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Published on: May 5, 2018
Role of Maternal Obesity in Offspring Cardiovascular Development and Congenital Heart Defects
Ashleigh McMullan1, James B Zwierzynski2, Nina Jain1
1Department of Pediatrics Herman B Wells Center for Pediatric Research, Indiana University School of Medicine Indianapolis IN USA.
Insights
Maternal obesity, even without diabetes, can cause congenital heart defects in newborns. This study reveals molecular pathways like oxidative stress and disrupted gene expression are involved, highlighting obesity as a key risk factor.
Area of Science:
- Developmental Biology
- Cardiovascular Research
- Metabolic Disorders
Background:
- Congenital heart disease (CHD) is a major cause of infant mortality, with unknown molecular underpinnings.
- Maternal obesity and diabetes are known risk factors for CHD, potentially acting through distinct mechanisms.
- Rising global obesity rates necessitate understanding maternal obesity's impact on fetal heart development.
Purpose of the Study:
- To investigate the molecular mechanisms by which maternal obesity, independent of diabetes, leads to congenital heart defects.
- To identify specific pathways affected by maternal obesity during embryonic heart development.
Main Methods:
- Utilized a murine model of diet-induced maternal obesity without diabetes.
- Performed single-nucleus and bulk RNA sequencing for transcriptome analysis.
- Conducted proteome analysis, immunoblotting, and histological evaluation of embryonic hearts.
Main Results:
- Maternal obesity disrupted oxidative phosphorylation, increased reactive oxygen species, and reduced antioxidant capacity (e.g., downregulation of Sod1, Gp4x).
- Observed evidence of oxidative stress, cell death signaling, and altered Rho GTPase/actin cytoskeleton pathways.
- Downregulation of cardiac morphogenesis genes (e.g., Hand2) and reduced mature cardiomyocytes were noted, alongside increased cardiac defects.
Conclusions:
- Maternal obesity alone can induce cardiac defects via mechanisms overlapping with maternal hyperglycemia.
- This research provides critical insights into maternal obesity as a modifiable risk factor for CHD.
Background:
Congenital heart disease is a leading cause of death in newborns, yet many of its molecular mechanisms remain unknown. Both maternal obesity and diabetes increase the risk of congenital heart disease in offspring, with recent studies suggesting these conditions may have distinct teratogenic mechanisms. The global prevalence of obesity is rising, and while maternal obesity is a known risk factor for fetal congenital heart disease, the specific mechanisms are largely unexplored.
Methods And Results:
We used a murine model of diet-induced maternal obesity, without diabetes, to produce dams that were overweight but had normal blood glucose levels. Embryos were generated and their developing hearts analyzed. Transcriptome analysis was performed using single-nucleus and bulk RNA sequencing. Global and phospho-enriched proteome analysis was performed using tandem mass tag-mass spectroscopy. Immunobloting and histologic evaluation were also performed. Analysis revealed disrupted oxidative phosphorylation and reactive oxygen species formation, with reduced antioxidant capacity, evidenced by downregulation of genes Sod1 and Gp4x, and disrupted Hif1a signaling. Evidence of oxidative stress, cell death signaling, and alteration in Rho GTPase and actin cytoskeleton signaling was also observed. Genes involved in cardiac morphogenesis, including Hand2, were downregulated, and fewer mature cardiomyocytes were present. Histologic analysis confirmed increased cardiac defects in embryos exposed to maternal obesity.
Conclusions:
These findings demonstrate that maternal obesity alone can result in cardiac defects through mechanisms similar to those associated with maternal hyperglycemia. This study provides valuable insight into the role of maternal obesity, a growing and modifiable risk factor, in the development of the most common birth defect, congenital heart disease.
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