Role of coxsackie‐adenovirus receptor in cardiac development and pathogenesis of congenital heart disease

2020 ◽  
Author(s):  
Vipul Sharma ◽  
Daniel J. Perry ◽  
Pirooz Eghtesady
2021 ◽  
Vol 13 (1) ◽  
Author(s):  
Jiali Cao ◽  
Qichang Wu ◽  
Yanru Huang ◽  
Lingye Wang ◽  
Zhiying Su ◽  
...  

AbstractCongenital heart disease (CHD) is a common structural birth defect worldwide, and defects typically occur in the walls and valves of the heart or enlarged blood vessels. Chromosomal abnormalities and genetic mutations only account for a small portion of the pathogenic mechanisms of CHD, and the etiology of most cases remains unknown. The role of epigenetics in various diseases, including CHD, has attracted increased attention. The contributions of DNA methylation, one of the most important epigenetic modifications, to CHD have not been illuminated. Increasing evidence suggests that aberrant DNA methylation is related to CHD. Here, we briefly introduce DNA methylation and CHD and then review the DNA methylation profiles during cardiac development and in CHD, abnormalities in maternal genome-wide DNA methylation patterns are also described. Whole genome methylation profile and important differentially methylated genes identified in recent years are summarized and clustered according to the sample type and methodologies. Finally, we discuss the novel technology for and prospects of CHD-related DNA methylation.


Genes ◽  
2021 ◽  
Vol 12 (3) ◽  
pp. 390
Author(s):  
Tingsen Benson Lim ◽  
Sik Yin Roger Foo ◽  
Ching Kit Chen

Congenital heart disease (CHD) is the most common birth defect among newborns worldwide and contributes to significant infant morbidity and mortality. Owing to major advances in medical and surgical management, as well as improved prenatal diagnosis, the outcomes for these children with CHD have improved tremendously so much so that there are now more adults living with CHD than children. Advances in genomic technologies have discovered the genetic causes of a significant fraction of CHD, while at the same time pointing to remarkable complexity in CHD genetics. For this reason, the complex process of cardiogenesis, which is governed by multiple interlinked and dose-dependent pathways, is a well investigated process. In addition to the sequence of the genome, the contribution of epigenetics to cardiogenesis is increasingly recognized. Significant progress has been made dissecting the epigenome of the heart and identified associations with cardiovascular diseases. The role of epigenetic regulation in cardiac development/cardiogenesis, using tissue and animal models, has been well reviewed. Here, we curate the current literature based on studies in humans, which have revealed associated and/or causative epigenetic factors implicated in CHD. We sought to summarize the current knowledge on the functional role of epigenetics in cardiogenesis as well as in distinct CHDs, with an aim to provide scientists and clinicians an overview of the abnormal cardiogenic pathways affected by epigenetic mechanisms, for a better understanding of their impact on the developing fetal heart, particularly for readers interested in CHD research.


2021 ◽  
Vol 5 (1) ◽  
Author(s):  
Dan Feng ◽  
Jason T. Christensen ◽  
Anji T. Yetman ◽  
Merry L. Lindsey ◽  
Amar B. Singh ◽  
...  

AbstractPatients with congenital heart disease (CHD) are at risk for developing intestinal dysbiosis and intestinal epithelial barrier dysfunction due to abnormal gut perfusion or hypoxemia in the context of low cardiac output or cyanosis. Intestinal dysbiosis may contribute to systemic inflammation thereby worsening clinical outcomes in this patient population. Despite significant advances in the management and survival of patients with CHD, morbidity remains significant and questions have arisen as to the role of the microbiome in the inflammatory process. Intestinal dysbiosis and barrier dysfunction experienced in this patient population are increasingly implicated in critical illness. This review highlights possible CHD-microbiome interactions, illustrates underlying signaling mechanisms, and discusses future directions and therapeutic translation of the basic research.


2017 ◽  
Vol 167 (11-12) ◽  
pp. 251-255
Author(s):  
Sascha Meyer ◽  
Martin Poryo ◽  
Mohammed Shatat ◽  
Ludwig Gortner ◽  
Hashim Abdul-Khaliq

1992 ◽  
Vol 2 (4) ◽  
pp. 359-360 ◽  
Author(s):  
Gale A. Pearson ◽  
Richard K. Firmin ◽  
Ranjit Leanage

AbstractWorldwide figures suggest that two percent of appropriate referrals for neonatal extracorporeal membrane oxygenation turn out to have previously covert congenital heart disease. This is despite the fact that expert cardiological evaluation is routine prior to cannulation. The experience in the United Kingdom includes such a case which is reported here. The implications for the role of pediatric cardiologists in such a service are considered.


PEDIATRICS ◽  
1966 ◽  
Vol 37 (2) ◽  
pp. 316-322
Author(s):  
Stella B. Kontras ◽  
JoAnn G. Bodenbender

Capillary morphology has been studied in 111 normal children. In 98% of these cases, straight hairpin forms make up over 80% of the capillaries examined. Thirty children with congenital heart disease showed 80% abnormal capillary patterns consisting of dilated, tortuous, and branched loops. These were most marked in cyanotic tetralogy of Fallot and ventricular septal defect with pulmonary hypertension. These cases also were associated with microscopic hemorrhages, increased capillary fragility and actual postoperative hemorrhagic complications. Definitive surgery in two cases, though improving the patient, did not result in changes in the abnormal capillary patterns. It is suggested that the role of the capillary structure in rheology of blood in the microvasculature has largely been ignored and that abnormalities in this vascular compartment may affect perfusion of tissues. The association of abnormalities in coagulation studies, hemorrhage, and thrombosis with congenital heart disease may in part be related to the morphologic vascular abnormalities. The abnormal capillary findings may be due to maturational arrest or dysmaturity of this portion of the cardiovascular system or may be the result of chronic hypoxia.


2002 ◽  
Vol 20 (3) ◽  
pp. 351-366 ◽  
Author(s):  
Folkert Meijboom ◽  
Jolien Roos-Hesselink ◽  
Horst Sievert

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