Maternal obesity induced metabolic disorders in offspring and myeloid reprogramming by epigenetic regulation

Joo Young Kweon1, Hyeonji Mun1, Myeong Ryeol Choi1

  • 1Medical Science and Engineering, Graduate School of Convergence Science and Technology, Pohang University of Science and Technology, Pohang, Republic of Korea.

PubMed

Insights

Maternal obesity and gestational diabetes can lead to children developing obesity and cardiovascular issues later in life. This occurs through immune reprogramming in early life, influenced by the intrauterine environment.

Area of Science:

  • Reproductive biology
  • Developmental biology
  • Immunology

Background:

  • Maternal obesity and gestational diabetes are linked to adverse childhood health outcomes.
  • Early life exposure to a metabolically imbalanced environment influences chronic disease susceptibility.
  • Large-for-gestational-age (LGA) children born to mothers with metabolic disorders face increased risks.

Purpose of the Study:

  • To review clinical and experimental studies on early life metabolic environment exposure.
  • To summarize the role of maternal obesity and gestational diabetes in childhood obesity and cardiovascular risk.
  • To explore intrauterine environment-driven myeloid reprogramming and epigenetic mechanisms.

Main Methods:

  • Comprehensive review of existing clinical and experimental studies.
  • Analysis of data linking maternal metabolic status to offspring health.
  • Examination of epigenetic regulations and markers involved in immune reprogramming.

Main Results:

  • Exposure to maternal obesity and gestational diabetes can lead to LGA children.
  • Adverse intrauterine environments reprogram fetal immune systems, increasing susceptibility to obesity, atherosclerosis, hypertension, and NAFLD.
  • Epigenetic mechanisms play a crucial role in intrauterine environment-driven myeloid reprogramming.

Conclusions:

  • Early life immune reprogramming by adverse intrauterine environments contributes to chronic inflammatory diseases and metabolic syndrome.
  • Epigenetic modifications are key underlying mechanisms linking maternal metabolic disorders to offspring's long-term health.
  • Further research into maternal-fetal immune regulation and epigenetic mechanisms is warranted for obesity and cardiovascular disease prevention.

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