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Diurnal Differences in the Effects of Heat Exposure on Renal Function: A Randomized Controlled Crossover Trial.

Created on 25 Aug 2026

Authors

Jintao Liu, Yuefang Li, Yarui Fan, Xiaojie Zou, Hung Chak Ho, Danfeng Zhang, Jing Zhang, Jian Song, Xu Wang, Xiuxiu Ding, Xiaoyu Jin, Lijuan Qiu, Shilu Tong, Hong Su, Yinguang Fan, Cunrui Huang, Jian Cheng

Published in

Environmental research. Pages 125547. Aug 24, 2026. Epub Aug 24, 2026.

Abstract

High temperature is a major risk factor for kidney injury, and population exposure to nighttime heat is increasing as the climate warms. However, whether renal responses to heat exposure differ between daytime and nighttime remains unclear. Forty-one healthy adults participated in a randomized crossover experiment conducted in a controlled laboratory setting. Participants were exposed to heat (32°C during daytime; 30°C during nighttime) and thermoneutral conditions (26°C) for 8 hours. Blood and urine samples were collected before and after each exposure to examine various renal biomarkers reflecting glomerular filtration function, tubular injury, and early kidney stress. Heat exposure affected both blood and urinary biomarkers of kidney function, with notable diurnal differences in renal responses. Daytime heat exposure primarily affected blood markers of glomerular filtration, increasing creatinine by 7.67% (95% CI: 4.73%-10.61%) and cystatin C by 3.05% (95% CI: 0.17%-5.93%), while reducing estimated glomerular filtration rate by 0.05% (95% CI: 0.02%-0.08%). In contrast, nighttime heat exposure predominantly elevated urinary biomarkers of early kidney stress, including insulin-like growth factor-binding protein 7 (58.40%, 95% CI: 27.66%-89.14%), kidney injury molecule-1 (47.25%, 95% CI: 18.91%-75.59%), and tissue inhibitor of metalloproteinases-2 (51.88%, 95% CI: 22.26%-81.51%). Moreover, increases in insulin-like growth factor-binding protein 7 were significantly greater at night than during the day. Sleep-related parameters, including sleep quality, duration, and heart rate variability, partially mediated nighttime heat effects on renal responses. These results indicated that heat exposure induced different diurnal patterns in renal responses.

PMID:
42637191
Bibliographic data and abstract were imported from PubMed on 25 Aug 2026.

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