Cortisol reactivity in two-year-old children prenatally exposed to methamphetamine

Namik Kirlic1, Elana Newman, Linda L Lagasse

  • 1Department of Psychology, The University of Tulsa, Tulsa, Oklahoma, USA. namik-kirlic@utulsa.edu

Insights

Prenatal methamphetamine exposure (PME) and postnatal stress impact children's HPA axis. High PME with abuse potential showed increased cortisol reactivity, while other stressors blunted it, suggesting altered stress response programming.

Area of Science:

  • Neuroscience
  • Developmental Psychology
  • Endocrinology

Background:

  • Prenatal stimulant drug exposure can alter neural development and lead to neurobehavioral deficits.
  • Children exposed to drugs prenatally are at higher risk for chronic postnatal stress.
  • The hypothalamic-pituitary-adrenal (HPA) axis functioning in children with prenatal methamphetamine exposure (PME) remains largely unexamined.

Purpose of the Study:

  • To investigate the associations between PME and postnatal environmental stress with cortisol stress reactivity in 2-year-old children.
  • To explore how PME and postnatal stress interact to influence the HPA axis response.

Main Methods:

  • Utilized data from the multicenter longitudinal Infant, Development, Environment, and Lifestyle Study.
  • Collected saliva samples before and after a stress-inducing separation task in 123 children (55.3% male) with PME.
  • Employed hierarchical multiple regression analyses to examine PME, postnatal stress covariates, and their interactions.

Main Results:

  • Mild to moderate potential for child physical abuse moderated increased cortisol reactivity in children with high PME.
  • Blunted cortisol reactivity was linked to caregiver's postnatal alcohol use, child's behavioral dysregulation, and the interaction of high PME with caregiver psychopathology.

Conclusions:

  • Findings suggest elevated PME may alter HPA axis programming, potentially leading to hyperactivity.
  • Chronic environmental stress may then shift this hyperactivity towards hypoactivity.
  • These alterations align with toxic stress and allostatic load phenomena observed with stimulant drug exposure and stressful environments.
Abstract