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Alterations in stress responses of the hypothalamic-pituitary-adrenal axis in small for gestational age infants
Erin A Osterholm1, Camelia E Hostinar, Megan R Gunnar
1Division of Neonatology, Department of Pediatrics, University of Minnesota, 2450 Riverside Ave, MB 630, Minneapolis, MN 55406, United States. oste0123@umn.edu
Insights
Infants born small for gestational age (SGA) show a blunted cortisol stress response shortly after birth. This impaired hypothalamic-pituitary-adrenal (HPA) axis function in SGA infants may link early-life stress to adult disease susceptibility.
Area of Science:
- Endocrinology
- Developmental Biology
- Neonatal Medicine
Background:
- Intrauterine stress may program infants for adult diseases like metabolic syndrome.
- Altered hypothalamic-pituitary-adrenal (HPA) axis regulation, specifically cortisol levels, is a proposed mechanism.
- Infants born small for gestational age (SGA) are often exposed to intrauterine stress.
Purpose of the Study:
- To investigate HPA axis function in SGA infants shortly after birth.
- To compare cortisol stress responses between SGA and appropriate for gestational age (AGA) infants.
Main Methods:
- Measured cortisol response to a heel lance blood draw in 37 infants (21 SGA, 16 AGA) within the first week of life.
- Utilized Hierarchical Linear Modeling to analyze cortisol trajectories in response to the stressor.
- Controlled for group effects on intercepts and linear slopes to assess quadratic changes.
Main Results:
- SGA infants exhibited blunted cortisol responses to the heel lance stressor compared to AGA infants.
- Group status significantly predicted quadratic cortisol slopes, indicating differing stress response trajectories.
- Growth curves revealed a robust cortisol peak in AGA infants and a blunted response in SGA infants.
Conclusions:
- Neonatal SGA is associated with blunted HPA axis responses to acute stressors.
- This finding supports the hypothesis that intrauterine conditions impact HPA axis programming.
- Blunted stress responses in SGA infants may represent a mechanism for increased adult disease susceptibility.
Abstract:
Mounting epidemiologic evidence and animal models suggest that stressful conditions during the intrauterine period may increase susceptibility to several adult conditions, including metabolic syndrome, cardiovascular disease, and psychiatric disorders. Increased cortisol levels due to alterations in the regulation of the hypothalamic-pituitary-adrenal (HPA) axis are believed to be one mediating mechanism. Infants born after significant exposure to stressful conditions are often small for gestational age (SGA) based on standardized growth norms. Lifelong programming of the HPA axis has been proposed as a mechanism to explain the association between SGA infants and adult disease. However, few studies have measured HPA axis function proximal to birth as done in this study of SGA infants during the first week of life. Participants included 37 infants in two groups based on birth size (gestational age range: 34-41weeks). SGA infants were <10th percentile for age (n=21) and appropriate for gestational age (AGA) infants (n=16) were from 20 to 90th percentile for age. Cortisol response to a heel lance for blood collection was measured for all infants. Hierarchical Linear Modeling was used to test the effect of AGA/SGA group status on cortisol trajectories in response to the stressor. Group was a significant predictor of quadratic slopes (t=2.84, χ(2)=8.19, p=.004) after controlling for the effect of group on intercepts and linear slopes. Predicted growth curves for ln-cortisol were plotted for each group based on regression coefficients. The predicted curves capture the significant group difference in trajectories, as well as the blunted response for the SGA group and the robust peak in cortisol production in response to the stressor for the AGA group. This evidence suggests SGA neonates have blunted HPA axis responses to stressors in comparison to AGA infants. These findings are consistent with animal models showing that adverse intrauterine conditions can result in blunted cortisol responses to acute stressors and may provide a mechanism for adult susceptibility to disease for individuals that are SGA at birth.
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