Effectiveness of high-concentration CO2 hot water immersion in conditioning for athletes

S Shinsuke Tamai M Mariko Nakamura S Saeko Takahashi R Risa Iwata K Kazuya Fukami R Rie Shoji T Taiki Kodesho J Junpei Sasadai R Reia Shimizu K Kohei Nakajima

Abstract

Abstract Water immersion is a popular conditioning method; specifically, high-concentration CO 2 hot water immersion (CO 2 -HWI) has become more common in recent years. This study aimed to investigate the effectiveness of CO 2 -HWI in conditioning for athletes from both physiological and biochemical perspectives. Ten male university baseball players participated in this randomized crossover trial. Each participant completed three 15-min interventions after team training sessions on separate experimental days: CO 2 -HWI (CO 2 ; water temperature, 40 °C; CO 2 concentration, 1000 ppm), tap HWI (TAP; water temperature, 40 °C), and non-water immersion (NON; room temperature, 25 °C; relative humidity 60%). Measurements were taken before and after the intervention, and change scores were calculated. Differences in change scores among the three conditions were analyzed using the Friedman test. From a physiological perspective, systolic blood pressure showed a significant decrease in the CO 2 vs. NON comparison ( p  < 0.05), whereas most measures (e.g., core and skin temperatures) showed similar changes in the CO 2 and TAP conditions compared with the NON condition ( p  < 0.05). From a biochemical perspective, salivary cortisol and secretory immunoglobulin A levels did not show significant changes. Meanwhile, salivary human herpesvirus (HHV-) 7 DNA levels showed a significant decrease in the CO 2 vs. NON comparison ( p  < 0.05), while changes in HHV-6 DNA levels were not statistically significant. In summary, CO 2 -HWI demonstrated comparable effectiveness to TAP-HWI from both physiological and biochemical perspectives. Among these findings, CO 2 -HWI may contribute to reductions in systolic blood pressure and salivary HHV-7 DNA levels.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 01, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (10)

S

Shinsuke Tamai

M

Mariko Nakamura

S

Saeko Takahashi

R

Risa Iwata

K

Kazuya Fukami

R

Rie Shoji

T

Taiki Kodesho

J

Junpei Sasadai

R

Reia Shimizu

K

Kohei Nakajima