Maternal diet-induced obesity programmes cardiac dysfunction in male mice independently of post-weaning diet
Cardiovascular Research

Abstract
Obesity during pregnancy increases risk of cardiovascular disease (CVD) in the offspring and individuals exposed to over-nutrition during fetal life are likely to be exposed to a calorie-rich environment postnatally. Here, we established the consequences of combined exposure to a maternal and post-weaning obesogenic diet on offspring cardiac structure and function using an established mouse model of maternal diet-induced obesity.
The impact of the maternal and postnatal environment on the offspring metabolic profile, arterial blood pressure, cardiac structure, and function was assessed in 8-week-old C57BL/6 male mice. Measurement of cardiomyocyte cell area, the transcriptional re-activation of cardiac fetal genes as well as genes involved in the regulation of contractile function and matrix remodelling in the adult heart were determined as potential mediators of effects on cardiac function. In the adult offspring: a post-weaning obesogenic diet coupled with exposure to maternal obesity increased serum insulin (
Maternal diet-induced obesity and offspring obesity independently promote cardiac dysfunction and hypertension in adult male progeny. Exposure to maternal obesity alone programmed cardiac dysfunction, associated with hallmarks of pathological left ventricular hypertrophy, including increased cardiomyocyte area, upregulation of fetal genes, and remodelling of cardiac structure. These data highlight that the perinatal period is just as important as adult-onset obesity in predicting CVD risk. Therefore, early developmental periods are key intervention windows to reduce the prevalence of CVD.
Contributors

Catherine E Aiken
Author

Juliana de Almeida-Faria
Author

Josca M Schoonejans
Author

Dino A Giussani
Author

Denise S Fernandez-Twinn
Author

Susan E Ozanne
Author

Elena Loche
Author
University of Cambridge Cambridge , United Kingdom of Great Britain & Northern Ireland

Heather L Blackmore
Author

Asha A Carpenter
Author

Jessica H Beeson
Author

Adele Pinnock
Author

Thomas J Ashmore
Author
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