Hyperoxia in the intensive care unit: why more is not always better
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[1] G Nash,et al. Pulmonary lesions associated with oxygen therapy and artificial ventilation. , 1967, Laval medical.
[2] W. Zapol,et al. Pulmonary artery remodeling and pulmonary hypertension after exposure to hyperoxia for 7 days. A morphometric and hemodynamic study. , 1984, The American journal of pathology.
[3] J. Davis,et al. Lung injury in the neonatal piglet caused by hyperoxia and mechanical ventilation. , 1989, Journal of applied physiology.
[4] J. Sznajder,et al. Lung liquid clearance and Na,K-ATPase during acute hyperoxia and recovery in rats. , 1995, American journal of respiratory and critical care medicine.
[5] K. Asadullah,et al. Monocyte deactivation in septic patients: Restoration by IFN-γ treatment , 1997, Nature Medicine.
[6] K. Asadullah,et al. Monocyte deactivation in septic patients: restoration by IFN-gamma treatment. , 1997, Nature medicine.
[7] Y. Donati,et al. Oxygen toxicity in mouse lung: pathways to cell death. , 1998, American journal of respiratory cell and molecular biology.
[8] T. Standiford,et al. IL-10 is a major mediator of sepsis-induced impairment in lung antibacterial host defense. , 1999, Journal of immunology.
[9] O. Akca,et al. Supplemental Perioperative Oxygen to Reduce the Incidence of Surgical-Wound Infection , 2000 .
[10] A. Choi,et al. AP-1 and STAT mediate hyperoxia-induced gene transcription of heme oxygenase-1. , 2000, American journal of physiology. Lung cellular and molecular physiology.
[11] T. Standiford,et al. Intrapulmonary TNF Gene Therapy Reverses Sepsis-Induced Suppression of Lung Antibacterial Host Defense1 , 2000, The Journal of Immunology.
[12] R. Auer,et al. Eubaric hyperoxemia and experimental cerebral infarction , 2002, Annals of neurology.
[13] Jean-Yves Fagon,et al. Ventilator-associated pneumonia. , 2002 .
[14] Rick M Dijkhuizen,et al. Normobaric hyperoxia reduces MRI diffusion abnormalities and infarct size in experimental stroke , 2002, Neurology.
[15] J. Sznajder,et al. Hyperoxia-induced Apoptosis Does Not Require Mitochondrial Reactive Oxygen Species and Is Regulated by Bcl-2 Proteins* , 2002, The Journal of Biological Chemistry.
[16] C. Hales,et al. Interactions of lung stretch, hyperoxia, and MIP-2 production in ventilator-induced lung injury. , 2002, Journal of applied physiology.
[17] H. Wajant,et al. The Fas Signaling Pathway: More Than a Paradigm , 2002, Science.
[18] Y. Ho. Transgenic and knockout models for studying the role of lung antioxidant enzymes in defense against hyperoxia. , 2002, American journal of respiratory and critical care medicine.
[19] A. Choi,et al. Reactive oxygen species and extracellular signal-regulated kinase 1/2 mitogen-activated protein kinase mediate hyperoxia-induced cell death in lung epithelium. , 2003, American journal of respiratory cell and molecular biology.
[20] T. Standiford,et al. Hyperoxia Mediates Acute Lung Injury and Increased Lethality in Murine Legionella Pneumonia: The Role of Apoptosis1 , 2003, The Journal of Immunology.
[21] Seamus J. Martin,et al. Cell Stress-Associated Caspase Activation: Intrinsically Complex? , 2003, Science's STKE.
[22] R. Veldhuizen,et al. High oxygen concentrations predispose mouse lungs to the deleterious effects of high stretch ventilation. , 2003, Journal of applied physiology.
[23] C. Barazzone-Argiroffo,et al. Alveolar Cell Death in Hyperoxia‐Induced Lung Injury , 2003, Annals of the New York Academy of Sciences.
[24] Simon C Watkins,et al. Necrotic Cell Death in Response to Oxidant Stress Involves the Activation of the Apoptogenic Caspase-8/Bid Pathway* , 2003, Journal of Biological Chemistry.
[25] T. Standiford,et al. Sublethal Hyperoxia Impairs Pulmonary Innate Immunity1 , 2003, The Journal of Immunology.
[26] Simon C Watkins,et al. Deficiency in the c-Jun NH2-terminal kinase signaling pathway confers susceptibility to hyperoxic lung injury in mice. , 2003, American journal of physiology. Lung cellular and molecular physiology.
[27] A. Choi,et al. Pathways of cell signaling in hyperoxia. , 2003, Free radical biology & medicine.
[28] Y. Donati,et al. Mitochondrial cytochrome c release is a key event in hyperoxia-induced lung injury: protection by cyclosporin A. , 2004, American journal of physiology. Lung cellular and molecular physiology.
[29] E. Chi,et al. Augmented lung injury due to interaction between hyperoxia and mechanical ventilation* , 2004, Critical care medicine.
[30] D. Cook,et al. Evidence-Based Clinical Practice Guideline for the Prevention of Ventilator-Associated Pneumonia , 2004, Annals of Internal Medicine.
[31] C. Lien,et al. Surgical site infection and the routine use of perioperative hyperoxia in a general surgical population: a randomized controlled trial. , 2004, JAMA.
[32] R. Sue,et al. CXCR 2 Is Critical to Hyperoxia-Induced Lung Injury 1 , 2004 .
[33] K. Liu,et al. Interstitial pO2 in Ischemic Penumbra and Core are Differentially Affected following Transient Focal Cerebral Ischemia in Rats , 2004, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[34] Marek Ancukiewicz,et al. Higher versus lower positive end-expiratory pressures in patients with the acute respiratory distress syndrome. , 2009, The New England journal of medicine.
[35] R. Sue,et al. CXCR2 Is Critical to Hyperoxia-Induced Lung Injury1 , 2004, The Journal of Immunology.
[36] Surendra Sharma,et al. Hyperoxia-induced apoptosis and Fas/FasL expression in lung epithelial cells. , 2005, American journal of physiology. Lung cellular and molecular physiology.
[37] B. Ma,et al. Bcl-2-related protein A1 is an endogenous and cytokine-stimulated mediator of cytoprotection in hyperoxic acute lung injury. , 2005, The Journal of clinical investigation.
[38] R. Homer,et al. Cutting Edge: TLR4 Deficiency Confers Susceptibility to Lethal Oxidant Lung Injury1 , 2005, The Journal of Immunology.
[39] S. Archer,et al. Vascular Endothelial Growth Factor Gene Therapy Increases Survival, Promotes Lung Angiogenesis, and Prevents Alveolar Damage in Hyperoxia-Induced Lung Injury: Evidence That Angiogenesis Participates in Alveolarization , 2005, Circulation.
[40] D. Green,et al. Connected to Death: The (Unexpurgated) Mitochondrial Pathway of Apoptosis , 2005, Science.
[41] V. Bhandari,et al. Cytokines in tolerance to hyperoxia-induced injury in the developing and adult lung. , 2006, Free radical biology & medicine.
[42] R. Medzhitov,et al. Inducible Activation of TLR4 Confers Resistance to Hyperoxia-Induced Pulmonary Apoptosis , 2006, The Journal of Immunology.
[43] R. Paine,et al. GM-CSF and the impaired pulmonary innate immune response following hyperoxic stress. , 2006, American journal of physiology. Lung cellular and molecular physiology.
[44] T. Blackwell,et al. Hyperoxia and Apoptosis in Developing Mouse Lung Mesenchyme , 2006, Pediatric Research.
[45] Ku-Chou Chang,et al. Venturi mask adjuvant oxygen therapy in severe acute ischemic stroke. , 2006, Archives of neurology.
[46] A. Fisher,et al. Transgenic mice overexpressing peroxiredoxin 6 show increased resistance to lung injury in hyperoxia. , 2006, American journal of respiratory cell and molecular biology.
[47] Patty J. Lee,et al. Comment on “CD226 Is Specifically Expressed on the Surface of Th1 Cells and Regulates Their Expansion and Effector Functions” , 2006, The Journal of Immunology.
[48] G. Dbaibo,et al. Apoptosis and the activity of ceramide, Bax and Bcl-2 in the lungs of neonatal rats exposed to limited and prolonged hyperoxia , 2006, Respiratory research.
[49] Mauricio Valencia,et al. Ventilator-associated pneumonia , 2009, Current opinion in critical care.