Excessive early-life cholesterol exposure may have later-life consequences for nonalcoholic fatty liver disease

Jerad H Dumolt1, Mulchand S Patel2, Todd C Rideout1

  • 1Department of Exercise and Nutrition Sciences, School of Public Health and Health Professions, Buffalo, NY, USA14214.

Insights

Maternal hypercholesterolemia during pregnancy can lead to lifelong hepatic lipid metabolism dysfunction in offspring. This early cholesterol exposure programs nonalcoholic fatty liver disease development from fetal life through adulthood.

Area of Science:

  • Reproductive biology
  • Metabolic disease
  • Developmental programming

Background:

  • The prenatal environment significantly influences offspring's long-term health.
  • Maternal hypercholesterolemia (MHC) during pregnancy can disrupt fetal development and metabolic regulation.
  • Hepatic lipid metabolism is particularly vulnerable to maternal metabolic changes.

Purpose of the Study:

  • To investigate the impact of gestational hypercholesterolemia on offspring hepatic lipid metabolism.
  • To determine the persistence of these metabolic alterations into adulthood.
  • To explore the underlying epigenetic mechanisms involved in developmental programming.

Main Methods:

  • Animal model of maternal hypercholesterolemia.
  • Analysis of fetal and adult offspring hepatic lipid concentrations.
  • Quantification of lipid regulatory gene and protein expression.
  • Assessment of hepatic microRNA and DNA methylation patterns.

Main Results:

  • Gestational hypercholesterolemia increased fetal hepatic lipids and altered lipid regulatory factors.
  • Metabolic changes were observed in the postweaning period and persisted into adulthood.
  • Epigenetic modifications (microRNA, DNA methylation) were detected in utero and persisted throughout life.

Conclusions:

  • Early-life exposure to high cholesterol during critical developmental windows programs hepatic lipid dysfunction.
  • This programming predisposes offspring to nonalcoholic fatty liver disease (NAFLD).
  • Metabolic and epigenetic alterations are established early and maintained throughout the lifespan.

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