Nitrogen dioxide (2024)

1.

Hazardous Substances Data Bank (HSDB) [online database]. Nitrogen dioxide. Bethesda, MD: National Library of Medicine; 2005. [9 June 2010]. http://toxnet​.nlm.nih​.gov/cgi-bin/sis/search/f?​./temp/∼0P3dBt:2.

2.

Arashidani K, et al. Indoor pollution from heating. Industrial Health. 1996;34:205–215. [PubMed: 8768665]

3.

Levy JI, et al. Determinants of nitrogen dioxide concentrations in indoor ice skating rinks. American Journal of Public Health. 1998;88:1781–1786. [PMC free article: PMC1509046] [PubMed: 9842374]

4.

Glorennec P, et al. Is a quantitative risk assessment of air quality in underground parking garages possible? Indoor Air. 2008;18:283–292. [PubMed: 18717983]

5.

Kotzias D, et al. The INDEX project. Critical appraisal of the setting and implementation of indoor exposure limits in the EU. Ispra: European Commission Joint Research Centre; 2005.

6.

Franchi M, et al. Towards healthy air in dwellings in Europe. Brussels: European Federation of Allergy and Airways Diseases Patients Associations; 2004.

7.

Hagenbjork-Gustafsson A, et al. Measurements of indoor and outdoor nitrogen dioxide concentrations using a diffusive sampler. Analyst. 1996;121:1261–1264. [PubMed: 8831283]

8.

Levy JI, et al. Impact of residential nitrogen dioxide exposure on personal exposure: an international study. Journal of the Air & Waste Management Association. 1998;48:553–560. [PubMed: 9949739]

9.

Leung R, et al. Indoor environment of residential homes in Hong Kong – relevance to asthma and allergic disease. Clinical and Experimental Allergy. 1998;28:585–590. [PubMed: 9645595]

10.

Shima M, Adachi M. Effect of outdoor and indoor nitrogen dioxide on respiratory symptoms in schoolchildren. International Journal of Epidemiology. 2000;29:862–870. [PubMed: 11034970]

11.

Lambert WE, et al. Nitrogen dioxide and respiratory illness in children. Part II. Assessment of exposure to nitrogen dioxide. Research Report, Health Effects Institute. 1993;58:33–50. [PubMed: 8240759]

12.

Simoni M, et al. The Po River Delta (north Italy) indoor epidemiological study: effects of pollutant exposure on acute respiratory symptoms and respiratory function in adults. Archives of Environmental Health. 2002;57:130–136. [PubMed: 12194158]

13.

Garcia-Algar O, et al. Sources and concentrations of indoor nitrogen dioxide in Barcelona, Spain. Journal of the Air & Waste Management Association. 2003;53:1312–1317. [PubMed: 14649750]

14.

Committee on the Medical Effects of Air Pollutants. Guidance on the effects on health of indoor air pollutants. London: Department of Health; 2004.

15.

Air quality guidelines: global update 2005 Particulate matter, ozone, nitrogen dioxide and sulfur dioxide. Copenhagen: WHO Regional Office for Europe; 2006.

16.

Hazenkamp-von Arx ME, et al. PM2.5 and NO2 assessment in 21 European study centres of ECRHS II: annual means and seasonal differences. Atmospheric Environment. 2004;38:1943–1953.

17.

Kodama Y, et al. Environmental NO2 concentration and exposure in daily life along main roads in Tokyo. Environmental Research. 2002;89:236–244. [PubMed: 12176007]

18.

Nakai S, Nitta H, Maeda K. Respiratory health associated with exposure to automobile exhaust. II. Personal NO2 exposure levels according to distance from the roadside. Journal of Exposure Analysis and Environmental Epidemiology. 1995;5:125–136. [PubMed: 7492902]

19.

Janssen NAH, et al. Assessment of exposure to traffic related air pollution of children attending schools near motorways. Atmospheric Environment. 2001;35:3875–3884.

20.

Spengler JD, Samet JM, McCarthy JF. Indoor air quality handbook. New York: McGraw-Hill Professional; 2001.

21.

Blondeau P, et al. Relationship between outdoor and indoor air quality in eight French schools. Indoor Air. 2005;15:2–12. [PubMed: 15660564]

22.

Weschler CJ, et al. Workgroup report: indoor chemistry and health. Environmental Health Perspectives. 2006;114:442–446. [PMC free article: PMC1392240] [PubMed: 16507469]

23.

Kattan M, et al. Health effects of indoor nitrogen dioxide and passive smoking on urban asthmatic children. Journal of Allergy & Clinical Immunology. 2007;120:618–624. [PubMed: 17582483]

24.

Baxter LK, et al. Predictors of concentrations of nitrogen dioxide, fine particulate matter, and particle constituents inside of lower socioeconomic status urban homes. Journal of Exposure Science & Environmental Epidemiology. 2007;5:433–444. [PubMed: 17051138]

25.

Baxter LK, et al. Predicting residential indoor concentrations of nitrogen dioxide, fine particulate matter, and elemental carbon using questionnaire and geographic information system based data. Atmospheric Environment. 2007;41:6561–6571. [PMC free article: PMC2760735] [PubMed: 19830252]

26.

Hansel N, et al. A longitudinal study of indoor nitrogen dioxide levels and respiratory symptoms in inner city children with asthma. Environmental Health Perspectives. 2008;116:1428–1432. [PMC free article: PMC2569107] [PubMed: 18941590]

27.

Pilotto LS, et al. Respiratory effects associated with indoor nitrogen dioxide exposure in children. International Journal of Epidemiology. 1997;26:788–796. [PubMed: 9279611]

28.

Lévesque B, et al. Wood-burning appliances and indoor air quality. Science of the Total Environment. 2001;281:47–62. [PubMed: 11778959]

29.

Kumie A, et al. Magnitude of indoor NO2 from biomass fuels in rural settings of Ethiopia. Indoor Air. 2008;19:14–21. [PubMed: 19191924]

30.

Lawrence AJ, Masih A, Taneja A. Indoor/outdoor relationships of carbon monoxide and oxides of nitrogen in domestic homes with roadside, urban and rural locations in a central Indian region. Indoor Air. 2005;15:76–82. [PubMed: 15737150]

31.

Garrett MH, Hooper MA, Hooper BM. Nitrogen dioxide in Australian homes: levels and sources. Journal of the Air & Waste Management Association. 1999;49:76–81. [PubMed: 9951416]

32.

Zota A, et al. Ventilation in public housing: implications for indoor nitrogen dioxide concentrations. Indoor Air. 2005;15:393–401. [PubMed: 16268829]

33.

Dutton S, Hannigan M, Miller S. Indoor pollutant levels from the use of unvented natural gas fireplaces in Boulder, Colorado. Journal of the Air & Waste Management Association. 2001;51:1654–1661. [PubMed: 15666470]

34.

Basu R, Samet J. A review of the epidemiological evidence on health effects of nitrogen dioxide exposure from gas stoves. Journal of Environmental Medicine. 1999;1:173–187.

35.

Spengler JD, Sexton K. Indoor air pollution: a public health perspective. Science. 1983;221:9–17. [PubMed: 6857273]

36.

Dennekamp M, et al. Ultrafine particles and nitrogen oxides generated by gas and electric cooking. Occupational and Environmental Medicine. 2001;58:511–516. [PMC free article: PMC1740176] [PubMed: 11452045]

37.

Franklin P, et al. Comparison of peak and average nitrogen dioxide concentrations inside homes. Atmospheric Environment. 2006;40:7449–7454.

38.

Dimitroulopoulou C, et al. Modelling of indoor exposure to nitrogen dioxide in the UK. Atmospheric Environment. 2001;35:269–279.

39.

Lee K, et al. Nitrous acid, nitrogen dioxide, and ozone concentrations in residential environments. Environmental Health Perspectives. 2002;110:145–149. [PMC free article: PMC1240728] [PubMed: 11836142]

40.

van Strien RT, et al. Exposure to NO2 and nitrous acid and respiratory symptoms in the first year of life. Epidemiology. 2004;15:471–478. [PubMed: 15232409]

41.

Lee SC, Wang B. Characteristics of emissions of air pollutants from mosquito coils and candles burning in a large environmental chamber. Atmospheric Environment. 2006;40:2128–2138.

42.

Pennanen AS, et al. Characterization of air quality problems in five Finnish indoor ice arenas. Journal of the Air & Waste Management Association. 1997;47:1079–1086. [PubMed: 9354145]

43.

Salonen RO, et al. Health risk assessment of indoor air pollution in Finnish ice arenas. Environment International. 2008;34:51–57. [PubMed: 17716732]

44.

Topp R, et al. Indoor and outdoor air concentrations of BTEX and NO2: correlation of repeated measurements. Journal of Environmental Monitoring. 2004;10:807–812. [PubMed: 15480494]

45.

Schwab M, et al. Seasonal and yearly patterns of indoor nitrogen dioxide levels: data from Albuquerque, New Mexico. Indoor Air. 1994;4:8–22.

46.

Yang W, Lee K, Chung M. Characterization of indoor air quality using multiple measurements of nitrogen dioxide. Indoor Air. 2004;14:105–111. [PubMed: 15009416]

47.

Halliwell B, et al. Interaction of nitrogen dioxide with human plasma: antioxidant depletion and oxidative damage. FEBS Letters. 1992;313:62–66. [PubMed: 1426270]

48.

Kelly FJ, Tetley TD. Nitrogen dioxide depletes uric acid and ascorbic acid but not glutathione from lung lining fluid. Biochemical Journal. 1997;325:95–99. [PMC free article: PMC1218533] [PubMed: 9224634]

49.

Olker C, et al. Impaired superoxide radical production by bronchoalveolar lavage cells from NO(2)-exposed rats. Free Radical Biology and Medicine. 2004;37:977–987. [PubMed: 15336314]

50.

Spannhake EW, et al. Synergism between rhinovirus infection and oxidant pollutant exposure enhances airway epithelial cell cytokine production. Environmental Health Perspectives. 2002;110:665–670. [PMC free article: PMC1240912] [PubMed: 12117643]

51.

Devalia JL, et al. Human bronchial epithelial cell dysfunction following in vitro exposure to nitrogen dioxide. European Respiratory Journal. 1993;6:1308–1316. [PubMed: 8287947]

52.

Schierhorn K, et al. Influence of ozone and nitrogen dioxide on histamine and interleukin formation in a human nasal mucosa culture system. American Journal of Respiratory Cell and Molecular Biology. 1999;20:1013–1019. [PubMed: 10226072]

53.

Ayyagari VN, et al. Pro-inflammatory responses of human bronchial epithelial cells to acute nitrogen dioxide exposure. Toxicology. 2004;197:149–164. [PubMed: 15003325]

54.

Ayyagari VN, et al. Effects of nitrogen dioxide on the expression of intercellular adhesion molecule-1, neutrophil adhesion, and cytotoxicity: studies in human bronchial epithelial cells. Inhalation Toxicology. 2007;19:181–194. [PubMed: 17169865]

55.

Persinger RL, et al. Molecular mechanisms of nitrogen dioxide induced epithelial injury in the lung. Molecular and Cellular Biochemistry. 2002;234/235:71–80. [PubMed: 12162462]

56.

Miller FJ, et al. Pulmonary dosimetry of nitrogen dioxide in animals and man. In: Schneider T, Grant L, editors. Air pollution by nitrogen oxides Proceedings of the US–Dutch International Symposium, Maastricht. Netherlands: Amsterdam, Elsevier; 1982. pp. 377–386. (Studies in Environmental Science, No. 21)

57.

Overton JH Jr. Physicochemical processes and the formulation of dosimetry models. In: Miller FJ, Menzel DB, editors. Fundamentals of extrapolation modeling of inhaled toxicants: ozone and nitrogen dioxide. Washington, DC: Hemisphere; 1984. pp. 93–114.

58.

Overton JH, et al. Se ignificances of thvariability of airway paths and their air flow rates to dosimetry model predictions of the absorption of gases. Research Triangle Park, NC: US Environmental Protection Agency; 1987. (EPA Report No. EPA-600/D-87-364)

59.

Tsujino I, Kawakami Y, Kaneko A. Comparative simulation of gas transport in airway models of rat, dog, and human. Inhalation Toxicology. 2005;17:475–485. [PubMed: 16020042]

60.

Air quality criteria for oxides of nitrogen. Research Triangle Park, NC: US Environmental Protection Agency; 1993. (EPA Report No. EPA/600/8-91/049aF-cF)

61.

Berglund M, et al. Health risk evaluation of nitrogen oxides. Scandinavian Journal of Work, Environment and Health. 1993;19(Suppl. 2):1–72. [PubMed: 8209191]

62.

Advisory Group on the Medical Aspects of Air Pollution Episodes. Third report: oxides of nitrogen. London: H.M. Stationery Office; 1993.

63.

Sagai M, et al. Studies on the biochemical effects of nitrogen dioxide. IV. Relation between the change of lipid peroxidation and the antioxidative protective system in rat lungs upon life span exposure to low levels of NO2. Toxicology and Applied Pharmacology. 1984;73:444–456. [PubMed: 6719462]

64.

Ichinose T, et al. [Changes of lipid peroxidation and antioxidative protective systems in lungs of rats exposed acutely, subacutely and chronically to nitrogen dioxide]. Taiki Osen Gakkaishi. 1983;18:132–146. (in Japanese)

65.

Ichinose T, Sagai M. Studies on biochemical effects of nitrogen dioxide. III. Changes of the antioxidative protective systems in rat lungs and of lipid peroxidation by chronic exposure. Toxicology and Applied Pharmacology. 1982;66:1–8. [PubMed: 7157379]

66.

Hochscheid R, et al. NO2-induced acute and chronic lung injury cause imbalance of glutathione metabolism in type II pneumocytes. Medical Science Monitor. 2005;11:273–279. [PubMed: 16049373]

67.

De Burbure CY, et al. Lung permeability, antioxidant status, and NO2 inhalation: a selenium supplementation study in rats. Journal of Toxicology and Environmental Health, Part A. 2007;70:284–294. [PubMed: 17365591]

68.

VDI-Handbuch Reinhaltung der Luft. Vol. 1. Düsseldorf: VDI-Verlag; 1985. Verein Deutscher Ingenieure. Maximale Immissions-Werte zum Schutze des Menschen: Maximale Immissions-Konzentrationen für Stickstoffdioxid.

69.

Wagner HM. Update of a study for establishing criteria (dose/effect relationships) for nitrogen oxides. Luxembourg: Office for Official Publications of the European Communities; 1985. (Report No. EUR 9412 EN)

70.

Rombout PJA, et al. Influence of exposure regimen on nitrogen dioxide-induced morphological changes in the rat lung. Environmental Research. 1986;41:466–480. [PubMed: 3780645]

71.

Evans MJ, et al. Transformation of alveolar Type 2 cells to Type 1 cells following exposure to NO2. Experimental Molecular Pathology. 1975;22:142–150. [PubMed: 163758]

72.

Snider GL, et al. The definition of emphysema: report of a National Heart, Lung, and Blood Institute, Division of Lung Diseases workshop. American Review of Respiratory Disease. 1985;32:182–185. [PubMed: 4014865]

73.

Haydon GB, et al. Nitrogen dioxide-induced emphysema in rabbits. American Review of Respiratory Disease. 1967;95:797–805. [PubMed: 6067178]

74.

Freeman G, et al. Covert reduction in ventilatory surface in rats during prolonged exposure to subacute nitrogen dioxide. American Review of Respiratory Disease. 1972;106:563–579. [PubMed: 5077778]

75.

Hyde D, et al. Morphometric and morphologic evaluation of pulmonary lesions in beagle dogs chronically exposed to high ambient levels of air pollutants. Laboratory Investigations. 1978;38:455–469. [PubMed: 76741]

76.

Rasmussen RE, et al. Effects of nitrogen dioxide on respiratory tract clearance in the ferret. Journal of Toxicology and Environmental Health. 1994;41:109–120. [PubMed: 8277524]

77.

Wegmann M, et al. NO2-induced airway inflammation is associated with progressive airflow limitation and development of emphysema-like lesions in C57bl/6 mice. Experimental and Toxicologic Pathology. 2005;56:341–350. [PubMed: 15945273]

78.

Fehrenbach H, et al. Nitrogen dioxide induces apoptosis and proliferation but not emphysema in rat lungs. Thorax. 2007;62:438–446. [PMC free article: PMC2117174] [PubMed: 17234660]

79.

Miller FJ, et al. Evaluating the toxicity of urban patterns of oxidant gases. II. Effects in mice from chronic exposure to nitrogen dioxide. Journal of Toxicology and Environmental Health. 1987;21:99–112. [PubMed: 3573077]

80.

Stevens MA, et al. Pulmonary function in juvenile and young adult rats exposed to low-level NO2 with diurnal spikes. Journal of Toxicology & Environmental Health. 1988;23:229–240. [PubMed: 3343698]

81.

Tepper JS, et al. Near-lifetime exposure of the rat to a simulated urban profile of nitrogen dioxide: pulmonary function evaluation. Fundamentals of Applied Toxicology. 1993;20:88–96. [PMC free article: PMC7528966] [PubMed: 8432431]

82.

Kobayashi T & Miura T Concentration- and time-dependent increase in specific airway resistance after induction of airway hyperresponsiveness by subchronic exposure of guinea pigs to nitrogen dioxide. Fundamentals of Applied Toxicology. 1995;25:154–158. [PubMed: 7601323]

83.

Hussain I, et al. Effect of nitrogen dioxide exposure on allergic asthma in a murine model. Chest. 2004;126:198–204. [PubMed: 15249463]

84.

Poynter ME, et al. Nitrogen dioxide enhances allergic airway inflammation and hyperresponsiveness in the mouse. American Journal of Physiology – Lung Cellular Molecular Physiology. 2006;290:L144–L152. [PubMed: 16085673]

85.

Bevelander B, et al. Nitrogen dioxide promotes allergic sensitization to inhaled antigen. Journal of Immunology. 2007;179:3680–3688. [PMC free article: PMC4697766] [PubMed: 17785804]

86.

Garn H, et al. Shift toward an alternatively activated macrophage response in lungs of NO2-exposed rats. American Journal of Respiratory Cell and Molecular Biology. 2003;28:386–396. [PubMed: 12594066]

87.

Brandsma CA, et al. Nitrogen dioxide exposure attenuates cigarette smoke-induced cytokine production in mice. Inhalation Toxicology. 2008;20:183–189. [PubMed: 18236232]

88.

Rose RM, et al. The pathophysiology of enhanced susceptibility to murine cytomegalovirus respiratory infection during short-term exposure to 5 ppm nitrogen dioxide. American Review of Respiratory Disease. 1988;137:912–917. [PubMed: 2833142]

89.

Rose RM, Pinkston P, Skornik WA. Altered susceptibility to viral respiratory infection during short-term exposure to nitrogen dioxide. Research Report, Health Effects Institute. 1989;24:1–24. [PubMed: 2557864]

90.

Jakab GJ. Modulation of pulmonary defense mechanisms against viral and bacterial infections by acute exposures to nitrogen dioxide. Research Report, Health Effects Institute. 1988;20:1–38. [PubMed: 2855873]

91.

Ehrlich R, Henry MC. Chronic toxicity of nitrogen dioxide. I. Effect on resistance to bacterial pneumonia. Archives of Environmental Health. 1968;17:860–865. [PubMed: 5699293]

92.

Ehrlich R, et al. Health effects of short-term inhalation of nitrogen dioxide and ozone mixtures. Environmental Research. 1977;14:223–231. [PubMed: 334528]

93.

Gardner DE, et al. Role of time as a factor in the toxicity of chemical compounds in intermittent and continuous exposures. Part I. Effects of continuous exposure. Journal of Toxicology and Environmental Health. 1977;3:811–820. [PubMed: 599580]

94.

Graham JA. Influence of exposure patterns of nitrogen dioxide and modifications by ozone on susceptibility to bacterial infectious disease in mice. Journal of Toxicology and Environmental Health. 1987;21:113–125. [PubMed: 3573066]

95.

Ciencewicki J, Jaspers I. Air pollution and respiratory viral infection. Inhalation Toxicology. 2007;19:1135–1146. [PubMed: 17987465]

96.

Ichinose T, et al. Experimental studies on tumor promotion by nitrogen dioxide. Toxicology. 1991;67:211–225. [PubMed: 2031254]

97.

Witschi H. Ozone, nitrogen dioxide and lung cancer: a review of some recent issues and problems. Toxicology. 1988;48:1–20. [PubMed: 3276033]

98.

Victorin K, Stahlberg M. Mutagenic activity of ultraviolet-irradiated mixtures of nitrogen dioxide and propene or butadiene. Environmental Research. 1989;49:271–282. [PubMed: 2666122]

99.

Tsuda H, et al. Chromosomal aberrations and sister-chromatid exchanges induced by gaseous nitrogen dioxide in cultured Chinese hamster cells. Mutation Research. 1981;89:303–309. [PubMed: 7197321]

100.

Shiraishi F, Bandow H. The genetic effects of the photochemical reaction products of propylene plus NO2 on cultured Chinese hamster cells exposed in vitro. Journal of Toxicology and Environmental Health. 1985;15:531–538. [PubMed: 4032499]

101.

Walles SA, et al. DNA damage in lung cells in vivo and in vitro by 1,3-butadiene and nitrogen dioxide and their photochemical reaction products. Mutation Research. 1995;328:11–19. [PubMed: 7898499]

102.

Isomura K, et al. Induction of mutations and chromosome aberrations in lung cells following in vivo exposure of rats to nitrogen oxides. Mutation Research. 1984;136:119–125. [PubMed: 6717477]

103.

Bermudez E, et al. DNA strand breaks caused by exposure to ozone and nitrogen dioxide. Environmental Research. 1999;81:72–80. [PubMed: 10361028]

104.

Victorin K, et al. Genotoxic activity of 1,3-butadiene and nitrogen dioxide and their photochemical reaction products in Drosophila and in the mouse bone marrow micronucleus assay. Mutation Research. 1990;228:203–209. [PubMed: 1689006]

105.

Gooch PC, et al. Observations on mouse chromosomes following nitrogen dioxide inhalation. Mutation Research. 1977;48:117–119. [PubMed: 834197]

106.

Watanabe N, et al. Decreased number of sperms and Sertoli cells in mature rats exposed to diesel exhaust as fetuses. Toxicology Letters. 2005;155:51–55. [PubMed: 15585359]

107.

Integrated science assessment for oxides of nitrogen – health criteria (final report). Washington, DC: US Environmental Protection Agency; 2008. (EPA/600/R-08/071)

108.

Brauer M, et al. Traffic-related air pollution and otitis media. Environmental Health Perspectives. 2006;114:1414–1418. [PMC free article: PMC1570088] [PubMed: 16966098]

109.

Morgenstern V, et al. Atopic diseases, allergic sensitization, and exposure to traffic-related air pollution in children. American Journal of Respiratory & Critical Care Medicine. 2008;177:1331–1337. [PubMed: 18337595]

110.

Brauer M, et al. Air pollution and development of asthma, allergy and infections in a birth cohort. European Respiratory Journal. 2007;29:879–888. [PubMed: 17251230]

111.

Baccarelli A, et al. Effects of exposure to air pollution on blood coagulation. Journal of Thrombosis & Haemostasis. 2007;5:252–260. [PubMed: 17083648]

112.

Slama R, et al. Meeting report: atmospheric pollution and human reproduction. Environmental Health Perspectives. 2008;116:791–798. [PMC free article: PMC2430236] [PubMed: 18560536]

113.

Linn WS, et al. Effects of exposure to 4-ppm nitrogen dioxide in healthy and asthmatic volunteers. Archives of Environmental Health. 1985;40:234–239. [PubMed: 4051580]

114.

Frampton MW, et al. Nitrogen dioxide exposure: effects on airway and blood cells. American Journal of Physiology. Lung Cellular and Molecular Physiology. 2002;282:L155–L165. [PubMed: 11741827]

115.

Sandstrom T, et al. Effects of repeated exposure to 4 ppm nitrogen dioxide on bronchoalveolar lymphocyte subsets and macrophages in healthy men. European Respiratory Journal. 1992;5:1092–1096. [PubMed: 1426219]

116.

Sandstrom T, et al. Reductions in lymphocyte subpopulations after repeated exposure to 1.5 ppm nitrogen dioxide. British Journal of Industrial Medicine. 1992;49:850–854. [PMC free article: PMC1061215] [PubMed: 1472443]

117.

Rubinstein I, et al. Effects of 0.60 ppm nitrogen dioxide on circulating and bronchoalveolarlavage lymphocyte phenotypes in healthy subjects. Environmental Research. 1991;55:18–30. [PubMed: 1855487]

118.

Blomberg A, et al. Persistent airway inflammation but accommodated antioxidant and lung function responses after repeated daily exposure to nitrogen dioxide. American Journal of Respiratory and Critical Care Medicine. 1999;159:536–543. [PubMed: 9927370]

119.

Solomon C, et al. Effect of serial-day exposure to nitrogen dioxide on airway and blood leukocytes and lymphocyte subsets. European Respiratory Journal. 2000;15:922–928. [PubMed: 10853860]

120.

Pathmanathan S, et al. Repeated daily exposure to 2 ppm nitrogen dioxide upregulates the expression of IL-5, IL-10, IL-13, and ICAM-1 in the bronchial epithelium of healthy human airways. Occupational and Environmental Medicine. 2003;60:892–896. [PMC free article: PMC1740417] [PubMed: 14573722]

121.

Kelly FJ, et al. Antioxidant kinetics in lung lavage fluid following exposure of humans to nitrogen dioxide. American Journal of Respiratory and Critical Care Medicine. 1996;154:1700–1705. [PubMed: 8970358]

122.

Goings S, et al. Effect of nitrogen dioxide exposure on susceptibility to influenza A virus infection in healthy adults. American Review of Respiratory Disease. 1989;139:1075–1081. [PubMed: 2712434]

123.

Frampton MW, et al. Nitrogen dioxide exposure in vivo and human alveolar macrophage inactivation of influenza virus in vitro. Environmental Research. 1989;48:179–192. [PubMed: 2784382]

124.

Avol E, et al. Experimental exposure of young asthmatic volunteers to 0.3 ppm nitrogen dioxide and to ambient air pollution. Toxicology and Industrial Health. 1989;5:1025–1034. [PubMed: 2626755]

125.

Bauer M, et al. Inhalation of 0.30 ppm nitrogen dioxide potentiates exercise induced bronchospasm in asthmatics. American Review of Respiratory Disease. 1986;134:1203–1208. [PubMed: 3789520]

126.

Roger L, et al. Pulmonary function, airway responsiveness, and respiratory symptoms in asthmatics following exercise in NO2. Toxicology and Industrial Health. 1990;6:155–171. [PubMed: 2349573]

127.

Linn WS, et al. Dose–response study of asthmatic volunteers exposed to nitrogen dioxide during intermittent exercise. Archives of Environmental Health. 1986;41:292–296. [PubMed: 3800432]

128.

Orehek J, et al. Effects of short term low level nitrogen dioxide exposure on bronchial sensitivity of asthmatic patients. Journal of Clinical Investigation. 1976;57:301–307. [PMC free article: PMC436654] [PubMed: 943420]

129.

Folinsbee L. Does nitrogen dioxide exposure increase airways responsiveness? Toxicology and Industrial Health. 1992;8:273–283. [PubMed: 1455438]

130.

Goodman J, et al. Meta-analysis of nitrogen dioxide exposure and airway hyperresponsiveness in asthmatics. Critical Reviews in Toxicology. 2009;39:719–742. [PubMed: 19852559]

131.

Tunnicliffe WS, Burge PS, Ayres JG. Effect of domestic concentrations of nitrogen dioxide on airway responses to inhaled allergen in asthmatic patients. Lancet. 1994;344:1733–1736. [PubMed: 7997002]

132.

Strand V, et al. Nitrogen dioxide exposure enhances asthmatic reaction to inhaled allergen in subjects with asthma. American Journal of Respiratory and Critical Care Medicine. 1997;155:881–887. [PubMed: 9117021]

133.

Strand V, et al. Repeated exposure to an ambient level of NO2 enhances asthmatic response to a nonsymptomatic allergen dose. European Respiratory Journal. 1998;12:6–12. [PubMed: 9701406]

134.

Devalia JL, et al. Effect of nitrogen dioxide and sulphur dioxide on airway response of mild asthmatic patients to allergen inhalation. Lancet. 1994;344:1668–1671. [PubMed: 7996960]

135.

Rusznak C, Devalia JL, Davies RJ. Airway response of asthmatic subjects to inhaled allergen after exposure to pollutants. Thorax. 1996;51:1105–1108. [PMC free article: PMC1090521] [PubMed: 8958893]

136.

Barck C, et al. Ambient level of NO2 augments the inflammatory response to inhaled allergen in asthmatics. Respiratory Medicine. 2002;96:907–917. [PubMed: 12418589]

137.

Barck C, et al. Brief exposures to NO2 augment the allergic inflammation in asthmatics. Environmental Research. 2005;97:58–66. [PubMed: 15476734]

138.

Jorres R, et al. The effect of 1 ppm nitrogen dioxide on bronchoalveolar lavage cells and inflammatory mediators in normal and asthmatic subjects. European Respiratory Journal. 1995;8:416–424. [PubMed: 7789487]

139.

Salome CM, et al. Effect of nitrogen dioxide and other combustion products on asthmatic subjects in a home-like environment. European Respiratory Journal. 1996;9:910–918. [PubMed: 8793451]

140.

Samet JM, et al. Nitrogen dioxide and respiratory illnesses in infants. American Review of Respiratory Disease. 1993;148:1258–1265. [PubMed: 8239162]

141.

Farrow A, et al. Nitrogen dioxide, the oxides of nitrogen, and infants' health symptoms. ALSPAC Study Team. Avon Longitudinal Study of Pregnancy and Childhood. Archives of Environmental Health. 1997;52:189–194. [PubMed: 9169628]

142.

Magnus P, et al. Exposure to nitrogen dioxide and the occurrence of bronchial obstruction in children below 2 years. International Journal of Epidemiology. 1998;27:995–999. [PubMed: 10024194]

143.

Emenius G, et al. NO2 as a marker of air pollution, and recurrent wheezing in children: a nested case-control study within the BAMSE birth cohort. Occupational and Environmental Medicine. 2003;60:876–881. [PMC free article: PMC1740422] [PubMed: 14573719]

144.

Raaschou-Nielsen O, et al. Long-term exposure to indoor air pollution and wheezing symptoms in infants. Indoor Air. 2010;20:159–167. [PubMed: 20028431]

145.

Sunyer J, et al. Nitrogen dioxide is not associated with respiratory infection during the first year of life. International Journal of Epidemiology. 2004;33:116–20. [PubMed: 15075156]

146.

Morales E, et al. Association of early-life exposure to household gas appliances and indoor nitrogen dioxide with cognition and attention behavior in preschoolers. American Journal of Epidemiology. 2009;169:1327–1336. [PubMed: 19395695]

147.

Belanger K, et al. Symptoms of wheeze and persistent cough in the first year of life: associations with indoor allergens, air contaminants, and maternal history of asthma. American Journal of Epidemiology. 2003;158:195–202. [PubMed: 12882940]

148.

Florey C, du V, et al. The relation between respiratory illness in primary school children and the use of gas for cooking. III. Nitrogen dioxide, respiratory illness and lung function. International Journal of Epidemiology. 1979;8:347–353. [PubMed: 541157]

149.

Brunekreef B, et al. Indoor nitrogen dioxide exposure and children's pulmonary function. Journal of the Air & Waste Management Association. 1990;40:1252–1255. [PubMed: 2223033]

150.

Dijkstra L, et al. Respiratory health effects of the indoor environment in a population of Dutch children. American Review of Respiratory Disease. 1990;142:1172–1178. [PubMed: 2240840]

151.

Hoek G, et al. Indoor nitrogen dioxide pollution and respiratory symptoms of schoolchildren. International Archives of Occupational and Environmental Health. 1984;55:79–86. [PubMed: 6526503]

152.

Garrett MH, et al. Respiratory symptoms in children and indoor exposure to nitrogen dioxide and gas stoves. American Journal of Respiratory and Critical Care Medicine. 1998;158:891–895. [PubMed: 9731022]

153.

Neas LM, et al. Association of indoor nitrogen dioxide with respiratory symptoms and pulmonary function in children. American Journal of Epidemiology. 1991;134:204–219. [PubMed: 1862804]

154.

Li R, et al. Association of indoor nitrogen dioxide with respiratory symptoms in children: application of measurement error correction techniques to utilize data from multiple surrogates. Journal of Exposure Science & Environmental Epidemiology. 2006;16:342–350. [PubMed: 16519415]

155.

Koo LC, et al. Personal exposure to nitrogen dioxide and its association with respiratory illness in Hong Kong. American Review of Respiratory Disease. 1990;141:1119–1126. [PubMed: 2339834]

156.

Infante-Rivard C. Childhood asthma and indoor environmental risk factors. American Journal of Epidemiology. 1993;137:834–844. [PubMed: 8484375]

157.

Ponsonby AL, et al. The relationship between low level nitrogen dioxide exposure and child lung function after cold air challenge. Clinical and Experimental Allergy. 2001;31:1205–1212. [PubMed: 11529889]

158.

Mukala K, et al. Personally measured weekly exposure to NO2 and respiratory health among preschool children. European Respiratory Journal. 1999;13:1411–1417. [PubMed: 10445621]

159.

Mukala K, et al. Nitrogen dioxide exposure assessment and cough among pre-school children. Archives of Environmental Health. 2000;55:431–438. [PubMed: 11128882]

160.

Smith BJ, et al. Health effects of daily indoor nitrogen dioxide exposure in people with asthma. European Respiratory Journal. 2000;16:879–885. [PubMed: 11153587]

161.

Delfino RJ, et al. Personal and ambient air pollution is associated with increased exhaled nitric oxide in children with asthma. Environmental Health Perspectives. 2006;114:1736–1743. [PMC free article: PMC1665398] [PubMed: 17107861]

162.

Delfino RJ, et al. Personal and ambient air pollution exposures and lung function decrements in children with asthma. Environmental Health Perspectives. 2008;116:550–558. [PMC free article: PMC2291010] [PubMed: 18414642]

163.

Diette GB, et al. Home indoor pollutant exposures among inner-city children with and without asthma. Environmental Health Perspectives. 2007;115:1665–1669. [PMC free article: PMC2072822] [PubMed: 18008001]

164.

Belanger K, et al. Association of indoor nitrogen dioxide exposure with respiratory symptoms in children with asthma. American Journal of Respiratory & Critical Care Medicine. 2006;173:297–303. [PMC free article: PMC2662932] [PubMed: 16254270]

165.

Chauhan AJ, et al. Personal exposure to nitrogen dioxide (NO2) and the severity of virus-induced asthma in children. Lancet. 2003;361:1939–1944. [PMC free article: PMC7112409] [PubMed: 12801737]

166.

Linaker CH, et al. Personal exposure to nitrogen dioxide and risk of airflow obstruction in asthmatic children with upper respiratory infection. Thorax. 2000;55:930–933. [PMC free article: PMC1745636] [PubMed: 11050262]

167.

Pilotto LS, et al. Randomized controlled trial of unflued gas heater replacement on respiratory health of asthmatic schoolchildren. International Journal of Epidemiology. 2004;33:208–214. [PubMed: 15075170]

168.

Nitschke M, et al. A cohort study of indoor nitrogen dioxide and house dust mite exposure in asthmatic children. Journal of Occupational & Environmental Medicine. 2006;48:462–469. [PubMed: 16688002]

169.

Howden-Chapman P, et al. Effects of improved home heating in asthma in community dwelling children: randomised controlled trial. British Medical Journal. 2008;337:a1411. [PMC free article: PMC2658826] [PubMed: 18812366]

170.

Hasselblad V, Eddy DM, Kotchmar DJ. Synthesis of environmental evidence: nitrogen dioxide epidemiology studies. Journal of the Air and Waste Management Association. 1992;42:662–671. [PubMed: 1627322]

171.

Brunekreef B, Fischer GB, Houthuijs D. Health effects of indoor NO2 pollution. In: Siefert B, et al., editors. Indoor Air '87. Proceedings of the 4th International Conference on Indoor Air Quality and Climate; Berlin (West). 17–21 August 1987; pp. 304–308.

172.

Goldstein BD, et al. The relation between respiratory illness in primary schoolchildren and the use of gas for cooking. II. Factors affecting nitrogen dioxide levels in the home. International Journal of Epidemiology. 1979;8:339–345. [PubMed: 541156]

173.

Melia RJ, et al. The relation between indoor air pollution from nitrogen dioxide and respiratory illness in primary schoolchildren. Bulletin Européen de Physiopathologie Respiratoire. 1980;16:7–8.

174.

Melia RJ, et al. Association between gas cooking and respiratory disease in children. British Medical Journal. 1977;2:149–152. [PMC free article: PMC1631031] [PubMed: 871821]

175.

Melia RJ, et al. Childhood respiratory illness and the home environment. II. Association between respiratory illness and nitrogen dioxide, temperature and relative humidity. International Journal of Epidemiology. 1982;11:164–169. [PubMed: 7095966]

176.

Melia RJ, et al. The relation between respiratory illness in infants and gas cooking in the UK: a preliminary report; Proceedings of the 6th World Congress on Air Quality; 16–20 August 1983; Paris, France. Burgess Hill: International Union of Air Pollution Prevention Associations; 1983. pp. 263–269.

177.

Melia RJ, Florey CV, Chinn S. The relation between respiratory illness in primary schoolchildren and the use of gas for cooking. I. Results from a national survey. International Journal of Epidemiology. 1979;8:333–338. [PubMed: 317279]

178.

Ogston SA, et al. The Tayside infant morbidity and mortality study: effect on health of using gas for cooking. British Medical Journal (Clinical Research ed.). 1985;290:957–960. [PMC free article: PMC1418306] [PubMed: 3919868]

179.

Ekwo EE, et al. Relationship of parental smoking and gas cooking to respiratory disease in children. Chest. 1983;84:662–668. [PubMed: 6641299]

180.

Keller MD, et al. Respiratory illness in households using gas and electricity for cooking. I. Survey of incidence. Environmental Research. 1979;19:495–503. [PubMed: 499161]

181.

Keller MD, et al. Respiratory illness in households using gas and electricity for cooking. II. Symptoms and objective findings. Environmental Research. 1979;19:504–515. [PubMed: 499162]

182.

Ware JH, et al. Passive smoking, gas cooking, and respiratory health of children living in six cities. American Review of Respiratory Disease. 1984;129:366–374. [PubMed: 6703495]

183.

Graham JA. Nitrogen oxides. 2nd ed. Geneva: World Health Organization; 1997.

184.

Remijn B, et al. Indoor air pollution and its effect on pulmonary function of adult non-smoking women: I. Exposure estimates for nitrogen dioxide and passive smoking. International Journal of Epidemiology. 1985;14:215–220. [PubMed: 4018987]

185.

Fischer P, et al. Indoor air pollution and its effect on pulmonary function of adult non-smoking women: II. Associations between nitrogen dioxide and pulmonary function. International Journal of Epidemiology. 1985;14:221–226. [PubMed: 4018988]

186.

Triche EW, et al. Indoor heating sources and respiratory symptoms in nonsmoking women. Epidemiology. 2005;16:377–384. [PubMed: 15824555]

187.

Osman LM, et al. Indoor air quality in homes of patients with chronic obstructive pulmonary disease. American Journal of Respiratory & Critical Care Medicine. 2007;176:465–472. [PubMed: 17507547]

188.

Simoni M, et al. Indoor exposures and acute respiratory effects in two general population samples from a rural and an urban area in Italy. Journal of Exposure Analysis and Environmental Epidemiology. 2004;14:S144–S152. [PubMed: 15118755]

189.

Arbex MA, et al. Indoor NO2 air pollution and lung function of professional cooks. Brazilian Journal of Medical & Biological Research. 2007;40:527–534. [PubMed: 17401496]

190.

Goldstein I, et al. Acute respiratory effects of short term exposures to nitrogen dioxide. Archives of Environmental Health. 1988;43:138–142. [PubMed: 3377548]

191.

Ng TP, et al. Nitrogen dioxide exposure from domestic gas cooking and airway response in asthmatic women. Thorax. 2001;56:596–601. [PMC free article: PMC1746124] [PubMed: 11462060]

192.

Dodge R. The effects of indoor pollution on Arizona children. Archives of Environmental Health. 1982;37:151–155. [PubMed: 7092332]

193.

Hasselblad V, et al. Indoor environmental determinants of lung function in children. American Review of Respiratory Disease. 1981;123:479–485. [PubMed: 7235369]

194.

Speizer FE, et al. Respiratory disease rates and pulmonary function in children associated with NO2 exposure. American Review of Respiratory Disease. 1980;121:3–10. [PubMed: 7352711]

195.

Schenker MB, Samet JM, Speizer FE. Risk factors for childhood respiratory disease. The effect of host factors and home environmental exposures. American Review of Respiratory Disease. 1983;128:1038–1043. [PubMed: 6650977]

196.

Hosein HR, Corey P, Robertson JM. The effect of domestic factors on respiratory symptoms and FEV1. International Journal of Epidemiology. 1989;18:390–396. [PubMed: 2767853]

197.

Cuijpers CE, et al. Adverse effects of the indoor environment on respiratory health in primary school children. Environmental Research. 1995;68:11–23. [PubMed: 7729382]

198.

Dekker C, et al. Childhood asthma and the indoor environment. Chest. 1991;100:922–926. [PubMed: 1914606]

199.

Hoelscher B, et al. Gas cooking, respiratory health and white blood cell counts in children. International Journal of Hygiene and Environmental Health. 2000;203:29–37. [PubMed: 10956587]

200.

Volkmer RE, et al. The prevalence of respiratory symptoms in South Australian preschool children. II. Factors associated with indoor air quality. Journal of Paediatrics and Child Health. 1995;31:116–120. [PubMed: 7794611]

201.

Lanphear BP, et al. Residential exposures associated with asthma in US children. Pediatrics. 2001;107:505–511. [PubMed: 11230590]

202.

Zacharasiewicz A, et al. Indoor factors and their association to respiratory symptoms suggestive of asthma in Austrian children aged 6–9 years. Wiener Klinische Wochenschrift. 1999;111:1006. [PubMed: 10599150]

203.

Corbo GM, et al. Effects of gas cooking in lung function in adolescents: modifying role of sex and immunoglobulin E. Thorax. 2001;56:536–540. [PMC free article: PMC1746100] [PubMed: 11413352]

204.

Chapman R, Hadden W, Perlin S. Influence of asthma and household environment on lung function in children and adolescents. American Journal of Epidemiology. 2003;158:175–189. [PubMed: 12851231]

205.

Wong TW, et al. Household gas cooking: a risk factor for respiratory illnesses in preschool children. Archives of Disease in Childhood. 2004;89:631–636. [PMC free article: PMC1719977] [PubMed: 15210494]

206.

Strachan DP, Carey IM. Home environment and severe asthma in adolescence: a population based case-control study. BMJ. 1995;311:1053–1056. [PMC free article: PMC2551362] [PubMed: 7580660]

207.

Ponsonby AL, et al. The relation between infant indoor environment and subsequent asthma: a prospective cohort study. Epidemiology. 2000;11:128–135. [PubMed: 11021608]

208.

Ponsonby AL, et al. A prospective study of the association between home gas appliance use during infancy and subsequent dust mite sensitisation and lung function in childhood. Clinical & Experimental Allergy. 2001;31:1544–1552. [PubMed: 11678854]

209.

De Bilderling G, et al. Gas cooking and smoking habits and the risk of childhood and adolescent wheeze. American Journal of Epidemiology. 2005;162:513–522. [PubMed: 16093293]

210.

McConnell R, et al. Indoor risk factors for asthma in a prospective study of adolescents. Epidemiology. 2002;13:288–295. [PubMed: 11964930]

211.

Berkey CS, et al. Indoor air pollution and pulmonary function growth in preadolescent children. American Journal of Epidemiology. 1986;123:250–260. [PubMed: 3946374]

212.

Comstock GW, et al. Respiratory effects on household exposures to tobacco smoke and gas cooking. American Review of Respiratory Disease. 1981;124:143–148. [PubMed: 7258826]

213.

Helsing KJ, et al. Respiratory effects of household exposures to tobacco smoke and gas cooking on non-smokers. Environment International. 1982;8:365–370.

214.

Jones JR, et al. Effects of cooking fuels on lung function in nonsmoking women. Archives of Environmental Health. 1983;38:219–222. [PubMed: 6615002]

215.

Eisner MD, Blanc PD. Gas stove use and respiratory health among adults with asthma in NHANES III. Occupational & Environmental Medicine. 2003;60:759–764. [PMC free article: PMC1740397] [PubMed: 14504364]

216.

Jarvis D, et al. The association of respiratory symptoms and lung function with the use of gas for cooking. European Respiratory Journal. 1998;11:651–658. [PubMed: 9596117]

217.

Jarvis D, et al. Association of respiratory symptoms and lung function in young adults with use of domestic gas appliances. Lancet. 1996;347:426–431. [PubMed: 8618483]

218.

Kerkhof M, et al. The effect of gas cooking on bronchial hyperresponsiveness and the role of immunoglobulin E. European Respiratory Journal. 1999;14:839–844. [PubMed: 10573231]

219.

Gerrard J, et al. Immunoglobulin levels in smokers and non-smokers. Annals of Allergy. 1980;44:261–262. [PubMed: 7377637]

220.

Omenaas E, et al. Total and specific serum IgE levels in adults: relationship to sex, age and environmental factors. Clinical and Experimental Allergy. 1994;24:530–539. [PubMed: 7922774]

221.

Dow L, et al. Respiratory symptoms in older people and use of domestic gas appliances. Thorax. 1999;54:1104–1106. [PMC free article: PMC1763757] [PubMed: 10567631]

222.

Jedrychowski W, et al. Effect of indoor air pollution caused by domestic cooking on respiratory problems of elderly women. Environment International. 1990;16:57–60.

223.

Ng TP, Hui KP, Tan WC. Respiratory symptoms and lung function effects of domestic exposure to tobacco smoke and cooking by gas in non-smoking women in Singapore. Journal of Epidemiology and Community Health. 1993;47:454–458. [PMC free article: PMC1059858] [PubMed: 8120499]

224.

Eisner MD, et al. Exposure to indoor combustion and adult asthma outcomes: environmental tobacco smoke, gas stoves, and woodsmoke. Thorax. 2002;57:973–978. [PMC free article: PMC1746223] [PubMed: 12403881]

225.

Coggon D, et al. Housing in early life and later mortality. Journal of Epidemiology and Community Health. 1993;47:345–348. [PMC free article: PMC1059825] [PubMed: 8289031]

226.

Moran S, et al. Effects of exposure to gas cooking in childhood and adulthood on respiratory symptoms, allergic sensitisation and lung function in young British adults. Clinical and Experimental Allergy. 1999;29:1033–1041. [PubMed: 10457105]

227.

Ostro BD, et al. Indoor air pollution and asthma. Results from a panel study. American Journal of Respiratory and Critical Care Medicine. 1994;149:1400–1406. [PubMed: 8004290]

228.

Desai M, Mehta S, Smith KR. Indoor smoke from solid fuels: assessing the environmental burden of disease at national and local levels. Geneva: World Health Organization; 2004. (Environmental Burden of Disease Series, No. 4)

229.

Venn A, et al. Increased risk of allergy associated with the use of kerosene fuel in the home. American Journal of Respiratory & Critical Care Medicine. 2001;164:1660–1664. [PubMed: 11719306]

230.

Burr M, et al. Respiratory symptoms and home environment in children: a national survey. Thorax. 1999;54:27–32. [PMC free article: PMC1745333] [PubMed: 10343627]

231.

Viegi G, et al. Effects of the home environment on respiratory symptoms of a general population sample in middle Italy. Archives of Environmental Health. 1992;47:64–70. [PubMed: 1540006]

232.

Viegi G, et al. Effects of home environment on respiratory symptoms and lung function in a general population sample in north Italy. European Respiratory Journal. 1991;4:580–586. [PubMed: 1936229]

233.

Pelham TW, Holt LE, Moss MA. Exposure to carbon monoxide and nitrogen dioxide in enclosed ice arenas. Occupational and Environmental Medicine. 2002;59:224–233. [PMC free article: PMC1740267] [PubMed: 11934949]

234.

Leuppi JD, et al. High prevalence of bronchial hyperresponsiveness and asthma in ice hockey players. European Respiratory Journal. 1998;12:13–16. [PubMed: 9701407]

235.

Larsson K, et al. High prevalence of asthma in cross country skiers. British Medical Journal. 1993;307:1326–1329. [PMC free article: PMC1679468] [PubMed: 8257888]

236.

Thunqvist P, et al. Asthma in children exposed to nitrogen dioxide in ice arenas. European Respiratory Journal. 2002;20:646–650. [PubMed: 12358342]

237.

Ice hockey lung: NO2 poisoning. Lancet. 1990;335:1191. [PubMed: 1971042]

238.

Karlson-Stiber C, et al. Nitrogen dioxide pneumonitis in ice hockey players. Journal of Internal Medicine. 1996;239:451–456. [PubMed: 8642238]

239.

Hedberg K, et al. An outbreak of nitrogen dioxide-induced respiratory illness among ice hockey players. Journal of the American Medical Association. 1989;262:3014–3017. [PubMed: 2810645]

240.

Rosenlund M, Bluhm G. Health effects resulting from nitrogen dioxide exposure in an indoor ice arena. Archives of Environmental Health. 1999;54:52–57. [PubMed: 10025417]

241.

Rosenlund M, et al. A 5-year follow-up of airway symptoms after nitrogen dioxide exposure in an indoor ice arena. Archives of Environmental Health. 2004;59:213–217. [PubMed: 16189995]

242.

Kahan ES, et al. Chronic cough and dyspnea in ice hockey players after an acute exposure to combustion products of a faulty ice resurfacer. Lung. 2007;185:47–54. [PubMed: 17294334]

243.

Spicer CW, et al. The prevalence of nitrous acid in indoor air and its impact on NO2 measurements made by passive samplers; Proceedings of the 6th International Conference of Indoor Air Quality and Climate; Helsinki, Finland. 1993; Helsinki: Finnish Society of Indoor Air Quality and Climate; 1993. pp. 277–282.

244.

Rasmussen TR, Brauer M, Kjærgaard S. Effects of nitrous acid exposure on human mucous membranes. American Journal of Respiratory & Critical Care Medicine. 1995;151:1504–1511. [PubMed: 7735607]

245.

Beckett WS, et al. Effect of nitrous acid on lung function in asthmatics: a chamber study. Environmental Health Perspectives. 1995;103:372–375. [PMC free article: PMC1519093] [PubMed: 7607138]

246.

Spicer CW, Billick IH, Yanagisawa Y. Nitrous acid interference with passive NO2 measurement methods and the impact on indoor NO2 data. Indoor Air. 2001;11:156–161. [PubMed: 11521499]

247.

Brunekreef B. NO2: the gas that won't go away. Clinical and Experimental Allergy. 2001;31:1170–1172. [PubMed: 11529885]

248.

Jarvis DL, et al. Indoor nitrous acid and respiratory symptoms and lung function in adults. Thorax. 2005;60:474–479. [PMC free article: PMC1747426] [PubMed: 15923247]

249.

Berglund M, et al. Personal NO2 exposure monitoring shows high exposure among ice-skating schoolchildren. Archives of Environmental Health. 1994;49:17–24. [PubMed: 8117142]

250.

Bernard N, et al. Personal exposure to nitrogen dioxide pollution and effect on plasma antioxidants. Archives of Environmental Health. 1998;53:122–128. [PubMed: 9577935]

251.

Brauer M, et al. Nitrogen dioxide in indoor ice skating facilities: an international survey. Journal of the Air & Waste Management Association. 1997;47:1095–1102. [PubMed: 9354146]

252.

Breysse PN, et al. Indoor exposures to air pollutants and allergens in the homes of asthmatic children in inner-city Baltimore. Environmental Research. 2005;98:167–176. [PubMed: 15820722]

253.

Chao CYH. A study of personal exposure to nitrogen dioxide using passive samplers. Building and Environment. 2000;35:545–553.

254.

Cyrys J, et al. Sources and concentrations of indoor nitrogen dioxide in Hamburg (west Germany) and Erfurt (east Germany). Science of the Total Environment. 2000;250:51–62. [PubMed: 10811251]

255.

Gallelli G, et al. Factors affecting individual exposure to NO2 in Genoa (northern Italy). Science of the Total Environment. 2002;287:31–36. [PubMed: 11883758]

256.

Garcia Algar O, et al. Concentrations and determinants of NO2 in homes of Ashford, UK and Barcelona and Menorca, Spain. Indoor Air. 2004;14:298–304. [PubMed: 15217483]

257.

Gee I, et al. Indoor air quality in smoking and non smoking households. In: Levin H, editor. Proceedings of the 9th International Conference on Indoor Air Quality and Climate. Santa Cruz: International Academy of Indoor Air Sciences; 2002. pp. 467–472.

258.

Gilbert NL, et al. Housing characteristics and indoor concentrations of nitrogen dioxide and formaldehyde in Quebec City, Canada. Environmental Research. 2006;102:1–8. [PubMed: 16620807]

259.

Guo H, Lee SC, Chan LY. Indoor air quality in ice skating rinks in Hong Kong. Environmental Research. 2004;94:327–335. [PubMed: 15016601]

260.

Kousa A, et al. Personal exposures to NO2 in the EXPOLIS-study: relation to residential indoor, outdoor and workplace concentrations in Basel, Helsinki and Prague. Atmospheric Environment. 2001;35:3405–3412.

261.

Lindgren T, Norbäck D. Cabin air quality: indoor pollutants and climate during intercontinental flights with and without tobacco smoking. Indoor Air. 2002;12:263–272. [PubMed: 12532758]

262.

Mi YH, et al. Current asthma and respiratory symptoms among pupils in Shanghai, China: influence of building ventilation, nitrogen dioxide, ozone, and formaldehyde in classrooms. Indoor Air. 2006;16:454–464. [PubMed: 17100666]

263.

Monn C, et al. Personal exposure to nitrogen dioxide in Switzerland. SAPALDIA team. Swiss Study on Air Pollution and Lung Diseases in Adults. Science of the Total Environment. 1998;215:243–251. [PubMed: 9606945]

264.

Mosqueron L, Momas I, Le Moullec Y. Personal exposure of Paris office workers to nitrogen dioxide and fine particles. Occupational and Environmental Medicine. 2002;59:550–555. [PMC free article: PMC1740342] [PubMed: 12151612]

265.

Noy D, et al. The assessment of personal exposure to nitrogen dioxide in epidemiological studies. Atmospheric Environment. Part A, General Topics. 1990;24:2903–2909.

266.

Pennanen AS, Vahteristo M, Salonen RO. Contribution of technical and operational factors to nitrogen dioxide concentration in indoor ice arenas. Environment International. 1998;24:381–388.

267.

Piechocki-Minguy A, et al. A case study of personal exposure to nitrogen dioxide using a new high sensitive diffusive sampler. Science of the Total Environment. 2006;366:55–64. [PubMed: 16154618]

268.

Pilotto LS, et al. Randomized controlled trial of unflued gas heater replacement on respiratory health of asthmatic schoolchildren. International Journal of Epidemiology. 2004;33:208–214. [PubMed: 15075170]

269.

Ponzio M, et al. [Preliminary analysis of indoor pollution from nitrogen dioxide in an area of Northern Italy]. Epidemiologia e Prevenzione. 2006;30:85–90. (in Italian) [PubMed: 16909956]

270.

Raw GJ, et al. Exposure to air pollutants in English homes. Journal of Exposure Analysis and Environmental Epidemiology. 2004;14:S85–S94. [PubMed: 15118750]

271.

Riediker M, et al. Exposure to particulate matter, volatile organic compounds, and other air pollutants inside patrol cars. Environmental Science & Technology. 2003;37:2084–2093. [PubMed: 12785511]

272.

Ross D. Continuous and passive monitoring of nitrogen dioxide in UK homes. Environmental Technology. 1996;17:147–155.

273.

Sabin LD, et al. Characterizing the range of children's air pollutant exposure during school bus commutes. Journal of Exposure Analysis and Environmental Epidemiology. 2005;15:377–387. [PubMed: 15592444]

274.

Saintot MB, et al. Nitrogen dioxide and ozone exposures population sample from Ile-de-France. Revue d'Epidemiologie et de Santé Publique. 2000;48(Suppl. 2):254–261. [PubMed: 10992110]

275.

Sakai K, et al. A comparison of indoor air pollutants in Japan and Sweden: formaldehyde, nitrogen dioxide, and chlorinated volatile. Environmental Research. 2004;94:75–85. [PubMed: 14643289]

276.

Son B, et al. Estimation of occupational and nonoccupational nitrogen dioxide exposure for Korean taxi drivers using a microenvironmental model. Environmental Research. 2004;94:291–296. [PubMed: 15016597]

277.

Zhao Z, et al. Asthmatic symptoms among pupils in relation to winter indoor and outdoor air pollution in schools in Taiyuan, China. Environmental Health Perspectives. 2008;116:90–97. [PMC free article: PMC2199281] [PubMed: 18197305]

278.

Zipprich JL, et al. An analysis of factors that influence personal exposure to nitrogen oxides in residents of Richmond, Virginia. Journal of Exposure Analysis and Environmental Epidemiology. 2002;12:273–285. [PubMed: 12087434]

279.

Zmirou D, et al. Five epidemiological studies on transport and asthma: objectives, design and descriptive results. Journal of Exposure Analysis and Environmental Epidemiology. 2002;12:186–196. [PubMed: 12032815]

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