scholarly article | Q13442814 |
P2093 | author name string | Wang X | |
Yu Z | |||
Lin L | |||
P2860 | cites work | Spatial and temporal association of Bax with mitochondrial fission sites, Drp1, and Mfn2 during apoptosis | Q24337576 |
NADPH Oxidase: A Potential Target for Treatment of Stroke | Q26768464 | ||
Review, historical context, and clarifications of the NINDS rt-PA stroke trials exclusion criteria: Part 1: rapidly improving stroke symptoms | Q26825583 | ||
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The dynamin-related GTPase, Mgm1p, is an intermembrane space protein required for maintenance of fusion competent mitochondria | Q27938333 | ||
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Novel docosanoids inhibit brain ischemia-reperfusion-mediated leukocyte infiltration and pro-inflammatory gene expression | Q28199385 | ||
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Leukocyte-endothelial cell adhesion: avenues for therapeutic intervention | Q29544231 | ||
NOX enzymes and the biology of reactive oxygen | Q29547517 | ||
Mitochondrial fission, fusion, and stress | Q29616536 | ||
Effects of allopurinol and deferoxamine on reperfusion injury of the brain in newborn piglets after neonatal hypoxia-ischemia | Q30804951 | ||
Reperfusion injury following cerebral ischemia: pathophysiology, MR imaging, and potential therapies | Q31086283 | ||
Reduced microvascular thrombosis and improved outcome in acute murine stroke by inhibiting GP IIb/IIIa receptor-mediated platelet aggregation | Q32000831 | ||
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Leukotriene B4 receptor transgenic mice reveal novel protective roles for lipoxins and aspirin-triggered lipoxins in reperfusion | Q33853630 | ||
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Role of the complement system in ischaemic heart disease: potential for pharmacological intervention | Q34387513 | ||
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Matrix metalloproteinase-9 in an exploratory trial of intravenous minocycline for acute ischemic stroke | Q35234799 | ||
Role of platelets in coronary thrombosis and reperfusion of ischemic myocardium | Q35666909 | ||
Sublytic concentrations of the membrane attack complex of complement induce endothelial interleukin-8 and monocyte chemoattractant protein-1 through nuclear factor-kappa B activation | Q35764786 | ||
Platelet-activating factor receptor (PAFR) plays a crucial role in experimental global cerebral ischemia and reperfusion. | Q53130784 | ||
PAF antagonist ginkgolide B reduces postischemic neuronal damage in rat brain hippocampus | Q68699960 | ||
Leukocyte and platelet depletion protects the liver from damage induced by cholestasis and ischemia-reperfusion in the dog | Q71134429 | ||
Effects of leukocyte and platelet depletion on ischemia-reperfusion injury to dog pancreas | Q71650220 | ||
Anti–Intercellular Adhesion Molecule–1 Antibody Reduces Ischemic Cell Damage After Transient But Not Permanent Middle Cerebral Artery Occlusion in the Wistar Rat | Q71948073 | ||
Platelet-induced neutrophil activation: platelet-expressed fibrinogen induces the oxidative burst in neutrophils by an interaction with CD11C/CD18 | Q72046324 | ||
In vivo detection of superoxide anion production by the brain using a cytochrome c electrode | Q72556563 | ||
Temporal profile of ischemic tissue damage, neutrophil response, and vascular plugging following permanent and transient (2H) middle cerebral artery occlusion in the rat | Q72816172 | ||
Value of superoxide dismutase for prevention of multiple organ failure after multiple trauma | Q72832160 | ||
Intracoronary application of C1 esterase inhibitor improves cardiac function and reduces myocardial necrosis in an experimental model of ischemia and reperfusion | Q73047646 | ||
Complement C1q is dramatically up-regulated in brain microglia in response to transient global cerebral ischemia | Q73755975 | ||
The LFA-1 integrin supports rolling adhesions on ICAM-1 under physiological shear flow in a permissive cellular environment | Q73910781 | ||
Circulating platelets show increased activation in patients with acute cerebral ischemia | Q74671046 | ||
Synergism between platelets and neutrophils in provoking cardiac dysfunction after ischemia and reperfusion: role of selectins | Q77343731 | ||
Early blood-brain barrier disruption in human focal brain ischemia | Q80609599 | ||
Evidence of reperfusion injury, exacerbated by thrombolytic therapy, in human focal brain ischemia using a novel imaging marker of early blood-brain barrier disruption | Q80837184 | ||
In vivo and in vitro characterization of a novel neuroprotective strategy for stroke: ischemic postconditioning | Q81326092 | ||
Production of platelet-activating factor during focal cerebral ischemia and reperfusion in the rat | Q81351425 | ||
Vascular ischaemia and reperfusion injury | Q35923162 | ||
Fine-tuning of Drp1/Fis1 availability by AKAP121/Siah2 regulates mitochondrial adaptation to hypoxia | Q35990125 | ||
Cytochrome C release from CNS mitochondria and potential for clinical intervention in apoptosis-mediated CNS diseases | Q36237572 | ||
The WD repeat protein, Mdv1p, functions as a molecular adaptor by interacting with Dnm1p and Fis1p during mitochondrial fission | Q36325123 | ||
Platelet—neutrophil interactions: Their significance | Q36334304 | ||
PECAM-1 is required for transendothelial migration of leukocytes | Q36362038 | ||
Which came first, the cytochrome c release or the mitochondrial fission? | Q36501201 | ||
(De)constructing mitochondria: what for? | Q36547042 | ||
Reperfusion-induced injury to the blood-brain barrier after middle cerebral artery occlusion in rats | Q36735367 | ||
Curcuminoids limit neutrophil-mediated reperfusion injury in experimental stroke by targeting the endothelium | Q37086468 | ||
Expansion of the time window for treatment of acute ischemic stroke with intravenous tissue plasminogen activator: a science advisory from the American Heart Association/American Stroke Association. | Q37436384 | ||
Protecting against ischemia-reperfusion injury: antiplatelet drugs, statins, and their potential interactions | Q37800991 | ||
Genetics of ischemic stroke, stroke-related risk factors, stroke precursors and treatments | Q37998525 | ||
The complement system in ischemia-reperfusion injuries | Q38042217 | ||
Blood-brain barrier, reperfusion injury, and hemorrhagic transformation in acute ischemic stroke. | Q38046199 | ||
Ischemia/reperfusion injury: effect of simultaneous inhibition of plasma cascade systems versus specific complement inhibition. | Q38175226 | ||
The Year Embolectomy Won: a Review of Five Trials Assessing the Efficacy of Mechanical Intervention in Acute Stroke | Q38587655 | ||
Inhibiting mitochondrial fission protects the heart against ischemia/reperfusion injury | Q39710554 | ||
Increased globulin and its association with hemorrhagic transformation in patients receiving intra-arterial thrombolysis therapy | Q41458166 | ||
Metabolic Stress and Disorders Related to Alterations in Mitochondrial Fission or Fusion | Q41949133 | ||
Expression of the receptor for complement C5a (CD88) is up-regulated on reactive astrocytes, microglia, and endothelial cells in the inflamed human central nervous system. | Q41976321 | ||
Post-conditioning and reperfusion injury in the treatment of stroke | Q42057700 | ||
The presence of alpha-catenin in the VE-cadherin complex is required for efficient transendothelial migration of leukocytes | Q42637284 | ||
Oxidative stress after thrombolysis-induced reperfusion in human stroke. | Q43149020 | ||
Involvement of matrix metalloproteinase in thrombolysis-associated hemorrhagic transformation after embolic focal ischemia in rats | Q43901758 | ||
Neuroprotective effects of the SCR1-3 functional domain of CR1 on acute cerebral ischemia and reperfusion injury in rats | Q44006418 | ||
Modulation of leukocyte recruitment and IL-8 expression by the membrane attack complex of complement (C5b-9) in a rabbit model of antigen-induced arthritis. | Q44290211 | ||
Nanoparticle-mediated delivery of superoxide dismutase to the brain: an effective strategy to reduce ischemia-reperfusion injury | Q44306092 | ||
The role of neutrophils and platelets in a rabbit model of thromboembolic stroke | Q44470078 | ||
Impact of pexelizumab, an anti-C5 complement antibody, on total mortality and adverse cardiovascular outcomes in cardiac surgical patients undergoing cardiopulmonary bypass | Q44781832 | ||
Interrupting reperfusion as a stroke therapy: ischemic postconditioning reduces infarct size after focal ischemia in rats | Q46205659 | ||
Ischemic post-conditioning protects brain and reduces inflammation in a rat model of focal cerebral ischemia/reperfusion | Q46772986 | ||
NADPH oxidase plays a central role in blood-brain barrier damage in experimental stroke | Q46966136 | ||
Blockade of the mitochondrial permeability transition pore diminishes infarct size in the rat after transient middle cerebral artery occlusion | Q47261125 | ||
Application of in vivo ESR spectroscopy to measurement of cerebrovascular ROS generation in stroke | Q47314584 | ||
Platelet-endothelial cell interactions during ischemia/reperfusion: the role of P-selectin | Q47869831 | ||
Correlation between myeloperoxidase-quantified neutrophil accumulation and ischemic brain injury in the rat. Effects of neutrophil depletion | Q48094083 | ||
Neuronal protection in stroke by an sLex-glycosylated complement inhibitory protein | Q48152488 | ||
Reperfusion after thrombolytic therapy in ischemic stroke measured by single-photon emission computed tomography | Q48197994 | ||
Reperfusion injury after focal cerebral ischemia: the role of inflammation and the therapeutic horizon | Q48331684 | ||
Postischemic infusion of Cu/Zn superoxide dismutase or SOD:Tet451 reduces cerebral infarction following focal ischemia/reperfusion in rats. | Q48648395 | ||
Remote ischemic post-conditioning reduced brain damage in experimental ischemia/reperfusion injury. | Q50275842 | ||
N2 extenuates experimental ischemic stroke through platelet aggregation inhibition. | Q50550243 | ||
A chemical inhibitor of DRP1 uncouples mitochondrial fission and apoptosis. | Q51962923 | ||
P433 | issue | 4 | |
P921 | main subject | reperfusion injury | Q1413991 |
P577 | publication date | 2016-06-20 | |
P1433 | published in | Biochemistry & pharmacology : open access | Q27724920 |
P1476 | title | Ischemia-reperfusion Injury in the Brain: Mechanisms and Potential Therapeutic Strategies | |
P478 | volume | 5 |
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