Studien gefunden: 1

Hydrogen is a kind of noble gas with the character to selectively neutralize reactive oxygen species. Former researches proved that low-concentration of hydrogen can be used to ameliorating cerebral ischemia/reperfusion injury. Hydrogen electrolyzed from water has a hydrogen concentration of 66.7%, which is much higher than that used in previous studies. And water electrolysis is a potential new hydrogen resource for regular clinical use. This study was designed and carried out for the determination of safety and neuroprotective effects of water electrolysis-derived hydrogen. Sprague–Dawley rats were used as experimental animals, and middle cerebral artery occlusion was used to make cerebral ischemia/reperfusion model. Pathologically, tissues from rats in hydrogen inhalation group showed no significant difference compared with the control group in HE staining pictures. The blood biochemical findings matched the HE staining result. TTC, Nissl, and TUNEL staining showed the significant improvement of infarction volume, neuron morphology, and neuron apoptosis in rat with hydrogen treatment. Biochemically, hydrogen inhalation decreased brain caspase-3, 3-nitrotyrosine and 8-hydroxy-2-deoxyguanosine-positive cells and inflammation factors concentration. Water electrolysis-derived hydrogen inhalation had neuroprotective effects on cerebral ischemia/reperfusion injury in rats with the effect of suppressing oxidative stress and inflammation, and it is a possible new hydrogen resource to electrolyze water at the bedside clinically.


Mehr lesen: https://doi.org/10.1016/j.neuroscience.2016.08.021

Hydrogen supplemented air inhalation reduces changes of prooxidant enzyme and gap junction protein levels after transient global cerebral ischemia in the rat hippocampus

Transient global cerebral ischemia (TGCI) occurs during acute severe hypotension depriving the brain of oxygen and glucose for a short period of time. During reperfusion, several mechanisms can induce secondary neuronal damage, including the increased production of...

Herkömmliche Membrane

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Keine vollständige Eliminierung über die gesamte Lebensdauer

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Kurze Haltbarkeit von meist nur pauschal einem Jahr

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Hohes Abwasserverhältnis von 1:2 bis 1:4 Liter

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Anfällig für hohe Partikel- und Belagbelastungen, womit die Lebensdauer sinkt

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Evodrop Membrane

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99.9% effektive Filtration ohne Nachlass

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Wartung nach 10‘000 Litern oder spätestens nach 5 Jahren

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Geringes Abwasserverhältnis von 1:1

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Integrierte Oberflächenstruktur minimiert die Anhaftung von Partikeln und Belägen

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Geschütztes Membranverfahren (Orbital Osmosis®)

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