Reperfusion injury

Neuroprotective effect of 5, 7, 3\', 4\', 5\'-pentahydroxy dihdroflavanol-3-O-(2\'\'-O-galloyl)-[beta]-d-glucopyranoside, a polyphenolic compound in focal cerebral ischemia …

Animal Behavior / Oxidative Stress / Flavonoids / Apoptosis / Free Radical / Ischemia Reperfusion Injury / Antioxidants / Glutamate / Polyphenols / Nitric oxide / Animals / Catalase / Brain Ischemia / Neurons / Hydrogen Peroxide / European / Phenols / Rats / Time Factors / Wistar Rats / In Vitro Studies / Reperfusion injury / Glutamic Acid / Brain Edema / Cerebral Infarction / Neuroprotective Agents / MTT assay / Ischemia Reperfusion Injury / Antioxidants / Glutamate / Polyphenols / Nitric oxide / Animals / Catalase / Brain Ischemia / Neurons / Hydrogen Peroxide / European / Phenols / Rats / Time Factors / Wistar Rats / In Vitro Studies / Reperfusion injury / Glutamic Acid / Brain Edema / Cerebral Infarction / Neuroprotective Agents / MTT assay

Ginkgo biloba extract (EGb761) inhibits mitochondria-dependent caspase pathway and prevents apoptosis in hypoxia-reoxygenated cardiomyocytes

Complementary and Alternative Medicine / Chinese Medicine / Flow Cytometry / Free Radical / Ischemia Reperfusion Injury / Cell Death / Cytochrome C / Ginkgo Biloba / Reperfusion injury / Cell Death / Cytochrome C / Ginkgo Biloba / Reperfusion injury

T-588 inhibits astrocyte apoptosis via mitogen-activated protein kinase signal pathway

Apoptosis / Animals / Astrocyte / Kinase inhibitor / Phosphorylation / Astrocytes / Mitogen Activated Protein Kinase / Hydrogen Peroxide / European / Rats / Wistar Rats / Nerve Growth Factor / Reperfusion injury / MAP Kinase / Astrocytes / Mitogen Activated Protein Kinase / Hydrogen Peroxide / European / Rats / Wistar Rats / Nerve Growth Factor / Reperfusion injury / MAP Kinase

T-588 inhibits astrocyte apoptosis via mitogen-activated protein kinase signal pathway

Apoptosis / Animals / Astrocyte / Kinase inhibitor / Phosphorylation / Astrocytes / Mitogen Activated Protein Kinase / Hydrogen Peroxide / European / Rats / Wistar Rats / Nerve Growth Factor / Reperfusion injury / MAP Kinase / Astrocytes / Mitogen Activated Protein Kinase / Hydrogen Peroxide / European / Rats / Wistar Rats / Nerve Growth Factor / Reperfusion injury / MAP Kinase

NADPH Oxidase Plays a Central Role in Blood-Brain Barrier Damage in Experimental Stroke

Enzyme Inhibitors / Clostridium difficile / Stroke / Endothelial Cells / Reactive Oxygen Species / Mice / Blood brain barrier / Animals / Male / Electrical Resistance / Actin Cytoskeleton / Brain injury / Mitogen Activated Protein Kinase / NADPH oxidase / Clinical Sciences / Endothelial cell / Cerebral Ischemia / Rho-kinase / Reperfusion injury / Sus Scrofa / Ischemia–reperfusion / Neurosciences / Brain Edema / Middle Cerebral Artery / Protein Transport / Mice / Blood brain barrier / Animals / Male / Electrical Resistance / Actin Cytoskeleton / Brain injury / Mitogen Activated Protein Kinase / NADPH oxidase / Clinical Sciences / Endothelial cell / Cerebral Ischemia / Rho-kinase / Reperfusion injury / Sus Scrofa / Ischemia–reperfusion / Neurosciences / Brain Edema / Middle Cerebral Artery / Protein Transport

MEKK1 suppresses oxidative stress-induced apoptosis of embryonic stem cell-derived cardiac myocytes

Stem Cells / Human Embryonic Stem Cells / Oxidative Stress / Apoptosis / Multidisciplinary / Cell Differentiation / Embryonic Stem Cell / Heart / Hydrogen Peroxide / Myocardium / Tumor necrosis factor-alpha / Gene Targeting / Reperfusion injury / Gene Disruption / ES cell / Cell Differentiation / Embryonic Stem Cell / Heart / Hydrogen Peroxide / Myocardium / Tumor necrosis factor-alpha / Gene Targeting / Reperfusion injury / Gene Disruption / ES cell

Cardioprotective effects of Ilex paraguariensis extract: evidence for a nitric oxide-dependent mechanism

Nutrition and Dietetics / Phytotherapy / Clinical Nutrition / Nitric oxide / Animals / Alkaloids / Ilex paraguariensis / Plant extracts / Rats / Nitric Oxide Synthase / Wistar Rats / Reperfusion injury / Ischemia–reperfusion / Protein Kinase Inhibitors / Plant Leaves / Alkaloids / Ilex paraguariensis / Plant extracts / Rats / Nitric Oxide Synthase / Wistar Rats / Reperfusion injury / Ischemia–reperfusion / Protein Kinase Inhibitors / Plant Leaves

Inhibition of cerebral ischemia/reperfusion-induced injury by adenovirus expressed C-terminal amino acids of GluR6

Cognitive Science / Gene Therapy / Membrane Proteins / Western blotting / Neuronal cell death / Signal Transduction / Brain / Animals / Gene transfer techniques / Male / Cell Death / Cell Fractionation / Phosphorylation / Brain Ischemia / Cytoprotection / Neurons / Brain injury / Mitogen Activated Protein Kinase / NMDA / AMPA / Rats / Neuronal Death / Analysis of Variance / Cerebral Ischemia / Amino Acid Profile / MAPK / Reperfusion injury / Subcellular Fractions / Cell Survival / Neurosciences / Postsynaptic Density / Ad / Signal Transduction / Brain / Animals / Gene transfer techniques / Male / Cell Death / Cell Fractionation / Phosphorylation / Brain Ischemia / Cytoprotection / Neurons / Brain injury / Mitogen Activated Protein Kinase / NMDA / AMPA / Rats / Neuronal Death / Analysis of Variance / Cerebral Ischemia / Amino Acid Profile / MAPK / Reperfusion injury / Subcellular Fractions / Cell Survival / Neurosciences / Postsynaptic Density / Ad

NADPH Oxidase Plays a Central Role in Blood-Brain Barrier Damage in Experimental Stroke

Enzyme Inhibitors / Clostridium difficile / Stroke / Endothelial Cells / Reactive Oxygen Species / Mice / Blood brain barrier / Animals / Male / Electrical Resistance / Actin Cytoskeleton / Brain injury / Mitogen Activated Protein Kinase / NADPH oxidase / Clinical Sciences / Endothelial cell / Cerebral Ischemia / Rho-kinase / Reperfusion injury / Sus Scrofa / Ischemia–reperfusion / Neurosciences / Brain Edema / Middle Cerebral Artery / Protein Transport / Mice / Blood brain barrier / Animals / Male / Electrical Resistance / Actin Cytoskeleton / Brain injury / Mitogen Activated Protein Kinase / NADPH oxidase / Clinical Sciences / Endothelial cell / Cerebral Ischemia / Rho-kinase / Reperfusion injury / Sus Scrofa / Ischemia–reperfusion / Neurosciences / Brain Edema / Middle Cerebral Artery / Protein Transport
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