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Published on: June 29, 2013
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.
Objective:
The ponderal index (PI) is a widely accepted measure of disproportionate growth or asymmetrical growth retardation by pediatricians worldwide. Identification of disproportionately grown small for gestational age (SGA) neonates by using the ponderal index as a measure of the nutritional status at birth, is important because they constitute a high-risk group among SGA neonates. Poor nutritional status of the mother could have a direct effect on the organs of the developing fetus and/or affect the endocrine milieu in the maternal feto-placental unit resulting in an increased incidence of intrauterine growth-retarded (IUGR)/SGA births. IUGR is a significant risk factor for adult disease. In this study, we have investigated the endocrine adaptation by the fetus to overcome the growth disadvantage caused due to poor nutritional status of the mother.
Materials And Methods:
We examined the quantitative variations in hormonal and growth factor profiles in paired maternal and cord blood samples obtained from mothers and their neonates who were classified based on their growth status into SGA and appropriate for gestational age (AGA).
Results:
(1) A total of 24.7% neonates had a PI < 2, indicating a high incidence of asymmetric IUGR in the population studied. (2) Anthropometric parameters measured in the mothers indicate that the mothers giving birth to neonates with a PI < 2 had poor nutritional status, both prior to and during pregnancy. (3) We observed increased levels of placental lactogen and prolactin and decreased levels of insulin in the cord blood of neonates with PI < 2, while lower levels of insulin-like growth factor 1 (IGF-1) and higher levels of epidermal growth factor (EGF) were observed in their mothers.
Conclusion:
Poor maternal nutritional status results in fetal adaptation to a growth restricted environment via the modulation of the pituitary-thyroid axis thereby altering the endocrine milieu, thus affecting fetal growth.
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