Pharmacokinetics of hydrogen administered intraperitoneally as hydrogen-rich saline and its effect on ischemic neuronal cell death in the brain in gerbils
暂无分享,去创建一个
M. Sano | Y. Hakamata | E. Kobayashi | Masahiko Fujisawa | Kazuhisa Sugai | Yoshinori Katsumata | Momoko Hirano
[1] Y. Hakamata,et al. H2 Inhibits the Formation of Neutrophil Extracellular Traps , 2022, JACC. Basic to translational science.
[2] Junhui Chen,et al. Hydrogen-rich saline alleviates early brain injury through inhibition of necroptosis and neuroinflammation via the ROS/HO-1 signaling pathway after traumatic brain injury , 2021, Experimental and Therapeutic Medicine.
[3] E. Kobayashi,et al. Pharmacokinetics of hydrogen after ingesting a hydrogen-rich solution: A study in pigs , 2021, Heliyon.
[4] Bingjie Jiang,et al. Hydrogen-rich saline alleviates early brain injury through regulating of ER stress and autophagy after experimental subarachnoid hemorrhage , 2021, Acta cirurgica brasileira.
[5] W. Geldenhuys,et al. The Mitochondrial mitoNEET Ligand NL-1 Is Protective in a Murine Model of Transient Cerebral Ischemic Stroke , 2021, Pharmaceutical Research.
[6] Guohua Song,et al. Hydrogen-saturated saline mediated neuroprotection through autophagy via PI3K/AKT/mTOR pathway in early and medium stages of rotenone-induced Parkinson’s disease rats , 2021, Brain Research Bulletin.
[7] K. Homma,et al. Daily inhalation of hydrogen gas has a blood pressure-lowering effect in a rat model of hypertension , 2020, Scientific Reports.
[8] Y. Katsumata,et al. Low-Flow Nasal Cannula Hydrogen Therapy , 2020, Journal of clinical medicine research.
[9] Y. Katsumata,et al. Pharmacokinetics of a single inhalation of hydrogen gas in pigs , 2020, PloS one.
[10] John H. Zhang,et al. Delayed recanalization after MCAO ameliorates ischemic stroke by inhibiting apoptosis via HGF/c-Met/STAT3/Bcl-2 pathway in rats , 2020, Experimental Neurology.
[11] J. Sasaki,et al. Hydrogen gas inhalation alleviates oxidative stress in patients with post-cardiac arrest syndrome , 2020, Journal of clinical biochemistry and nutrition.
[12] K. Homma,et al. Hydrogen Gas Inhalation Attenuates Endothelial Glycocalyx Damage and Stabilizes Hemodynamics in a Rat Hemorrhagic Shock Model , 2019, Shock.
[13] E. Kobayashi,et al. Organ preservation solution containing dissolved hydrogen gas from a hydrogen-absorbing alloy canister improves function of transplanted ischemic kidneys in miniature pigs , 2019, PloS one.
[14] K. Kurokawa,et al. Quantification of hydrogen production by intestinal bacteria that are specifically dysregulated in Parkinson's disease , 2018, PloS one.
[15] P. Hylemon,et al. Metabolism of hydrogen gases and bile acids in the gut microbiome , 2018, FEBS letters.
[16] K. Homma,et al. Promising novel therapy with hydrogen gas for emergency and critical care medicine , 2017, Acute medicine & surgery.
[17] K. Homma,et al. Hydrogen gas inhalation inhibits progression to the “irreversible” stage of shock after severe hemorrhage in rats , 2017, The journal of trauma and acute care surgery.
[18] K. Fukuda,et al. Hydrogen Inhalation During Normoxic Resuscitation Improves Neurological Outcome in a Rat Model of Cardiac Arrest Independently of Targeted Temperature Management , 2014, Circulation.
[19] K. Oyanagi,et al. Mannitol infusion immediately after reperfusion suppresses the development of focal cortical infarction after temporary cerebral ischemia in gerbils , 2014, Neuropathology : official journal of the Japanese Society of Neuropathology.
[20] M. Sano,et al. Hydrogen Inhalation During Normoxic Resuscitation Improves Neurological Outcome in a Rat Model of Cardiac Arrest Independently of Targeted Temperature Management , 2014 .
[21] Y. Nakabeppu,et al. Oral ‘hydrogen water' induces neuroprotective ghrelin secretion in mice , 2013, Scientific Reports.
[22] K. Oyanagi,et al. Degeneration of Astrocytic Processes and Their Mitochondria in Cerebral Cortical Regions Peripheral to the Cortical Infarction: Heterogeneity of Their Disintegration Is Closely Associated With Disseminated Selective Neuronal Necrosis and Maturation of Injury , 2009, Stroke.
[23] K. Kimura,et al. Inhalation of hydrogen gas reduces infarct size in the rat model of myocardial ischemia-reperfusion injury. , 2008, Biochemical and biophysical research communications.
[24] Yasuo Katayama,et al. Hydrogen acts as a therapeutic antioxidant by selectively reducing cytotoxic oxygen radicals , 2007, Nature Medicine.
[25] Y. Hakamata,et al. Repeated unilateral carotid occlusion in Mongolian gerbils: quantitative analysis of cortical neuronal loss , 2004, Acta Neuropathologica.
[26] M. Levitt,et al. Maintaining intestinal H2 balance: credit the colonic bacteria. , 1992, Gastroenterology.
[27] G R Gibson,et al. Production, metabolism, and excretion of hydrogen in the large intestine. , 1992, Gastroenterology.
[28] Yutaka Inaba,et al. Regional cerebral blood flow and stroke index after left carotid artery ligation in the conscious gerbil , 1984, Brain Research.
[29] S. Levine,et al. Effects of ischemia and other procedures on the brain and retina of the gerbil (Meriones unguiculatus). , 1966, Experimental neurology.
[30] A. C. Redfield,et al. GASEOUS EXCHANGE BETWEEN THE BLOOD AND THE LUMEN OF THE STOMACH AND INTESTINES , 1926 .