Department of Surgery
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Botanical therapies in sexual dysfunction.
Phytotherapy research : PTR Jun, 2005 | Pubmed ID: 16114077
Antioxidant and DNA protecting properties of anti-fatigue herb Trichopus zeylanicus.
Phytotherapy research : PTR Aug, 2005 | Pubmed ID: 16177968
Botanical therapies in chronic fatigue.
Phytotherapy research : PTR Feb, 2006 | Pubmed ID: 16444659
Trichopus zeylanicus combats fatigue without amphetamine-mimetic activity.
Phytotherapy research : PTR Mar, 2006 | Pubmed ID: 16617470
Current concepts in apoptosis: the physiological suicide program revisited.
Cellular & molecular biology letters , 2006 | Pubmed ID: 16977376
Apoptotic signaling induces hyperpermeability following hemorrhagic shock.
American journal of physiology. Heart and circulatory physiology Jun, 2007 | Pubmed ID: 17307990
Neuroprotective mechanisms of ayurvedic antidementia botanical Bacopa monniera.
Phytotherapy research : PTR Oct, 2007 | Pubmed ID: 17604373
Anti-Parkinson botanical Mucuna pruriens prevents levodopa induced plasmid and genomic DNA damage.
Phytotherapy research : PTR Dec, 2007 | Pubmed ID: 17622977
Antiparkinson drug--Mucuna pruriens shows antioxidant and metal chelating activity.
Phytotherapy research : PTR Jan, 2008 | Pubmed ID: 18064727
Alpha lipoic acid attenuates microvascular endothelial cell hyperpermeability by inhibiting the intrinsic apoptotic signaling.
American journal of surgery Feb, 2008 | Pubmed ID: 18096126
Angiopoietin-1 inhibits intrinsic apoptotic signaling and vascular hyperpermeability following hemorrhagic shock.
American journal of physiology. Heart and circulatory physiology May, 2008 | Pubmed ID: 18344375
Mitochondrial complex III is involved in proapoptotic BAK-induced microvascular endothelial cell hyperpermeability.
Shock (Augusta, Ga.) May, 2008 | Pubmed ID: 18414238
Caspases - an update.
Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology Sep, 2008 | Pubmed ID: 18602321
Alpha-lipoic acid attenuates hemorrhagic shock-induced apoptotic signaling and vascular hyperpermeability.
Shock (Augusta, Ga.) Nov, 2008 | Pubmed ID: 18923301
Centella asiatica extract selectively decreases amyloid beta levels in hippocampus of Alzheimer's disease animal model.
Phytotherapy research : PTR Jan, 2009 | Pubmed ID: 19048607
17beta-estradiol mediates protection against microvascular endothelial cell hyperpermeability.
American journal of surgery Feb, 2009 | Pubmed ID: 19185107
Vascular leak in a rat model of preeclampsia.
American journal of nephrology , 2009 | Pubmed ID: 19194101
Cyclosporine A prevents vascular hyperpermeability after hemorrhagic shock by inhibiting apoptotic signaling.
The Journal of trauma Apr, 2009 | Pubmed ID: 19359911
(-)-Deprenyl inhibits vascular hyperpermeability after hemorrhagic shock.
Shock (Augusta, Ga.) Jan, 2010 | Pubmed ID: 19373132
(-)-Deprenyl inhibits thermal injury-induced apoptotic signaling and hyperpermeability in microvascular endothelial cells.
Journal of burn care & research : official publication of the American Burn Association Nov-Dec, 2009 | Pubmed ID: 19826263
17beta-estradiol mediated protection against vascular leak after hemorrhagic shock: role of estrogen receptors and apoptotic signaling.
Shock (Augusta, Ga.) Sep, 2010 | Pubmed ID: 20160663
Cyclosporine A--protection against microvascular hyperpermeability is calcineurin independent.
American journal of surgery Apr, 2010 | Pubmed ID: 20359571
Curcumin inhibits reactive oxygen species formation and vascular hyperpermeability following haemorrhagic shock.
Clinical and experimental pharmacology & physiology Sep, 2010 | Pubmed ID: 20528978
Inhibition of VE-cadherin proteasomal degradation attenuates microvascular hyperpermeability.
Microcirculation (New York, N.Y. : 1994) Jan, 2011 | Pubmed ID: 21166925
Role of β-catenin in regulating microvascular endothelial cell hyperpermeability.
The Journal of trauma Feb, 2011 | Pubmed ID: 21307750
β-Catenin dynamics in the regulation of microvascular endothelial cell hyperpermeability.
Shock (Augusta, Ga.) Mar, 2012 | Pubmed ID: 22089197
Differential effects of dopaminergic neurotoxins on DNA cleavage.
Life sciences Jul, 2012 | Pubmed ID: 22213117
The effects of hypothermia and L-arginine on skeletal muscle function in ischemia-reperfusion injury.
Journal of orthopaedic trauma Oct, 2012 | Pubmed ID: 22430525
Marrow stimulation improves meniscal healing at early endpoints in a rabbit meniscal injury model.
Arthroscopy : the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association Jan, 2013 | Pubmed ID: 23200846
Inhibition of Fas-Fas ligand interaction attenuates microvascular hyperpermeability following hemorrhagic shock.
Shock (Augusta, Ga.) Feb, 2013 | Pubmed ID: 23324886
Microvascular endothelial cell hyperpermeability induced by endogenous caspase 3 activator staurosporine.
The journal of trauma and acute care surgery Feb, 2013 | Pubmed ID: 23354245
Tumor necrosis factor-related apoptosis-inducing ligand promotes microvascular endothelial cell hyperpermeability through phosphatidylinositol 3-kinase pathway.
American journal of surgery Apr, 2013 | Pubmed ID: 23375756
Regulation of tumor necrosis factor-α-induced microvascular endothelial cell hyperpermeability by recombinant B-cell lymphoma-extra large.
The Journal of surgical research Sep, 2013 | Pubmed ID: 23731686
The effects of inflammatory cytokines on lymphatic endothelial barrier function.
Angiogenesis Apr, 2014 | Pubmed ID: 24141404
Doxycycline attenuates burn-induced microvascular hyperpermeability.
The journal of trauma and acute care surgery Dec, 2013 | Pubmed ID: 24256679
Reactive oxygen species-caspase-3 relationship in mediating blood-brain barrier endothelial cell hyperpermeability following oxygen-glucose deprivation and reoxygenation.
Microcirculation (New York, N.Y. : 1994) Feb, 2014 | Pubmed ID: 24372803
Vascular hyperpermeability and aging.
Aging and disease Apr, 2014 | Pubmed ID: 24729937
Melatonin inhibits thermal injury-induced hyperpermeability in microvascular endothelial cells.
The journal of trauma and acute care surgery Dec, 2014 | Pubmed ID: 25051382
The role of intrinsic apoptotic signaling in hemorrhagic shock-induced microvascular endothelial cell barrier dysfunction.
Journal of cardiovascular translational research Nov, 2014 | Pubmed ID: 25277298
Tumor necrosis factor-α disruption of brain endothelial cell barrier is mediated through matrix metalloproteinase-9.
American journal of surgery Dec, 2014 | Pubmed ID: 25312844
Tumor necrosis factor-α-induced microvascular endothelial cell hyperpermeability: role of intrinsic apoptotic signaling.
Journal of physiology and biochemistry Dec, 2014 | Pubmed ID: 25392259
Blood-brain barrier dysfunction following traumatic brain injury.
Metabolic brain disease Jan, 2015 | Pubmed ID: 25624154
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