Prolactin receptor signalling contributes to the attenuation of stress‐induced hyperthermia during pregnancy

Abstract During pregnancy, thermoregulation is tightly controlled to protect the foetus from harmful elevated temperatures. Stress‐induced hyperthermia is a component of the stress response that increases alertness to a perceived threat. Previous literature has shown that like other aspects of the stress response, stress‐induced hyperthermia is attenuated in late pregnancy. We sought to investigate how stress‐induced hyperthermia is attenuated in pregnancy of mice. The lactogenic hormones, prolactin and placental lactogen, have been previously shown to act through the prolactin receptor (Prlr) to keep maternal temperature in pregnancy low to ensure successful reproductive outcomes. We hypothesised that Prlr signalling in the brain would attenuate stress‐induced hyperthermia during pregnancy. To investigate this, we specifically knocked out Prlr from glutamatergic (Vglut2) neurons in mice ( Prlr lox/lox / Vglut2 Cre ). These neurons have been implicated in maternal adaptations and in stress‐induced hyperthermia. Using radiotelemetry to record core temperature ( T core ) and activity levels, non‐pregnant and pregnant mice were handled daily by scruffing the skin on the back of the neck to elicit a stress‐induced hyperthermic response. In pregnant control mice ( Prlr lox/lox ), stress‐induced hyperthermia became attenuated from day 12 of pregnancy. This was not due to habituation to the stressor, as non‐pregnant mice did not show any attenuation of the stress‐induced T core response following repeated handling for up to 20 days. In the Prlr lox/lox / Vglut2 Cre mice, the pregnancy‐induced attenuation of stress‐induced T core was markedly delayed, only appearing at day 14 of pregnancy. The changes were specific to the temperature response to stress, as both genotypes displayed similar levels of stress‐induced activity following handling. Together, these data demonstrate that stress‐induced hyperthermia is attenuated during pregnancy in mice and that this effect is at least partially mediated by Prlr signalling in glutamate neurons. However, as the stress‐induced T core response of the knockout mice was eventually attenuated in late pregnancy (gestation day 15–17), comparable to controls, other factors may also be involved.

Authors

Institutions

Publication Details

Journal
Journal of Neuroendocrinology
Published
2026-09-28
DOI
https://doi.org/10.1111/jne.70261
Primary Topic
Stress Responses and Cortisol
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Prolactin receptor signalling contributes to the attenuation of stress‐induced hyperthermia during pregnancy

David Ross Grattan, Teodora Georgescu, Andrew M. Stewart
Journal of Neuroendocrinology
Stress Responses and Cortisol
article

Prolactin receptor signalling contributes to the attenuation of stress‐induced hyperthermia during pregnancy

David Ross Grattan, Teodora Georgescu, Andrew M. Stewart
article en

Abstract

Abstract During pregnancy, thermoregulation is tightly controlled to protect the foetus from harmful elevated temperatures. Stress‐induced hyperthermia is a component of the stress response that increases alertness to a perceived threat. Previous literature has shown that like other aspects of the stress response, stress‐induced hyperthermia is attenuated in late pregnancy. We sought to investigate how stress‐induced hyperthermia is attenuated in pregnancy of mice. The lactogenic hormones, prolactin and placental lactogen, have been previously shown to act through the prolactin receptor (Prlr) to keep maternal temperature in pregnancy low to ensure successful reproductive outcomes. We hypothesised that Prlr signalling in the brain would attenuate stress‐induced hyperthermia during pregnancy. To investigate this, we specifically knocked out Prlr from glutamatergic (Vglut2) neurons in mice ( Prlr lox/lox / Vglut2 Cre ). These neurons have been implicated in maternal adaptations and in stress‐induced hyperthermia. Using radiotelemetry to record core temperature ( T core ) and activity levels, non‐pregnant and pregnant mice were handled daily by scruffing the skin on the back of the neck to elicit a stress‐induced hyperthermic response. In pregnant control mice ( Prlr lox/lox ), stress‐induced hyperthermia became attenuated from day 12 of pregnancy. This was not due to habituation to the stressor, as non‐pregnant mice did not show any attenuation of the stress‐induced T core response following repeated handling for up to 20 days. In the Prlr lox/lox / Vglut2 Cre mice, the pregnancy‐induced attenuation of stress‐induced T core was markedly delayed, only appearing at day 14 of pregnancy. The changes were specific to the temperature response to stress, as both genotypes displayed similar levels of stress‐induced activity following handling. Together, these data demonstrate that stress‐induced hyperthermia is attenuated during pregnancy in mice and that this effect is at least partially mediated by Prlr signalling in glutamate neurons. However, as the stress‐induced T core response of the knockout mice was eventually attenuated in late pregnancy (gestation day 15–17), comparable to controls, other factors may also be involved.

Journal of NeuroendocrinologyVol. 38(10)
Maurice Wilkins Centre (NZ), University of Otago (NZ)
Good health and well-being
Openalex Percentile: Top 13%
Stress Responses and Cortisol
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.