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Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction

Cardiovascular risk associated with fetal growth restriction (FGR) could result from an early impaired vascular function. However, whether this effect results in premature vascular aging has not been addressed. We studied the ex vivo reactivity of carotid and femoral arteries in fetal (near term), a...

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Autores principales: Paz, Adolfo A., Arenas, German A., Castillo-Galán, Sebastián, Peñaloza, Estefanía, Cáceres-Rojas, Gabriela, Suazo, José, Herrera, Emilio A., Krause, Bernardo J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678381/
https://www.ncbi.nlm.nih.gov/pubmed/31311132
http://dx.doi.org/10.3390/ijms20143474
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author Paz, Adolfo A.
Arenas, German A.
Castillo-Galán, Sebastián
Peñaloza, Estefanía
Cáceres-Rojas, Gabriela
Suazo, José
Herrera, Emilio A.
Krause, Bernardo J.
author_facet Paz, Adolfo A.
Arenas, German A.
Castillo-Galán, Sebastián
Peñaloza, Estefanía
Cáceres-Rojas, Gabriela
Suazo, José
Herrera, Emilio A.
Krause, Bernardo J.
author_sort Paz, Adolfo A.
collection PubMed
description Cardiovascular risk associated with fetal growth restriction (FGR) could result from an early impaired vascular function. However, whether this effect results in premature vascular aging has not been addressed. We studied the ex vivo reactivity of carotid and femoral arteries in fetal (near term), adults (eight months-old) and aged (16 months-old) guinea pigs in normal (control) and FGR offspring. Additionally, an epigenetic marker of vascular aging (i.e., LINE-1 DNA methylation) was evaluated in human umbilical artery endothelial cells (HUAEC) from control and FGR subjects. Control guinea pig arteries showed an increased contractile response (KCl-induced) and a progressive impairment of NO-mediated relaxing responses as animals get older. FGR was associated with an initial preserved carotid artery reactivity as well as a later significant impairment in NO-mediated responses. Femoral arteries from FGR fetuses showed an increased contractility but a decreased relaxing response compared with control fetuses, and both responses were impaired in FGR-adults. Finally, FGR-HUAEC showed decreased LINE-1 DNA methylation compared with control-HUAEC. These data suggest that the aging of vascular function occurs by changes in NO-mediated responses, with limited alterations in contractile capacity. Further, these effects are accelerated and imposed at early stages of development in subjects exposed to a suboptimal intrauterine environment.
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spelling pubmed-66783812019-08-19 Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction Paz, Adolfo A. Arenas, German A. Castillo-Galán, Sebastián Peñaloza, Estefanía Cáceres-Rojas, Gabriela Suazo, José Herrera, Emilio A. Krause, Bernardo J. Int J Mol Sci Article Cardiovascular risk associated with fetal growth restriction (FGR) could result from an early impaired vascular function. However, whether this effect results in premature vascular aging has not been addressed. We studied the ex vivo reactivity of carotid and femoral arteries in fetal (near term), adults (eight months-old) and aged (16 months-old) guinea pigs in normal (control) and FGR offspring. Additionally, an epigenetic marker of vascular aging (i.e., LINE-1 DNA methylation) was evaluated in human umbilical artery endothelial cells (HUAEC) from control and FGR subjects. Control guinea pig arteries showed an increased contractile response (KCl-induced) and a progressive impairment of NO-mediated relaxing responses as animals get older. FGR was associated with an initial preserved carotid artery reactivity as well as a later significant impairment in NO-mediated responses. Femoral arteries from FGR fetuses showed an increased contractility but a decreased relaxing response compared with control fetuses, and both responses were impaired in FGR-adults. Finally, FGR-HUAEC showed decreased LINE-1 DNA methylation compared with control-HUAEC. These data suggest that the aging of vascular function occurs by changes in NO-mediated responses, with limited alterations in contractile capacity. Further, these effects are accelerated and imposed at early stages of development in subjects exposed to a suboptimal intrauterine environment. MDPI 2019-07-15 /pmc/articles/PMC6678381/ /pubmed/31311132 http://dx.doi.org/10.3390/ijms20143474 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Paz, Adolfo A.
Arenas, German A.
Castillo-Galán, Sebastián
Peñaloza, Estefanía
Cáceres-Rojas, Gabriela
Suazo, José
Herrera, Emilio A.
Krause, Bernardo J.
Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction
title Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction
title_full Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction
title_fullStr Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction
title_full_unstemmed Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction
title_short Premature Vascular Aging in Guinea Pigs Affected by Fetal Growth Restriction
title_sort premature vascular aging in guinea pigs affected by fetal growth restriction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6678381/
https://www.ncbi.nlm.nih.gov/pubmed/31311132
http://dx.doi.org/10.3390/ijms20143474
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