Fetal Blood Flow and Genetic Mutations in Conotruncal Congenital Heart Disease

Author:

Dyer Laura A.ORCID,Rugonyi SandraORCID

Abstract

In congenital heart disease, the presence of structural defects affects blood flow in the heart and circulation. However, because the fetal circulation bypasses the lungs, fetuses with cyanotic heart defects can survive in utero but need prompt intervention to survive after birth. Tetralogy of Fallot and persistent truncus arteriosus are two of the most significant conotruncal heart defects. In both defects, blood access to the lungs is restricted or non-existent, and babies with these critical conditions need intervention right after birth. While there are known genetic mutations that lead to these critical heart defects, early perturbations in blood flow can independently lead to critical heart defects. In this paper, we start by comparing the fetal circulation with the neonatal and adult circulation, and reviewing how altered fetal blood flow can be used as a diagnostic tool to plan interventions. We then look at known factors that lead to tetralogy of Fallot and persistent truncus arteriosus: namely early perturbations in blood flow and mutations within VEGF-related pathways. The interplay between physical and genetic factors means that any one alteration can cause significant disruptions during development and underscore our need to better understand the effects of both blood flow and flow-responsive genes.

Publisher

MDPI AG

Subject

Pharmacology (medical),General Pharmacology, Toxicology and Pharmaceutics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Key Concepts of the Pathogenesis of Congenital Cardiovascular Malformations;Manual of Pediatric Cardiac Care;2024

2. Pediatric Cardiovascular Physiology;Congenital Heart Disease in Pediatric and Adult Patients;2023

3. Preoperative Evaluation;Congenital Heart Disease in Pediatric and Adult Patients;2023

4. Effect of Blood Flow on Cardiac Morphogenesis and Formation of Congenital Heart Defects;Journal of Cardiovascular Development and Disease;2022-09-08

5. Hemodynamic and Structural Comparison of Human Fetal Heart Development Between Normally Growing and Hypoplastic Left Heart Syndrome-Diagnosed Hearts;Frontiers in Physiology;2022-03-23

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