Safety of intravenous administration of hydrogen-enriched fluid in patients with acute cerebral ischemia: initial clinical studies.
Most of the results regarding hydrogen (H2) therapy for acute cerebral ischemia are derived from in vitro studies and animal experiments, with only a few obtained from human trials with a limited number of subjects. Thus, there is a paucity of information regarding both the beneficial therapeutic effects as well as the side effects of H2 on acute cerebral ischemia in humans. We designed a pilot study to investigate single dose intravenous H2-administration in combination with edaravone, aiming to provide an initial estimate of the possible risks and benefits in…
Read MoreBiological safety of neutral-pH hydrogen-enriched electrolyzed water upon mutagenicity, genotoxicity and subchronic oral toxicity
This animal study examined Biological safety of neutral-pH hydrogen-enriched electrolyzed water upon mutagenicity, genotoxicity and subchronic oral toxicity. The abstract describes Rat model; reported duration 28 days. The abstract reports: Hydrogen-dissolved water has been suggested to be effective for alleviating the oxidative stress. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreA Systematic Review of Molecular Hydrogen Therapy in Cancer Management.
Cancer remains a challenging target to cure, with present therapeutic methods unable to exhibit restorative outcomes without causing severe negative effects. Molecular hydrogen (H2) has been reported to be a promising adjunctive therapy for cancer treatment, having the capability to induce anti-proliferative, anti-oxidative, pro-apoptotic and anti-tumoural effects. This review summarises the findings from various articles on the mechanism, treatment outcomes, and overall effectiveness of H2 therapy on cancer management.
Read MoreHydrogen Water: Extra Healthy or a Hoax?—A Systematic Review
Hydrogen-rich water (HRW) has emerged as a novel approach in the field of health and wellness. It is believed to have therapeutic antioxidant properties that can neutralize harmful free radicals in the human body. It has also been shown to be beneficial in mitigating oxidative stress-induced damage through its anti-inflammatory and anti-apoptotic pathways.
Read MoreA comprehensive review of molecular hydrogen as a novel nutrition therapy in relieving oxidative stress and diseases: Mechanisms and perspectives.
Oxidative stress is responsible for the pathogenesis of many diseases, and antioxidants are commonly included in their treatment protocols. Over the past two decades, numerous biomedical reports have revealed the therapeutic benefits of molecular hydrogen (H) in relieving oxidation-related diseases. H has been found to have selective antioxidant properties against the most dangerous oxidants (hydroxyl radicals and peroxynitrite).
Read MoreCan molecular hydrogen supplementation reduce exercise-induced oxidative stress in healthy adults? A systematic review and meta-analysis.
Exercise-induced oxidative stress affects multiple neurophysiological processes, diminishing the exercise performance. Hydrogen (H) can selectively reduce excessive free radicals, but studies observed its "dual effects" on exercise-induced oxidative stress, that is, increasing or decreasing the oxidative stress. Therefore, we here conducted a systematic review and meta-analysis to quantitatively assess the influence of H on exercise-induced oxidative stress in healthy adults.
Read MoreMolecular Hydrogen Ameliorates Anti-Desmoglein 1 Antibody-Induced Pemphigus-Associated Interstitial Lung Disease by Inhibiting Oxidative Stress.
This uncontrolled human study examined Molecular Hydrogen Ameliorates Anti-Desmoglein 1 Antibody-Induced Pemphigus-Associated Interstitial Lung Disease by Inhibiting Oxidative Stress. The abstract describes Human participants; hydrogen delivered as hydrogen water. The abstract reports: Using a BALB/cJGpt mouse model, we demonstrated that anti-Dsg 1 antibodies, but not anti-Dsg 3 antibodies, induced interstitial inflammation and fibrosis. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHydrogen-rich saline reduces lung injury induced by intestinal ischemia/reperfusion in rats.
This animal study examined Hydrogen-rich saline reduces lung injury induced by intestinal ischemia/reperfusion in rats. The abstract describes Rat model; sample size 30; hydrogen delivered as hydrogen-rich saline. The abstract reports: Hydrogen-rich saline attenuates lung injury induced by intestinal I/R. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHydrogen gas reduces HMGB1 release in lung tissues of septic mice in an Nrf2/HO-1-dependent pathway.
This uncontrolled human study examined Hydrogen gas reduces HMGB1 release in lung tissues of septic mice in an Nrf2/HO-1-dependent pathway. The abstract describes Human participants. The abstract reports: The results indicated that 2% H gas treatment increased the survival rates, decreased the W/D weight ratio and the lung injury score, alleviated the…. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHydrogen Gas Inhalation Attenuates Seawater Instillation-Induced Acute Lung Injury via the Nrf2 Pathway in Rabbits.
This animal study examined Hydrogen Gas Inhalation Attenuates Seawater Instillation-Induced Acute Lung Injury via the Nrf2 Pathway in Rabbits. The abstract describes Rabbit model; hydrogen delivered as hydrogen inhalation. The abstract reports: These results demonstrate that hydrogen gas inhalation attenuates seawater instillation-induced acute lung injury in rabbits and that the protective effects observed may be related…. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHydrogen alleviates acute lung injury induced by limb ischaemia/reperfusion in mice.
This animal study examined Hydrogen alleviates acute lung injury induced by limb ischaemia/reperfusion in mice. The abstract describes Mouse model; hydrogen delivered as injected or infused hydrogen. The abstract reports: Molecular hydrogen exhibited a protective effect on the LIR-induced ALI model. Hydrogen decreased malondialdehyde and increased superoxide dismutase activity in lung tissues. Additionally, hydrogen…. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHigh concentration of hydrogen gas alleviates Lipopolysaccharide-induced lung injury via activating Nrf2 signaling pathway in mice.
This animal study examined High concentration of hydrogen gas alleviates Lipopolysaccharide-induced lung injury via activating Nrf2 signaling pathway in mice. The abstract describes Mouse model. The abstract reports: HCH can effectively alleviate LPS-induced ALI, which may be related to activation of Nrf2 signaling pathway and inhibition of inflammatory response and cell apoptosis…. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreEvaluation of the therapeutic effects of nebulized inhalation of hydrogen-rich water on primary blast lung injury in C57BL/6 mice.
This animal study examined Evaluation of the therapeutic effects of nebulized inhalation of hydrogen-rich water on primary blast lung injury in C57BL/6 mice. The abstract describes Mouse model; hydrogen delivered as hydrogen water and injected or infused hydrogen. The abstract reports: The overpressure generated by blasts leads to alveolar and capillary damage, resulting in ventilation-perfusion mismatch and increased intrapulmonary shunting. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreHydrogen gas alleviates lipopolysaccharide-induced acute lung injury and inflammatory response in mice.
This animal study examined Hydrogen gas alleviates lipopolysaccharide-induced acute lung injury and inflammatory response in mice. The abstract describes Mouse model; hydrogen delivered as hydrogen inhalation. The abstract reports: Hydrogen gas alleviates lipopolysaccharide-induced acute lung injury and inflammatory response most probably through the TLR4-NF-κB pathway. This is an automated editorial draft based on the abstract and requires source review before publication.
Read MoreMolecular hydrogen is a promising therapeutic agent for pulmonary disease.
Molecular hydrogen exerts biological effects on nearly all organs. It has anti-oxidative, anti-inflammatory, and anti-aging effects and contributes to the regulation of autophagy and cell death. As the primary organ for gas exchange, the lungs are constantly exposed to various harmful environmental irritants.
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