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Congenital heart defects affect ∼2% of live births and often involve malformations of the semilunar (aortic and pulmonic) valves. We previously reported a highly penetrant p.Gly296Ser mutation in familial, congenital atrial septal defects and pulmonic valve stenosis and showed that mice harboring the orthologous G295S disease-causing mutation display not only atrial septal defects, but also semilunar valve stenosis. Here, we aimed to characterize the role of Gata4 in semilunar valve development and stenosis using the mouse model. GATA4 is highly expressed in developing valve endothelial and interstitial cells. Echocardiographic examination of mice at 2 months and 1 year of age identified functional semilunar valve stenosis predominantly affecting the aortic valve with distal leaflet thickening and severe extracellular matrix (ECM) disorganization. Examination of the aortic valve at earlier postnatal timepoints demonstrated similar ECM abnormalities consistent with congenital disease. Analysis at embryonic timepoints showed a reduction in aortic valve cushion volume at embryonic day (E)13.5, predominantly affecting the non-coronary cusp (NCC). Although total cusp volume recovered by E15.5, the NCC cusp remained statistically smaller. As endothelial to mesenchymal transition (EMT)-derived cells contribute significantly to the NCC, we performed proximal outflow tract cushion explant assays and found EMT deficits in embryos along with deficits in cell proliferation. RNA-seq analysis of E15.5 outflow tracts of mutant embryos suggested a disease state and identified changes in genes involved in ECM and cell migration as well as dysregulation of Wnt signaling. By utilizing a mouse model harboring a human disease-causing mutation, we demonstrate a novel role for GATA4 in congenital semilunar valve stenosis.This article has an associated First Person interview with the joint first authors of the paper.
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http://dx.doi.org/10.1242/dmm.036764 | DOI Listing |
Pediatr Cardiol
August 2025
Children's Heart Center Nevada, 3131 La Canada Ste. 230, Las Vegas, NV, 89169, USA.
We reviewed those diagnosed pre- and postnatally with interrupted inferior caval vein (IICV), emphasizing the computed tomographic (CT) findings in those without complex cardiac malformations. We identified cases of IIVC diagnosed between January 2013 and December 2024. We defined non-complex cardiac malformations as secundum atrial communications with or without catheter intervention or surgery, mild semilunar valve stenosis, or a patent ductus arteriosus with or without catheter intervention or surgery.
View Article and Find Full Text PDFJAMA
August 2025
Congenital Heart Surgery Research and Training Laboratory, Duke University, Durham, North Carolina.
Importance: Partial heart transplant, or living valve replacement, has the potential to advance surgical management of irreparable valvular disease by providing a viable option with capacity for growth.
Objectives: To describe the early experience and assess the feasibility, safety, and efficacy of partial heart transplant in patients with congenital heart valve disease.
Design, Setting, And Participants: Case series of the first 19 patients to undergo partial heart transplant at a single high-volume pediatric cardiac surgery and transplant center in the US between April 2022 and December 2024.
J Equine Sci
June 2025
School of Veterinary Medicine, Kitasato University, Higashi 23-35-1, Towada, Aomori 034-8628, Japan.
A 17-year-old Thoroughbred stallion died suddenly after grazing. Necropsy revealed massive hemorrhage in the pericardial sac, suggesting cardiac tamponade. Aortic perforation was observed at the aortic origin, and hemorrhage was observed in and around the epicardium.
View Article and Find Full Text PDFAnat Rec (Hoboken)
August 2025
Laboratório de Design Anatômico/LabDA - Departamento de Morfologia, Universidade Federal de Santa Maria, Santa Maria/RS, Brazil.
New data on the equine aortic valve obtained using advanced techniques is especially important given the greater availability of animal models for translational research. Here we characterized the morphological and morphometric aspects of the equine aortic valve from 60 healthy hearts collected at equine abattoirs. The valve cusps were analyzed by light and scanning electron microscopy, and the morphometric data were analyzed using ImageJ software in Fiji version 1.
View Article and Find Full Text PDFNeoreviews
July 2025
Division of Neonatology, Department of Pediatrics, Baylor College of Medicine, Houston, Texas.
Double outlet right ventricle (DORV) is a complex congenital heart disease with a wide spectrum of anatomical variations and clinical presentations. In this conotruncal anomaly, greater than 50% of the semilunar valve diameter of both the aorta and pulmonary artery arises from the morphologic right ventricle. Additionally, patients with DORV have a ventricular septal defect that allows blood to egress from the left ventricle and may obstruct either the pulmonary or systemic circulations.
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