Association between exhaled breath condensate nitrate + nitrite levels with ambient coarse particle exposure in subjects with airways disease
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R. Harrison | G. Hoek | K. Katsouyanni | J. Pekkanen | K. Hämeri | A. Analitis | J. D. de Hartog | J. Ayres | A. Karakatsani | I. Kavouras | H. ten Brink | A. Mansur | C. Meddings | S. Manney | D. Perifanou | N. Kotronarou
[1] S. Hulo,et al. Analysis of nitrogen oxides (NOx) in the exhaled breath condensate (EBC) of subjects with asthma as a complement to exhaled nitric oxide (FeNO) measurements: a cross-sectional study , 2011, BMC Research Notes.
[2] Howard M Kipen,et al. Acute effects of motor vehicle traffic‐related air pollution exposures on measures of oxidative stress in human airways , 2010, Annals of the New York Academy of Sciences.
[3] R. Harrison,et al. Lung function and indicators of exposure to indoor and outdoor particulate matter among asthma and COPD patients , 2009, Occupational and Environmental Medicine.
[4] Paolo Montuschi,et al. Acute Effects of Air Pollution on Pulmonary Function, Airway Inflammation, and Oxidative Stress in Asthmatic Children , 2008, Environmental health perspectives.
[5] Roy M Harrison,et al. Sources and properties of non-exhaust particulate matter from road traffic: a review. , 2008, The Science of the total environment.
[6] Simon Kingham,et al. The effect of ambient air pollution on respiratory health of school children: a panel study , 2008, Environmental health : a global access science source.
[7] Peter D Sly,et al. Exhaled breath malondialdehyde as a marker of effect of exposure to air pollution in children with asthma. , 2008, The Journal of allergy and clinical immunology.
[8] J. Sunyer,et al. Air Pollution, Airway Inflammation, and Lung Function in a Cohort Study of Mexico City Schoolchildren , 2008, Environmental health perspectives.
[9] R. Harrison,et al. Dependence of Home Outdoor Particulate Mass and Number Concentrations on Residential and Traffic Features in Urban Areas , 2007, Journal of the Air & Waste Management Association.
[10] T. Brüning,et al. Exhaled breath condensate analysis: evaluation of a methodological setting for epidemiological field studies. , 2007, Journal of physiology and pharmacology : an official journal of the Polish Physiological Society.
[11] Ilias G. Kavouras,et al. Spatial variation of particle number and mass over four European cities , 2007 .
[12] E. Wouters,et al. Exhaled nitric oxide and biomarkers in exhaled breath condensate indicate the presence, severity and control of childhood asthma , 2007, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology.
[13] D. Yates,et al. Nitric Oxide and Exhaled Breath Nitrite/Nitrates in Chronic Obstructive Pulmonary Disease Patients , 2007, Respiration.
[14] J. Kaufman,et al. Effect of particulate air pollution on lung function in adult and pediatric subjects in a Seattle panel study. , 2006, Chest.
[15] Aristidis K. Nikoloulopoulos,et al. Short-Term Effects of Ambient Particles on Cardiovascular and Respiratory Mortality , 2006, Epidemiology.
[16] P. J. Barnes,et al. Exhaled breath condensate: methodological recommendations and unresolved questions , 2005, European Respiratory Journal.
[17] B. Brunekreef,et al. Epidemiological evidence of effects of coarse airborne particles on health , 2005, European Respiratory Journal.
[18] J. Innes,et al. Effects of breathing pattern and inspired air conditions on breath condensate volume, pH, nitrite, and protein concentrations , 2004, Thorax.
[19] M. Corradi,et al. Aldehydes and glutathione in exhaled breath condensate of children with asthma exacerbation. , 2003, American journal of respiratory and critical care medicine.
[20] J Schwartz,et al. Short-term effects of particulate air pollution on cardiovascular diseases in eight European cities , 2002, Journal of epidemiology and community health.
[21] R. Burnett,et al. Lung cancer, cardiopulmonary mortality, and long-term exposure to fine particulate air pollution. , 2002, JAMA.
[22] J. Schwartz,et al. Acute effects of particulate air pollution on respiratory admissions: results from APHEA 2 project. Air Pollution and Health: a European Approach. , 2001, American journal of respiratory and critical care medicine.
[23] G. Papatheodorou,et al. Total nitrite/nitrate in expired breath condensate of patients with asthma. , 2001, Respiratory medicine.
[24] L. Ignarro,et al. Condensed expirate nitrite as a home marker for acute asthma , 1995, The Lancet.
[25] D. Postma,et al. The Dutch hypothesis (chronic non-specific lung disease) revisited. , 1991, The European respiratory journal.
[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] S Moncada,et al. Biosynthesis of nitric oxide from L-arginine. A pathway for the regulation of cell function and communication. , 1989, Biochemical pharmacology.
[28] R. Harrison,et al. Evaluating the Toxicity of Airborne Particulate Matter and Nanoparticles by Measuring Oxidative Stress Potential — A Workshop Report and Consensus Statement , 2008 .
[29] Ilias G. Kavouras,et al. Indoor-outdoor relationships of particle number and mass in four European cities , 2008 .
[30] Bert Brunekreef,et al. Personal, indoor, and outdoor exposures to PM2.5 and its components for groups of cardiovascular patients in Amsterdam and Helsinki. , 2005, Research report.
[31] Vicki Stone,et al. Current hypotheses on the mechanisms of toxicity of ultrafine particles. , 2003, Annali dell'Istituto superiore di sanita.