Related Experiment Video
Updated: Feb 8, 2026

Measurements of Physiological Stress Responses in C. Elegans
Published on: May 21, 2020
Interparental conflict and child HPA-axis responses to acute stress: Insights using intensive repeated measures
Kate Ryan Kuhlman1, Rena L Repetti2, Bridget M Reynolds3
1Department of Psychology and Social Behavior.
Insights
Recent increases in interparental conflict, especially when reported by fathers, heighten children's physiological stress responses. Conversely, higher average conflict reported by mothers may attenuate this response, highlighting the complexity of family stress on child development.
Area of Science:
- Child Psychology
- Stress Physiology
- Family Dynamics
Background:
- Interparental conflict is a significant psychosocial stressor for children.
- The hypothalamic-pituitary-adrenal (HPA)-axis is a key physiological stress response system.
Purpose of the Study:
- To investigate the association between recent interparental conflict and children's HPA-axis reactivity.
- To explore how different reporters (mothers vs. fathers) and patterns of conflict influence this association.
Main Methods:
- 42 children (8-13 years) and their parents participated over 8 weeks.
- Parents kept daily diaries of interparental conflict.
- Children underwent the Trier Social Stress Test for Children (TSST-C) with salivary cortisol measurements.
Main Results:
- Increasing father-reported conflict correlated with an exaggerated HPA-axis response.
- Mother-reported conflict showed complex associations, with higher averages potentially attenuating the response when father's reports were considered.
- Father's reports were crucial for understanding HPA-axis responses.
Conclusions:
- The HPA-axis is sensitive to recent increases in interparental conflict, potentially impacting child health.
- Incorporating multiple reporters and analyzing patterns of conflict (average vs. recent change) is vital for understanding stress responses.
- This study underscores the importance of considering the nuances of the family environment in child stress research.
Abstract:
Interparental conflict is a common source of psychosocial stress in the lives of children. The purpose of this study was to examine the association between recent interparental conflict and one component of the physiological stress response system, the hypothalamic-pituitary-adrenal (HPA)-axis. Parents of 42 children (ages 8-13 years) completed daily diaries of interparental conflict for 8 weeks. At the end of the 8 weeks, youth participated in the Trier Social Stress Test for Children (TSST-C) while providing 2 pre- and 4 poststress salivary cortisol samples. Youth whose fathers reported a pattern of increasing interparental conflict over the past 8 weeks demonstrated an exaggerated HPA-axis response to acute stress. Mother-reported interparental conflict was not associated with children's HPA-axis responses without accounting for fathers' reports. When accounting for fathers' reports, the offspring of mothers reporting higher average daily interparental conflict demonstrated an attenuated HPA-axis response to the stressor. By estimating both average exposure and recent patterns of change in exposure to conflict, we address the circumstances that may prompt attenuation versus sensitization of the HPA-axis in the context of interparental conflict. We conclude that the HPA-axis is sensitive to proximal increases in interparental conflict which may be one pathway through which stress affects health across development, and that incorporating father's reports is important to understanding the role of the family environment in stress responses. This study further demonstrates the value of using intensive repeated measures and multiple reporters to characterize children's psychosocial environment. (PsycINFO Database Record
Related Concept Videos
Hypothalamic-Pituitary Axis
Responses to Salt Stress
Responses to Heat and Cold Stress
Stress Response System
Alarm stage
In the alarm stage, the body's...
Psychological Responses to Stress
Other Stress Responses in Bacteria

