Study2025Open access

Influence of menstrual cycle phase on inflammatory and vascular responses to acute passive heating in healthy young women

Su Y, O'Donnell E, Bailey SJ, Leicht CA

Experimental physiology · 2 citations

How it was studied

Design
Controlled clinical trial (classified by our AI screen)
Studied in
People
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
Government
National Institute for Health and Care Research
University or hospital
Loughborough University
Government
China Scholarship Council
University or hospital
NIHR Leicester Biomedical Research Centre
Government
China Scholarship Council in collaboration with Loughborough University
University or hospital
Leicester Biomedical Research Centre
Government
National Institute for Health and Care Research (NIHR)

Based on 7 listed funder(s) and full-text disclosure statement.

Publication

Published
2025-10-13 · Exp Physiol
Publisher
Wiley
Cited
1 citation · more than 69% of similar papers · 0.5× the field average
References
68 works
Access
Open access (journal) · CC-BY
Research areas
Thermoregulation and physiological responses · Infrared Thermography in Medicine · Exercise and Physiological Responses
Keywords
Menstrual cycle, Follicular phase, Thermoregulation, Body mass index, Arterial stiffness, Antagonist, Nitrite, Luteal phase

4 authors

From GB

  • Yunuo SuLoughborough University
  • Emma O’DonnellLoughborough University
  • Stephen J. BaileyLoughborough University
  • Christof A. Leicht · correspondingLoughborough University

Abstract

The aim of this study was to determine whether inflammatory and vascular responses to passive heating differ between the early follicular phase (EFP) and the mid-luteal phase (MLP) of the menstrual cycle. Ten healthy, naturally menstruating females (26 ± 3 years of age; body mass index 21.4 ± 1.9 kg/m2) were assessed during EFP and MLP. Participants underwent 60 min whole-body passive heat exposure (71°C ± 2°C, dry heat) in both phases. Outcomes included body temperature, interleukin-6, interleukin-1 receptor antagonist and plasma nitrite concentrations, cutaneous vascular conductance, blood pressure, arterial stiffness and perceptual responses. Rectal temperature and mean skin temperature increased during heat exposure but did not differ between EFP and MLP. Likewise, heat exposure increased interleukin-6, interleukin-1 receptor antagonist and plasma nitrite concentrations, with no differences between menstrual cycle phases. However, brachial (EFP, 75 ± 4 mmHg vs MLP, 72 ± 5 mmHg; p = 0.040) and central (EFP, 75 ± 4 mmHg vs MLP, 72 ± 5 mmHg; p = 0.042) mean arterial pressures were higher in EFP than in MLP at 40 min of heat exposure. Additionally, arterial stiffness declined more in EFP (-13% ± 7%) than in MLP (-5% ± 6%; p = 0.019) from the end of heat exposure to 30 min into recovery. Perceptual responses, including thermal sensation and comfort, were similar between menstrual cycle phases, but skin wetness perception was heightened during EFP. In conclusion, the inflammatory and plasma nitrite responses to passive heating did not differ between EFP and MLP. However, some vascular function and perception parameters were affected by the menstrual cycle phase.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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