Hydrogen improves exercise endurance in rats by promoting mitochondrial biogenesis
Bo Wen, Chao Li, Gaihong An, Jing Wang, Junyu Lu, Mingzhu Luo, Rong Fan, Wenbin Chu, Xiangchen Dang, Xuewei Chen, Yujiao Zhang
Abstract:
Background: Previous studies have shown that hydrogen water has antioxidant and anti-inflammatory effects on exercise-induced fatigue; however, its molecular mechanism remains unclar.
Methods: Adult male Sprague-Dawley rats were randomly divided into a pure water drinking group (NC) and a hydrogen water drinking group (HW) (n = 7), and 2-week treadmill training was used to establish a sports model. Gut bacterial community profiling was performed using 16S rRNA gene sequencing analysis. The expression levels of mitochondrial energy metabolism-related genes and the levels of sugar metabolites and enzymes were measured.
Results: The exercise tolerance of rats in the HW group significantly improved, and the distribution and diversity of intestinal microbes were altered. Hydrogen significantly upregulated genes related to mitochondrial biogenesis, possibly via the Pparγ/Pgc-1α/Tfam pathway. In addition, hydrogen effectively mediated the reprogramming of skeletal muscle glucose metabolism.
Conclusion: Our findings establish a critical role for hydrogen in improving endurance exercise performance by promoting mitochondrial biogenesis via the Pparγ/Pgc-1α/Tfam pathway.
Publish Year |
2022 |
Country |
China |
Rank |
Positive |
Journal |
Genomics |
Primary Topic |
Intestine |
Secondary Topic | Excercise |
Model |
Rat |
Tertiary Topic | Fatigue |
Vehicle |
Water (Dissolved) |
pH |
Neutral |
Application |
Ingestion |
Comparison |
|
Complement |
|
Hydrogen-rich water upregulates fecal propionic acid levels in overweight adults
2023 - Intestine - Obesity
Fecal short-chain fatty acids are responsive to oral hydrogen in overweight adults. Propionic acid significantly increased in participants who consumed hydrogen-rich water for 12 wk compared with those who consumed tap water. This finding holds ...
In vitro fermentation properties of magnesium hydride and related modulation effects on broiler ...
2023 - Intestine - Gut Microbiome
Magnesium hydride (MGH), a highly promising hydrogen-producing substance/additive for hydrogen production through its hydrolysis reaction, has the potential to enhance broiler production. However, before incorporating MGH as a hydrogen-producing ...
Hydrogen-Rich Water Ameliorates Metabolic Disorder via Modifying Gut Microbiota in Impaired Fasting ...
2023 - Intestine - Metabolic Syndrome
Objective: Molecular hydrogen (H2) exhibits antioxidant, anti-inflammatory and anti-apoptotic effects, and has shown benefits in glucose and lipid metabolism in certain animal metabolic disorder models. However, the potential benefits of H2 treatment ...
Acute pre-exercise hydrogen rich water intake does not improve running performance at maximal ...
2022 - Whole Body - Excercise
Purpose: This study investigated the effects of acute, pre-exercise, hydrogen rich water (HRW) ingestion on running time to exhaustion at maximal aerobic speed in trained track and field runners. Methods: Twenty-four, male runners aged 17.5 ± 1.8 ...
Effects of Alkaline-Reduced Water on Exercise-Induced Oxidative Stress and Fatigue in Young Male ...
2022 - Whole Body - Excercise
Regular physical activity confers health benefits and improves the general quality of life. Recently, alkaline-reduced water (ARW) consumption has garnered increasing attention in the field of sports. ARW effectively inhibits the oxidative stress ...
Effects of Intestinal Bacterial Hydrogen Gas Production on Muscle Recovery following Intense ...
2022 - Intestine - Excercise
This study aimed to examine the effects of hydrogen gas (H2) produced by intestinal microbiota on participant conditioning to prevent intense exercise-induced damage. In this double-blind, randomized, crossover study, participants ingested ...