Literature DB >> 32213773

Main Patterns of Fetal Cardiac Remodeling.

Fàtima Crispi1, Álvaro Sepúlveda-Martínez2,3, Francesca Crovetto2, Olga Gómez2, Bart Bijnens4,5, Eduard Gratacós2.   

Abstract

The heart is a central organ in the fetal adaptation to an adverse environment. Fetal cardiac changes may persist postnatally and increase the risk of cardiovascular disease in adulthood. Knowledge about fetal cardiac structural as well as functional remodeling has radically improved over the last few years. As it occurs in postnatal life, the fetal heart remodels - changing its structure and shape - to adapt to an insult. Several conditions have been reported to be associated with fetal cardiac remodeling including intrauterine growth restriction, diabetes, exposure to antiretroviral drugs, conception by assisted reproductive technologies, pulmonary stenosis, and other congenital heart diseases. Here we summarized the main observable patterns of cardiac remodeling, i.e., globular shape, hypertrophy without dilation, and hypertrophy with cardiomegaly. We discuss the potential pathophysiology behind different types of remodeling. Defining precisely the distinct patterns of fetal cardiac remodeling is critical for advancing in the understanding of fetal cardiovascular programming and its consequences on adult health, and potentially for the design of preventive strategies that might have an impact on long-term cardiovascular health.
© 2020 S. Karger AG, Basel.

Entities:  

Keywords:  Assisted reproductive technologies; Congenital heart disease; Echocardiography; Fetal heart; Intrauterine growth restriction; Prenatal development

Mesh:

Year:  2020        PMID: 32213773     DOI: 10.1159/000506047

Source DB:  PubMed          Journal:  Fetal Diagn Ther        ISSN: 1015-3837            Impact factor:   2.587


  1 in total

1.  Biomechanics of Human Fetal Hearts with Critical Aortic Stenosis.

Authors:  Chi Wei Ong; Meifeng Ren; Hadi Wiputra; Joy Mojumder; Wei Xuan Chan; Andreas Tulzer; Gerald Tulzer; Martin Lindsay Buist; Citra Nurfarah Zaini Mattar; Lik Chuan Lee; Choon Hwai Yap
Journal:  Ann Biomed Eng       Date:  2020-11-11       Impact factor: 3.934

  1 in total

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