Hemodynamic forces play an essential epigenetic role in heart valve development, but how they do so is not known. Here, we show that the shear-responsive transcription factor KLF2 is required in endocardial cells to regulate the mesenchymal cell responses that remodel cardiac cushions to mature valves. Endocardial Klf2 deficiency results in defective valve formation associated with loss of Wnt9b expression and reduced canonical WNT signaling in neighboring mesenchymal cells, a phenotype reproduced by endocardial-specific loss of Wnt9b. Studies in zebrafish embryos reveal that wnt9b expression is similarly restricted to the endocardial cells overlying the developing heart valves and is dependent upon both hemodynamic shear forces and klf2a expression. These studies identify KLF2-WNT9B signaling as a conserved molecular mechanism by which fluid forces sensed by endothelial cells direct the complex cellular process of heart valve development and suggest that congenital valve defects may arise due to subtle defects in this mechanotransduction pathway.
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http://dx.doi.org/10.1016/j.devcel.2017.09.023 | DOI Listing |
Ann Thorac Surg Short Rep
June 2023
Department of Cardiothoracic Surgery, Stanford University, Stanford, California.
Background: The objective of this study was to biomechanically evaluate anterior pericardial patch augmentation repair and the modified technique using neochord implantation in an ex vivo rheumatic mitral valve (RMV) model.
Methods: Thermal treatment to the leaflets and chordae and commissure fusion were performed on 4 healthy porcine mitral valves to generate the ex vivo RMV model. Repair was performed by conducting commissural release and anterior pericardial patch augmentation, with or without implantation of 2 neochordae.
ASAIO J
January 2025
Division of Pediatric Cardiology, Department of Pediatrics, Heart Institute, Children's Hospital Colorado and University of Colorado School of Medicine, Aurora, Colorado.
Venoarterial extracorporeal membrane oxygenation (VA ECMO) may provide temporary hemodynamic support for patients with severe vasodilatory shock due to toxicologic ingestion. In a series of 10 cases of children less than 18 years of age who received VA ECMO support for toxicologic-induced vasodilatory shock, there were eight survivors and two nonsurvivors who died of significant neurologic injury. Upon initiation of ECMO support, survivors had decline in Vasoactive-Inotrope Scores (VIS).
View Article and Find Full Text PDFElectromagn Biol Med
January 2025
Department of Applied Mathematics, University of Calcutta, Kolkata, India.
The current investigation explores tri-hybrid mediated blood flow through a ciliary annular model, designed to emulate an endoscopic environment. The human circulatory system, driven by the metachronal ciliary waves, is examined in this study to understand how ternary nanoparticles influence wave-like flow dynamics in the presence of interfacial nanolayers. We also analyze the effect of an induced magnetic field on Ag-Cu-/blood flow within the annulus, focusing on thermal radiation, heat sources, buoyancy forces and ciliary motion.
View Article and Find Full Text PDFCrit Care Resusc
December 2024
Department of Intensive Care, Austin Hospital, Heidelberg, Victoria, Australia.
Objective: To assess current evidence regarding guanfacine use in hospitalized patients with delirium.
Introduction: Delirium is a common and important complication of critical illness. Central alpha-2 agonists are often used for symptomatic management.
Respir Res
January 2025
Shaanxi Provincial Key Laboratory of Bioelectromagnetic Detection and Intelligent Perception, Department of Biomedical Engineering, Air Force Medical University, Xi'an, 710032, China.
Background: Acute pulmonary embolism represents the third most prevalent cardiovascular pathology, following coronary heart disease and hypertension. Its untreated mortality rate is as high as 20-30%, which represents a significant threat to patient survival. In view of the current lack of real-time monitoring techniques for acute pulmonary embolism, this study primarily investigates the potential of the pulsatility electrical impedance tomography (EIT) technique for the detection and real-time monitoring of acute pulmonary embolism through the collection and imaging of the pulsatile signal of pulmonary blood flow.
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