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Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome

Marfan syndrome (MFS) is an autosomal-dominant disorder of connective tissue caused by mutations in the fibrillin-1 (FBN1) gene. Mortality is often due to aortic dissection and rupture. We investigated the structural and functional properties of the heart and aorta in a [Fbn1(C1039G/+)] MFS mouse us...

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Autores principales: Lee, Ling, Cui, Jason Z., Cua, Michelle, Esfandiarei, Mitra, Sheng, Xiaoye, Chui, Winsey Audrey, Xu, Michael Haoying, Sarunic, Marinko V., Beg, Mirza Faisal, van Breemen, Cornelius, Sandor, George G. S., Tibbits, Glen F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5100915/
https://www.ncbi.nlm.nih.gov/pubmed/27824871
http://dx.doi.org/10.1371/journal.pone.0164778
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author Lee, Ling
Cui, Jason Z.
Cua, Michelle
Esfandiarei, Mitra
Sheng, Xiaoye
Chui, Winsey Audrey
Xu, Michael Haoying
Sarunic, Marinko V.
Beg, Mirza Faisal
van Breemen, Cornelius
Sandor, George G. S.
Tibbits, Glen F.
author_facet Lee, Ling
Cui, Jason Z.
Cua, Michelle
Esfandiarei, Mitra
Sheng, Xiaoye
Chui, Winsey Audrey
Xu, Michael Haoying
Sarunic, Marinko V.
Beg, Mirza Faisal
van Breemen, Cornelius
Sandor, George G. S.
Tibbits, Glen F.
author_sort Lee, Ling
collection PubMed
description Marfan syndrome (MFS) is an autosomal-dominant disorder of connective tissue caused by mutations in the fibrillin-1 (FBN1) gene. Mortality is often due to aortic dissection and rupture. We investigated the structural and functional properties of the heart and aorta in a [Fbn1(C1039G/+)] MFS mouse using high-resolution ultrasound (echo) and optical coherence tomography (OCT). Echo was performed on 6- and 12-month old wild type (WT) and MFS mice (n = 8). In vivo pulse wave velocity (PWV), aortic root diameter, ejection fraction, stroke volume, left ventricular (LV) wall thickness, LV mass and mitral valve early and atrial velocities (E/A) ratio were measured by high resolution echocardiography. OCT was performed on 12-month old WT and MFS fixed mouse hearts to measure ventricular volume and mass. The PWV was significantly increased in 6-mo MFS vs. WT (366.6 ± 19.9 vs. 205.2 ± 18.1 cm/s; p = 0.003) and 12-mo MFS vs. WT (459.5 ± 42.3 vs. 205.3 ± 30.3 cm/s; p< 0.0001). PWV increased with age in MFS mice only. We also found a significantly enlarged aortic root and decreased E/A ratio in MFS mice compared with WT for both age groups. The [Fbn1(C1039G/+)] mouse model of MFS replicates many of the anomalies of Marfan patients including significant aortic dilation, central aortic stiffness, LV systolic and diastolic dysfunction. This is the first demonstration of the direct measurement in vivo of pulse wave velocity non-invasively in the aortic arch of MFS mice, a robust measure of aortic stiffness and a critical clinical parameter for the assessment of pathology in the Marfan syndrome.
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spelling pubmed-51009152016-11-18 Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome Lee, Ling Cui, Jason Z. Cua, Michelle Esfandiarei, Mitra Sheng, Xiaoye Chui, Winsey Audrey Xu, Michael Haoying Sarunic, Marinko V. Beg, Mirza Faisal van Breemen, Cornelius Sandor, George G. S. Tibbits, Glen F. PLoS One Research Article Marfan syndrome (MFS) is an autosomal-dominant disorder of connective tissue caused by mutations in the fibrillin-1 (FBN1) gene. Mortality is often due to aortic dissection and rupture. We investigated the structural and functional properties of the heart and aorta in a [Fbn1(C1039G/+)] MFS mouse using high-resolution ultrasound (echo) and optical coherence tomography (OCT). Echo was performed on 6- and 12-month old wild type (WT) and MFS mice (n = 8). In vivo pulse wave velocity (PWV), aortic root diameter, ejection fraction, stroke volume, left ventricular (LV) wall thickness, LV mass and mitral valve early and atrial velocities (E/A) ratio were measured by high resolution echocardiography. OCT was performed on 12-month old WT and MFS fixed mouse hearts to measure ventricular volume and mass. The PWV was significantly increased in 6-mo MFS vs. WT (366.6 ± 19.9 vs. 205.2 ± 18.1 cm/s; p = 0.003) and 12-mo MFS vs. WT (459.5 ± 42.3 vs. 205.3 ± 30.3 cm/s; p< 0.0001). PWV increased with age in MFS mice only. We also found a significantly enlarged aortic root and decreased E/A ratio in MFS mice compared with WT for both age groups. The [Fbn1(C1039G/+)] mouse model of MFS replicates many of the anomalies of Marfan patients including significant aortic dilation, central aortic stiffness, LV systolic and diastolic dysfunction. This is the first demonstration of the direct measurement in vivo of pulse wave velocity non-invasively in the aortic arch of MFS mice, a robust measure of aortic stiffness and a critical clinical parameter for the assessment of pathology in the Marfan syndrome. Public Library of Science 2016-11-08 /pmc/articles/PMC5100915/ /pubmed/27824871 http://dx.doi.org/10.1371/journal.pone.0164778 Text en © 2016 Lee et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lee, Ling
Cui, Jason Z.
Cua, Michelle
Esfandiarei, Mitra
Sheng, Xiaoye
Chui, Winsey Audrey
Xu, Michael Haoying
Sarunic, Marinko V.
Beg, Mirza Faisal
van Breemen, Cornelius
Sandor, George G. S.
Tibbits, Glen F.
Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome
title Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome
title_full Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome
title_fullStr Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome
title_full_unstemmed Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome
title_short Aortic and Cardiac Structure and Function Using High-Resolution Echocardiography and Optical Coherence Tomography in a Mouse Model of Marfan Syndrome
title_sort aortic and cardiac structure and function using high-resolution echocardiography and optical coherence tomography in a mouse model of marfan syndrome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5100915/
https://www.ncbi.nlm.nih.gov/pubmed/27824871
http://dx.doi.org/10.1371/journal.pone.0164778
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