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Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves

Myxomatous mitral valve prolapse (MMVP) and fibroelastic deficiency (FED) are two common variants of degenerative mitral valve disease (DMVD), which is a leading cause of mitral regurgitation worldwide. While pathohistological studies have revealed differences in extracellular matrix content in MMVP...

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Autores principales: Chen, Yei-Tsung, Wang, Juan, Wee, Abby S. Y., Yong, Quek-Wei, Tay, Edgar Lik-Wui, Woo, Chin Cheng, Sorokin, Vitaly, Richards, Arthur Mark, Ling, Lieng-Hsi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4881574/
https://www.ncbi.nlm.nih.gov/pubmed/27213335
http://dx.doi.org/10.3390/ijms17050753
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author Chen, Yei-Tsung
Wang, Juan
Wee, Abby S. Y.
Yong, Quek-Wei
Tay, Edgar Lik-Wui
Woo, Chin Cheng
Sorokin, Vitaly
Richards, Arthur Mark
Ling, Lieng-Hsi
author_facet Chen, Yei-Tsung
Wang, Juan
Wee, Abby S. Y.
Yong, Quek-Wei
Tay, Edgar Lik-Wui
Woo, Chin Cheng
Sorokin, Vitaly
Richards, Arthur Mark
Ling, Lieng-Hsi
author_sort Chen, Yei-Tsung
collection PubMed
description Myxomatous mitral valve prolapse (MMVP) and fibroelastic deficiency (FED) are two common variants of degenerative mitral valve disease (DMVD), which is a leading cause of mitral regurgitation worldwide. While pathohistological studies have revealed differences in extracellular matrix content in MMVP and FED, the molecular mechanisms underlying these two disease entities remain to be elucidated. By using surgically removed valvular specimens from MMVP and FED patients that were categorized on the basis of echocardiographic, clinical and operative findings, a cluster of microRNAs that expressed differentially were identified. The expressions of has-miR-500, -3174, -17, -1193, -646, -1273e, -4298, -203, -505, and -939 showed significant differences between MMVP and FED after applying Bonferroni correction (p < 0.002174). The possible involvement of microRNAs in the pathogenesis of DMVD were further suggested by the presences of in silico predicted target sites on a number of genes reported to be involved in extracellular matrix homeostasis and marker genes for cellular composition of mitral valves, including decorin (DCN), aggrecan (ACAN), fibromodulin (FMOD), α actin 2 (ACTA2), extracellular matrix protein 2 (ECM2), desmin (DES), endothelial cell specific molecule 1 (ESM1), and platelet/ endothelial cell adhesion molecule 1 (PECAM1), as well as inverse correlations of selected microRNA and mRNA expression in MMVP and FED groups. Our results provide evidence that distinct molecular mechanisms underlie MMVP and FED. Moreover, the microRNAs identified may be targets for the future development of diagnostic biomarkers and therapeutics.
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spelling pubmed-48815742016-05-27 Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves Chen, Yei-Tsung Wang, Juan Wee, Abby S. Y. Yong, Quek-Wei Tay, Edgar Lik-Wui Woo, Chin Cheng Sorokin, Vitaly Richards, Arthur Mark Ling, Lieng-Hsi Int J Mol Sci Article Myxomatous mitral valve prolapse (MMVP) and fibroelastic deficiency (FED) are two common variants of degenerative mitral valve disease (DMVD), which is a leading cause of mitral regurgitation worldwide. While pathohistological studies have revealed differences in extracellular matrix content in MMVP and FED, the molecular mechanisms underlying these two disease entities remain to be elucidated. By using surgically removed valvular specimens from MMVP and FED patients that were categorized on the basis of echocardiographic, clinical and operative findings, a cluster of microRNAs that expressed differentially were identified. The expressions of has-miR-500, -3174, -17, -1193, -646, -1273e, -4298, -203, -505, and -939 showed significant differences between MMVP and FED after applying Bonferroni correction (p < 0.002174). The possible involvement of microRNAs in the pathogenesis of DMVD were further suggested by the presences of in silico predicted target sites on a number of genes reported to be involved in extracellular matrix homeostasis and marker genes for cellular composition of mitral valves, including decorin (DCN), aggrecan (ACAN), fibromodulin (FMOD), α actin 2 (ACTA2), extracellular matrix protein 2 (ECM2), desmin (DES), endothelial cell specific molecule 1 (ESM1), and platelet/ endothelial cell adhesion molecule 1 (PECAM1), as well as inverse correlations of selected microRNA and mRNA expression in MMVP and FED groups. Our results provide evidence that distinct molecular mechanisms underlie MMVP and FED. Moreover, the microRNAs identified may be targets for the future development of diagnostic biomarkers and therapeutics. MDPI 2016-05-18 /pmc/articles/PMC4881574/ /pubmed/27213335 http://dx.doi.org/10.3390/ijms17050753 Text en © 2016 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
Chen, Yei-Tsung
Wang, Juan
Wee, Abby S. Y.
Yong, Quek-Wei
Tay, Edgar Lik-Wui
Woo, Chin Cheng
Sorokin, Vitaly
Richards, Arthur Mark
Ling, Lieng-Hsi
Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves
title Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves
title_full Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves
title_fullStr Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves
title_full_unstemmed Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves
title_short Differential MicroRNA Expression Profile in Myxomatous Mitral Valve Prolapse and Fibroelastic Deficiency Valves
title_sort differential microrna expression profile in myxomatous mitral valve prolapse and fibroelastic deficiency valves
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4881574/
https://www.ncbi.nlm.nih.gov/pubmed/27213335
http://dx.doi.org/10.3390/ijms17050753
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