Molecular Hydrogen Positively Affects Physical and Respiratory Function in Acute Post-COVID-19 Patients: A New Perspective in Rehabilitation.
Michal BotekJakub KrejciMichal ValentaAndrew J McKuneBarbora SládečkováPetr KonečnýIva KlimešováDalibor PastuchaPublished in: International journal of environmental research and public health (2022)
Molecular hydrogen (H 2 ) is potentially a novel therapeutic gas for acute post-coronavirus disease 2019 (COVID-19) patients because it has antioxidative, anti-inflammatory, anti-apoptosis, and antifatigue properties. The aim of this study was to determine the effect of 14 days of H 2 inhalation on the respiratory and physical fitness status of acute post-COVID-19 patients. This randomized, single-blind, placebo-controlled study included 26 males (44 ± 17 years) and 24 females (38 ± 12 years), who performed a 6-min walking test (6 MWT) and pulmonary function test, specifically forced vital capacity (FVC) and expiratory volume in the first second (FEV1). Symptomatic participants were recruited between 21 and 33 days after a positive polymerase chain reaction test. The experiment consisted of H 2 /placebo inhalation, 2 × 60 min/day for 14 days. Results showed that H 2 therapy, compared with placebo, significantly increased 6 MWT distance by 64 ± 39 m, FVC by 0.19 ± 0.24 L, and, in FEV1, by 0.11 ± 0.28 L (all p ≤ 0.025). In conclusion, H 2 inhalation had beneficial health effects in terms of improved physical and respiratory function in acute post-COVID-19 patients. Therefore, H 2 inhalation may represent a safe, effective approach for accelerating early function restoration in post-COVID-19 patients.
Keyphrases
- liver failure
- sars cov
- respiratory failure
- double blind
- coronavirus disease
- drug induced
- anti inflammatory
- physical activity
- hepatitis b virus
- placebo controlled
- randomized controlled trial
- endoplasmic reticulum stress
- intensive care unit
- oxidative stress
- cell death
- stem cells
- respiratory syndrome coronavirus
- respiratory tract
- open label
- cell proliferation
- single molecule
- smoking cessation
- ionic liquid
- carbon dioxide