Endocrine regulation in asymmetric intrauterine fetal growth retardation

S D Mahajan1, R Aalinkeel, S Singh

  • 1Department of Endocrinology & Metabolism, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, India, 110029. smahajan@buffalo.edu

Insights

Poor maternal nutrition impacts fetal growth, leading to small for gestational age (SGA) neonates. Fetal endocrine adaptations help overcome growth restriction, but this can affect long-term health.

Area of Science:

  • Endocrinology
  • Neonatalogy
  • Maternal-Fetal Medicine

Background:

  • The ponderal index (PI) identifies disproportionate growth in small for gestational age (SGA) neonates, a high-risk group.
  • Maternal nutritional status significantly influences fetal development and can lead to intrauterine growth restriction (IUGR).
  • IUGR is a known risk factor for adult diseases, highlighting the importance of understanding fetal adaptations.

Purpose of the Study:

  • To investigate fetal endocrine adaptations to maternal nutritional deficits.
  • To analyze hormonal and growth factor profiles in SGA and appropriate for gestational age (AGA) neonates and their mothers.
  • To understand how fetuses cope with growth disadvantages caused by poor maternal nutrition.

Main Methods:

  • Collected paired maternal and cord blood samples.
  • Classified neonates into SGA and AGA groups based on growth status.
  • Quantitatively analyzed hormonal and growth factor variations in blood samples.

Main Results:

  • 24.7% of neonates exhibited a PI < 2, indicating significant asymmetric IUGR.
  • Mothers of neonates with PI < 2 showed poor nutritional status before and during pregnancy.
  • Neonates with PI < 2 had altered cord blood (increased placental lactogen, prolactin; decreased insulin) and maternal blood (decreased IGF-1, increased EGF) profiles.

Conclusions:

  • Poor maternal nutrition triggers fetal endocrine adaptations to growth restriction.
  • These adaptations involve modulation of the pituitary-thyroid axis and altered endocrine milieu.
  • These fetal responses impact overall fetal growth and development.
Abstract

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