Hydration, water requirements, and energy balance from spring to summer in free-living older adults: a doubly labelled water study

H Hyeon-Ki Kim Y Yui Nakayama T Tsukasa Yoshida K Keiichi Yokoyama Y Yuya Watanabe (Department of Applied Chemistry, Graduate School of Engineering, Kyushu University, 744 Moto-oka, Nishi-ku, Fukuoka 819-0395, Japan) A Aya Itoi E Eiichi Yoshimura H Hinako Nanri R Rie Tsutsumi Y Yumi Nakamura N Norifumi Tateishi R Rei Ono M Misaka Kimura H Hiroyuki Sagayama (Faculty of Health and Sport Sciences, University of Tsukuba) Y Yosuke Yamada (Department of Sports and Health Sciences, Graduate School of Biomedical Engineering, Tohoku University) Y Yasuko Yoshinaka M Mie Yoshimoto Y Yoko Tanaka E Emi Yamagata N Naoyuki Ebine K Kazuko Ishikawa-Takata M Motoko Miyake T Taeko Masumoto Y Yasuko Okayama M Miho Nishimura H Hajime Tamiya T Tomoki Nakaya M Minoru Yamada H Hidenori Arai M Mitsuyoshi Yoshida T Takeshi Kikutani D Date Heiwa

Abstract

Abstract The escalating effects of climate change, particularly global warming, are posing an increasing burden on human health. Older adults are particularly susceptible to the impact of extreme heat. Adequate water intake is essential to prevent dehydration in hot environments. Therefore, it is important to understand water turnover (WT) and intake. WT of older adults in hot environments remains unknown. This study aimed at investigating the seasonal effects on WT, total energy expenditure (TEE), and physical activity using doubly labeled water (DLW) and a triaxial accelerometer. A total of 26 older Japanese adult males and females aged ≥ 65 years participated in the study. WT and TEE were measured using DLW in May and August 2012. The mean values of maximum, mean, and minimum temperatures and mean humidity of the measurement days were 24 °C, 19 °C, 14 °C, and 57% in May (spring) and 35 °C, 29 °C, 25 °C, and 66% in August (summer) 2012, respectively. The mean (standard deviation, SD) age of the participants was 73.7 (5.4) years. Total body water increased significantly from 31.1 (4.6) to 31.9 (5.2) kg (+ 0.8 kg, P  = 0.009) from May to August. TEE decreased significantly from 2271 (280) to 2123 (470) kcal/day (- 149 kcal/d, P  = 0.036), while WT increased significantly from 2.939 (0.625) to 3.579 (0.943) L/day (+ 0.640 L/d, P  < 0.001). WT increased by 640 mL/day during summer compared to that during spring, when the average temperature was 19 °C. Our findings indicate that WT increases during hot weather in older adults, reflecting seasonal adaptation.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 19, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (32)

H

Hyeon-Ki Kim

Y

Yui Nakayama

T

Tsukasa Yoshida

K

Keiichi Yokoyama

Y

Yuya Watanabe

Department of Applied Chemistry, Graduate School of Engineering, Kyushu University, 744 Moto-oka, Nishi-ku, Fukuoka 819-0395, Japan

A

Aya Itoi

E

Eiichi Yoshimura

H

Hinako Nanri

R

Rie Tsutsumi

Y

Yumi Nakamura

N

Norifumi Tateishi

R

Rei Ono

M

Misaka Kimura

H

Hiroyuki Sagayama

Faculty of Health and Sport Sciences, University of Tsukuba

Y

Yosuke Yamada

Department of Sports and Health Sciences, Graduate School of Biomedical Engineering, Tohoku University

Y

Yasuko Yoshinaka

M

Mie Yoshimoto

Y

Yoko Tanaka

E

Emi Yamagata

N

Naoyuki Ebine

K

Kazuko Ishikawa-Takata

M

Motoko Miyake

T

Taeko Masumoto

Y

Yasuko Okayama

M

Miho Nishimura

H

Hajime Tamiya

T

Tomoki Nakaya

M

Minoru Yamada

H

Hidenori Arai

M

Mitsuyoshi Yoshida

T

Takeshi Kikutani

D

Date Heiwa