Ozone-induced lung function decrements do not correlate with early airway inflammatory or antioxidant responses.
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T. Sandström | S. Holgate | H. Hedenström | F. Kelly | A. Blomberg | I. Mudway | C. Nordenhäll | A. Frew
[1] T. Sandström,et al. Antioxidant consumption and repletion kinetics in nasal lavage fluid following exposure of healthy human volunteers to ozone. , 1999, The European respiratory journal.
[2] T. Sandström,et al. Acute inflammatory responses in the airways and peripheral blood following short-term exposure to diesel exhaust in healthy human subjects. , 1999 .
[3] T. Sandström,et al. The inflammatory effects of 2 ppm NO2 on the airways of healthy subjects. , 1997, American journal of respiratory and critical care medicine.
[4] P. Morrow,et al. Effects of ozone on normal and potentially sensitive human subjects. Part II: Airway inflammation and responsiveness to ozone in nonsmokers and smokers. , 1997, Research report.
[5] S. Holgate,et al. Short-term ozone exposure upregulates P-selectin in normal human airways. , 1997, American journal of respiratory and critical care medicine.
[6] S. Holgate,et al. Antioxidant kinetics in lung lavage fluid following exposure of humans to nitrogen dioxide. , 1996, American journal of respiratory and critical care medicine.
[7] F. Kelly,et al. Differential depletion of human respiratory tract antioxidants in response to ozone challenge. , 1996, Free radical research.
[8] C. Scannell,et al. Ozone-induced decrements in FEV1 and FVC do not correlate with measures of inflammation. , 1996, American journal of respiratory and critical care medicine.
[9] R. Eccles,et al. A role for the nasal cycle in respiratory defence. , 1996, The European respiratory journal.
[10] W. MacNee,et al. Role of oxidants/antioxidants in smoking-induced lung diseases. , 1996, Free radical biology & medicine.
[11] M. C. Liu,et al. Ozone exposure in humans: inflammatory, small and peripheral airway responses. , 1995, American journal of respiratory and critical care medicine.
[12] A. Kimball,et al. Response to acute ozone exposure in healthy men. Results of a screening procedure. , 1995, American journal of respiratory and critical care medicine.
[13] W. Pryor. Mechanisms of radical formation from reactions of ozone with target molecules in the lung. , 1994, Free radical biology & medicine.
[14] J. Neher,et al. Health effects of outdoor air pollution. , 1994, American family physician.
[15] P. Howarth,et al. Bronchial biopsy evidence for leukocyte infiltration and upregulation of leukocyte-endothelial cell adhesion molecules 6 hours after local allergen challenge of sensitized asthmatic airways. , 1994, The Journal of clinical investigation.
[16] L. Folinsbee,et al. Respiratory responses to repeated prolonged exposure to 0.12 ppm ozone. , 1994, American journal of respiratory and critical care medicine.
[17] S. Kleeberger,et al. Mast cells modulate acute ozone-induced inflammation of the murine lung. , 1993, The American review of respiratory disease.
[18] J. Balmes,et al. Ozone-induced airway inflammation in human subjects as determined by airway lavage and biopsy. , 1993, The American review of respiratory disease.
[19] P. Howarth,et al. Immunohistochemistry on resin sections: a comparison of resin embedding techniques for small mucosal biopsies. , 1993, Biotechnic & histochemistry : official publication of the Biological Stain Commission.
[20] H. Coleridge,et al. Acute inhalation of ozone stimulates bronchial C-fibers and rapidly adapting receptors in dogs. , 1993, Journal of applied physiology.
[21] B. Halliwell,et al. Lipid peroxidation in hyperlipidaemic patients. A study of plasma using an HPLC-based thiobarbituric acid test. , 1993, Free radical research communications.
[22] R. Henderson,et al. Glutathione release by pulmonary alveolar macrophages in response to particles in vitro. , 1992, Toxicology letters.
[23] R. Mcdonald,et al. Time course of ozone-induced neutrophilia in normal humans. , 1991, The American review of respiratory disease.
[24] R. Devlin,et al. Time-dependent changes of markers associated with inflammation in the lungs of humans exposed to ambient levels of ozone. , 1991, Toxicologic pathology.
[25] D. House,et al. Exposure of humans to ambient levels of ozone for 6.6 hours causes cellular and biochemical changes in the lung. , 1991, American journal of respiratory cell and molecular biology.
[26] G. Cerniglia,et al. Microtiter plate assay for the measurement of glutathione and glutathione disulfide in large numbers of biological samples. , 1990, Analytical biochemistry.
[27] H. Koren,et al. Nasal lavage as a tool in assessing acute inflammation in response to inhaled pollutants. , 1990, Toxicology.
[28] D. House,et al. Ozone-induced inflammation in the lower airways of human subjects. , 1989, The American review of respiratory disease.
[29] R. Crystal,et al. Normal alveolar epithelial lining fluid contains high levels of glutathione. , 1987, Journal of applied physiology.
[30] M. Hazucha. Relationship between ozone exposure and pulmonary function changes. , 1987, Journal of applied physiology.
[31] H. Hedenström,et al. Utility of relating pulmonary airflow measures to total lung capacity. , 1986, Bulletin europeen de physiopathologie respiratoire.
[32] H. Boushey,et al. O3-induced change in bronchial reactivity to methacholine and airway inflammation in humans. , 1986, Journal of applied physiology.
[33] A. Sovijarvi. Flow-volume response to inhaled methacholine in asthmatics; comparison of area under the curve (AFV) with conventional parameters. , 1986, European journal of respiratory diseases. Supplement.
[34] J. H. Roum,et al. Bronchial hyperreactivity occurs in steroid-treated guinea pigs depleted of leukocytes by cyclophosphamide. , 1985, Journal of applied physiology.
[35] A. Meister. New aspects of glutathione biochemistry and transport: selective alteration of glutathione metabolism. , 1984, Federation proceedings.
[36] Y. Ozaki,et al. Simultaneous determination of uric and ascorbic acids in human serum by reversed-phase high-performance liquid chromatography with electrochemical detection. , 1984, Analytical biochemistry.
[37] D. House,et al. Pulmonary effects of ozone exposure during exercise: dose-response characteristics. , 1983, Journal of applied physiology: respiratory, environmental and exercise physiology.
[38] M. D. de Kock,et al. A new lung function index: the area under the maximum expiratory flow-volume curve. , 1979, Respiration; international review of thoracic diseases.
[39] J. G. Bieri,et al. Determination of alpha-tocopherol in erythrocytes by gas-liquid chromatography. , 1970, Journal of lipid research.