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Published on: June 10, 2013
Effects of Pup Separation on Stress Response in Postpartum Female Rats
Manu Kalyani1, Phyllis Callahan2, James M Janik3
1Department of Biology, Miami University, Oxford, OH 45056, USA. kalyanm@miamioh.edu.
Insights
Postpartum rats show a return to pre-pregnancy stress response levels 24 hours after pup separation. This recovery is linked to normalized prolactin (PRL) levels and central nervous system (CNS) prolactin receptor (PRL-R) expression, crucial for HPA axis function.
Area of Science:
- Neuroendocrinology
- Reproductive Biology
- Stress Physiology
Background:
- Postpartum neuroendocrine function is complex, with prolactin (PRL) and its receptors (PRL-R) influencing the hypothalamic-pituitary-adrenal (HPA) axis.
- Lactating mammals exhibit attenuated HPA axis activity, but the timeline for recovery after pup separation is not well-defined.
Purpose of the Study:
- To determine the time required for HPA axis activity to return to pre-pregnancy levels in postpartum rats after pup separation.
- To investigate the role of circulating PRL and central nervous system (CNS) PRL-R expression in mediating the HPA axis response to acute stress postpartum.
Main Methods:
- Postpartum rats were separated from pups for varying durations (1 hour, 24 hours, 8 days) before acute restraint stress.
- Plasma corticosterone (CORT) levels, PRL levels, and CNS PRL-R mRNA expression were measured.
- Correlations between PRL, PRL-R, and CORT levels were assessed in virgin and postpartum rats under different pup statuses.
Main Results:
- Prolactin levels returned to virgin state levels after pup separation, regardless of separation duration.
- Stress-induced HPA axis activity, suppressed in lactating rats, recovered to pre-pregnancy levels by 24 hours post-pup separation.
- HPA axis recovery correlated with the normalization of circulating PRL and CNS PRL-R expression to pre-pregnancy levels.
Conclusions:
- The HPA axis's attenuated response to acute stress during lactation recovers to pre-pregnancy levels within 24 hours of pup separation.
- Normalization of prolactin levels and central prolactin receptor expression are key factors in restoring HPA axis function postpartum.
- Understanding these neuroendocrine dynamics is vital for addressing postpartum-related mental health conditions.
Abstract:
There is a complex collection of neuroendocrine function during the postpartum period. Prolactin (PRL) released by suckling stimulus and its PRL receptors (PRL-R) in the central nervous system (CNS) are involved in hyporesponsiveness of the hypothalamic-pituitary-adrenal (HPA) axis in lactating mammals including rodents and humans. It is not clear how long it takes to reestablish the attenuated HPA axis activity of lactating rats to a pre-pregnancy state after pup separation. We first tested the hypothesis that HPA axis activity in response to an acute stress in postpartum rats would return to a pre-pregnancy state after pup separation. Restraint stress for 30 min was performed at the end of pup separation as an acute stressor. Plasma levels of corticosterone (CORT) were measured following restraint stress or no-stress (control) in virgin rats and postpartum rats housed with their pups or with pup removal for different periods of time of one hour, 24 h, or eight days. We then tested the hypothesis that circulating PRL level and CNS PRL-R gene expression were involved in mediating the acute stress response in postpartum rats. Plasma levels of PRL and PRL-R mRNA levels in the choroid plexus of the CNS were determined in both no-stress and stress, virgin rats, and postpartum rats housed with their pups or with pup removal for various periods, and their correlation with plasma CORT levels was assessed. The results demonstrated that PRL levels declined to virgin state in all postpartum rats separated from their pups, including the dams with one-hour pup separation. Stress-induced HPA activity dampened in lactating rats housed with pups, and returned to the pre-pregnancy state after 24 h of pup separation when both circulating PRL level and CNS PRL-R expression were restored to a pre-pregnancy state. Additionally, basal plasma CORT and CNS PRL-R expression were significantly correlated in rats with various pup status. This study suggested that stress-induced HPA activation occurred when PRL-R expression was similar to the level of virgin females, indicating that PRL-R upregulation contributes to an attenuated HPA response to acute stress. Understanding neuroendocrine responses to stress during the postpartum period is critical to understand postpartum-related neuropsychiatric illnesses and to maintain mental health in postpartum women.
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