New molecular and organelle alterations linked to down syndrome heart disease
Author
dc.contributor.author
Venegas Zamora, Leslye Paola
Author
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Bravo Acuña, Francisco Javier
Author
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Sigcho Garrido, Francisco Javier
Author
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Gómez Calderón, Wileidy
Author
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Bustamante Salazar, José Brayan
Author
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Pedrozo Cibils, Zully
Author
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Parra Ortiz, Valentina María
Admission date
dc.date.accessioned
2022-12-01T12:57:21Z
Available date
dc.date.available
2022-12-01T12:57:21Z
Publication date
dc.date.issued
2022
Cita de ítem
dc.identifier.citation
Frontiers in Genetics January 2022 Volume 12 Article 792231
es_ES
Identifier
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10.3389/fgene.2021.792231
Identifier
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https://repositorio.uchile.cl/handle/2250/189530
Abstract
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Down syndrome (DS) is a genetic disorder caused by a trisomy of the human chromosome 21 (Hsa21). Overexpression of Hsa21 genes that encode proteins and non-coding RNAs (ncRNAs) can disrupt several cellular functions and biological processes, especially in the heart. Congenital heart defects (CHDs) are present in 45-50% of individuals with DS. Here, we describe the genetic background of this condition (Hsa21 and non-Hsa21 genes), including the role of ncRNAs, and the relevance of these new players in the study of the pathophysiology of DS heart diseases. Additionally, we discuss several distinct pathways in cardiomyocytes which help maintain a functional heart, but that might trigger hypertrophy and oxidative stress when altered. Moreover, we highlight the importance of investigating how mitochondrial and lysosomal dysfunction could eventually contribute to understanding impaired heart function and development in subjects with the Hsa21 trisomy. Altogether, this review focuses on the newest insights about the gene expression, molecular pathways, and organelle alterations involved in the cardiac phenotype of DS.
es_ES
Lenguage
dc.language.iso
en
es_ES
Publisher
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Frontiers Media
es_ES
Type of license
dc.rights
Attribution-NonCommercial-NoDerivs 3.0 United States