed/37829559
http://dx.doi.org/10.1093/ehjopen/oead095
work_keys_str_mv AT iskandarzaid exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT doddmatthew exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT huangjeffrey exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT chincalvinwl exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT stuartgraham exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT caputomassimo exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT claytontim exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT childanne exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT jinxuyu exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT aragonmartinjoseantonio exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT gibbjack exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT flathermarcus exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial
AT choyannamaria exaggeratedelastinturnoverinyoungindividualswithmarfansyndromenewinsightsfromtheaimstrial