Saliva cortisol diurnal variation and stress responses in term and preterm infants

David Q Stoye1, James P Boardman1,2, Clive Osmond3

  • 1MRC Centre for Reproductive Health, The University of Edinburgh, Edinburgh, UK.

Insights

Extremely preterm infants show altered hypothalamic-pituitary-adrenal (HPA) axis regulation, with a blunted cortisol stress response and flattened diurnal slope. These HPA axis adaptations may contribute to later health issues in extremely preterm infants.

Area of Science:

  • Endocrinology
  • Developmental Pediatrics
  • Neuroscience

Background:

  • The hypothalamic-pituitary-adrenal (HPA) axis regulates stress response and development.
  • Preterm birth, particularly extreme prematurity, may impact HPA axis programming.
  • Understanding HPA axis adaptation is crucial for predicting long-term health outcomes in preterm infants.

Purpose of the Study:

  • To investigate the association between preterm birth and HPA axis adaptation.
  • To examine if the degree of prematurity (extreme vs. very preterm) influences HPA axis programming.
  • To assess cortisol stress response and diurnal rhythm in preterm infants.

Main Methods:

  • Prospective birth cohort study.
  • Saliva cortisol levels measured at 4 months chronological age (prevaccination and postvaccination, morning and evening).
  • Comparison between term-born, very preterm (28-32 weeks), and extremely preterm (<28 weeks) infants.

Main Results:

  • Infants born extremely preterm exhibited a blunted cortisol response to vaccination compared to term-born infants.
  • Extremely preterm infants showed a flattened diurnal cortisol slope.
  • No significant differences in cortisol response or diurnal slope were observed in very preterm infants compared to term-born infants.

Conclusions:

  • Extreme preterm birth is associated with blunted cortisol reactivity and a flattened diurnal slope, indicating altered HPA axis regulation.
  • These HPA axis patterns resemble those seen after childhood adversity.
  • Such adaptations may predispose extremely preterm infants to later metabolic and neurodevelopmental challenges.
Abstract

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