Genetic analysis of ozone-induced acute lung injury in sensitive and resistant strains of mice (original) (raw)
References
Ostro, B.D. The association of air pollution and mortality: examining the case for inference. Arch. Environ. Health.48, 336–342 (1993). ArticleCAS Google Scholar
Pope, C.A. III, Dockery, D.W. & Schwartz, J. Review of epidemiological evidence of health effects of particulate air pollution. Inhalation Toxicology.7, 1–18 (1995). ArticleCAS Google Scholar
Kehrer, J.P. Free radicals as mediators of tissue injury and disease. Crit. Rev. Toxicology.23, 21–48 (1993). ArticleCAS Google Scholar
Halliwell, B. & Cross, C.E. Oxygen-derived species: their relation to human disease and environmental stress. Environ. Health Perspect.102 (Suppl. 10), 5–12 (1994). CASPubMedPubMed Central Google Scholar
Lippmann, M. Ozone in Environmental Toxicants: Human Exposures and Their Health Effects (ed Lippmann, M.). 465–519 (Van Nostrand Reinhold, New York, 1993).
Mustafa, M.G. Biochemical basis of ozone toxicity. Free Radical Biol. Med.9, 245–265 (1990). ArticleCAS Google Scholar
Silverman, F. Asthma and respiratory irritants (ozone)Environ. Health Perspect.29, 131–136 (1979). ArticleCAS Google Scholar
et al. Effects of ozone on the pulmonary function of children.Adv. Mod. Environ. Toxicol.5, 423–446 (1983).
Spektor, D.M. et al. Effects of ambient ozone on respiratory function in healthy adults exercising outdoors. Am. Rev. Respir. Dis.138, 821–828 (1988). ArticleCAS Google Scholar
Kreit, J.W. et al. Ozone-induced changes in pulmonary function and responsiveness in asthmatics. J. Appl. Physiol.66, 217–222 (1989). ArticleCAS Google Scholar
McBride, D.E., Koenig, J.Q., Luchtel, D.L., Williams, P.V. & Henderson, W.R. Jr., Inflammatory effects of ozone in the upper airways of subjects with asthma. Am. Rev. Respir. Crit. Care Med.149, 1192–1197 (1994). ArticleCAS Google Scholar
McDonnell, W.F. Intersubject variability in human acute ozone responsiveness. Pharmacogenetics.1, 110–113 (1991). ArticleCAS Google Scholar
Kleeberger, S.R., Bassett, D.J.P., Jakab, G.J. & Levitt, R.C A genetic model for evaluation of susceptibility to ozone-induced inflammation. Am. J. Physiol.258, L313–L320 (1990). CASPubMed Google Scholar
Kleeberger, S.R., Levitt, R.C. & Zhang, L.-Y. Susceptibility to ozone-induced inflammation. I. Genetic control of'the response to subacute exposure. Am. J. Physiol.264, L15–L20 (1993). CASPubMed Google Scholar
Stokinger, H.E. Evaluation of the hazards of ozone and oxides of nitrogen:factors modifying toxicity. Arch. Ind. Health.15, 181–190 (1957). CAS Google Scholar
Goldstein, B.D., Lai, L.Y., Ross, S.R. & R Susceptibility of inbred mouse strains to ozone.Arch. Environ. Health.27, 412–413 (1973). ArticleCAS Google Scholar
Taylor, B.A. in Origins of Inbred Mice (ed. Morse, H.C., III) 423–438(Academic, New York, 1978).
Manly, K.F. & Elliott, R.W. RI Manager, a microcomputer program for analysis of data from recombinant inbred strains. Mamm. Genome.1, 123–126 (1991). ArticleCAS Google Scholar
Nesbitt, M.N. & E Recombinant inbred mouse strains derived from the A/J and C57BL/6J: a tool for the study of genetic mechanisms in host resistance to infection and malignancy. J. Leukocyte Biol.36, 357–364 (1984). ArticleCAS Google Scholar
Marshall, J.D. et al. The AXB and BXA set of recombinant inbred mouse strains. Mamm. Genome.3, 669–680 (1992). ArticleCAS Google Scholar
DeSanctis, G.T. et al. Quantitative locus analysis of airway hyperresponsiveness in A/J and C56BL/6J mice Nature Genet.11, 150–154 (1995). ArticleCAS Google Scholar
Lincoln, S.E., Daly, M.J. & Lander, E.S. Mapping Genes Controlling Quantitative Traits with MAPMAKER/EXP 1.1, 2nd ed. (Whitehead Institute Technical Report, Cambridge, Massachusetts, 1992). Google Scholar
Paterson, A.H. et al. Mendelian factors underlying quantitative traits in tomato: comparison across species, generations, and environments. Genetics.127, 181–197 (1991). CASPubMedPubMed Central Google Scholar
Lander, E. & Kruglyak, L. Genetic dissection of complex traits: guidelines for interpreting and reporting results. Nature Genet.11, 241–247 (1995). ArticleCAS Google Scholar
Cattanach, B.M. & J. Genetic imprinting in the mouse: implications for gene regulation.J. Inherited Metab. Dis.17, 403–420 (1994). ArticleCAS Google Scholar
Sapienza, C., Paquette, J., Pannunzio, P., Albrechtson, A. & Morgan, K. The polar-lethal ovum mutant gene maps to the distal portion of mouse chromosome 17. Genetics.132, 241–246 (1992). CASPubMedPubMed Central Google Scholar
Copeland, N.G. et al. Genome maps IV: The mouse. Science.262, 67–82 (1993). ArticleCAS Google Scholar
Special report. Mamm. Genome.6, S1–S352 (1996).
Peden, D.B. et al. Uric acid is a major antioxidant in human nasal airway secretions. 87, 7638–7642 (1990).
Cross, C.E., van der Vliet, A., O'Neill, C.A., Louie, S. & Halliwell, B. Oxidants, antioxidants, and respiratory tract lining fluids. Environ. Health Perspect.102 (Suppl. 10), 185–191 (1994). CASPubMedPubMed Central Google Scholar