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

Elena Loche1, Heather L Blackmore1, Asha A Carpenter1

  • 1University of Cambridge Metabolic Research Laboratories and MRC Metabolic Diseases Unit, Wellcome Trust-MRC Institute of Metabolic Science, Level 4, Box 289, Addenbrookes' Treatment Centre, Addenbrookes' Hospital, Hills Road, Cambridge, CB2 OQQ, UK.

Insights

Maternal obesity and offspring obesity independently increase cardiovascular disease risk. Early developmental periods are critical intervention windows to mitigate this risk and prevent future heart problems.

Area of Science:

  • Cardiovascular biology
  • Developmental programming
  • Metabolic disease

Background:

  • Maternal obesity during pregnancy is linked to increased cardiovascular disease (CVD) risk in offspring.
  • Offspring exposed to overnutrition in utero often face a calorie-rich environment postnatally, exacerbating risks.

Purpose of the Study:

  • To investigate the combined effects of maternal obesity and a postnatal obesogenic diet on offspring cardiac structure and function.
  • To identify potential mechanisms mediating these cardiac changes in adult mice.

Main Methods:

  • Utilized a mouse model of maternal diet-induced obesity.
  • Assessed metabolic profiles, blood pressure, cardiac structure, and function in 8-week-old male offspring.
  • Measured cardiomyocyte size and gene expression related to cardiac function and remodeling.

Main Results:

  • Both maternal obesity and offspring obesity independently led to cardiac dysfunction and hypertension.
  • Maternal obesity alone induced cardiac dysfunction associated with pathological left ventricular hypertrophy markers.
  • Combined obesogenic exposures increased serum insulin and leptin levels, and heart weight.

Conclusions:

  • Maternal and offspring obesity are independent risk factors for cardiac dysfunction and hypertension in adult male offspring.
  • Maternal obesity programs cardiac dysfunction via fetal gene re-expression and cardiac remodeling.
  • The perinatal period is a critical window for interventions to reduce long-term CVD risk.
Abstract

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