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Grantee Research Project Results

Selected Publications Details for Grant Number R827352C001

The Chemical Toxicology of Particulate Matter

RFA: Airborne Particulate Matter (PM) Centers (1999)

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Journal Article (10)
Reference Type Reference Title Journal Author Citation Progress Report Year Document Sources
Journal Article Determination of four quinones in diesel exhaust particles, SRM 1649a and atmospheric PM2.5. AEROSOL SCIENCE AND TECHNOLOGY Cho AK, Di Stefano E, You Y, Rodriquez CE, Schmitz DA, Kumagai Y, Miguel AH, Eiguren-Fernandez A, Kobayashi T, Avol E, Froines JR Cho AK, Di Stefano E, You Y, Rodriquez CE, Schmitz DA, Kumagai Y, Miguel AH, Eiguren-Fernandez A, Kobayashi T, Avol E, Froines JR. Determination of four quinones in diesel exhaust particles, SRM 1649a and atmospheric PM2.5. Aerosol Science and Technology 2004;38(Suppl 1):68-81. R827352 (Final)
R827352C001 (Final)
R827352C009 (Final)
R827352C013 (Final)
R831861 (2004)
R831861 (2005)
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Journal Article Redox activity of airborne particulate matter at different sites in the Los Angeles Basin. ENVIRONMENTAL RESEARCH Cho AK, Sioutas C, Miguel AH, Kumagai Y, Schmitz DA, Singh M, Eiguren-Fernandez A, Froines JR Cho AK, Sioutas C, Miguel AH, Kumagai Y, Schmitz DA, Singh M, Eiguren-Fernandez A, Froines JR. Redox activity of airborne particulate matter at different sites in the Los Angeles Basin. Environmental Research 2005;99(1):40-47. R827352 (Final)
R827352C001 (Final)
R827352C013 (Final)
R827352C014 (Final)
R832413C003 (2010)
R832413C003 (Final)
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Journal Article Effects of a single intratracheal administration of phenanthraquinone on murine lung. JOURNAL OF APPLIED TOXICOLOGY Hiyoshi K, Takano H, Inoue K, Ichinose T, Yanagisawa R, Tomura S, Cho AK, Froines JR, Kumagai Y Hiyoshi K, Takano H, Inoue K, Ichinose T, Yanagisawa R, Tomura S, Cho AK, Froines JR, Kumagai Y. Effects of a single intratracheal administration of phenanthraquinone on murine lung. Journal of Applied Toxicology 2005;25(1):47-51. R827352 (2004)
R827352 (Final)
R827352C001 (Final)
R832413C003 (2010)
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Journal Article 1,2-Naphthoquinone activates vanilloid receptor 1 through increased protein tyrosine phosphorylation, leading to contraction of guinea pig trachea. TOXICOLOGY AND APPLIED PHARMACOLOGY Kikuno S, Taguchi K, Iwamoto N, Yamano S, Cho AK, Froines JR, Kumagai Y Kikuno S, Taguchi K, Iwamoto N, Yamano S, Cho AK, Froines JR, Kumagai Y. 1,2-Naphthoquinone activates vanilloid receptor 1 through increased protein tyrosine phosphorylation, leading to contraction of guinea pig trachea. Toxicology and Applied Pharmacology 2006;210(1-2):47-54. R827352 (Final)
R827352C001 (Final)
R832413C003 (2010)
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Journal Article Inhalation of concentrated ambient particulate matter near a heavily trafficked road stimulates antigen-induced airway responses in mice. JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION Kleinman MT, Hamade A, Meacher D, Oldham M, Sioutas C, Chakrabarti B, Stram D, Froines JR, Cho AK Kleinman MT, Hamade A, Meacher D, Oldham M, Sioutas C, Chakrabarti B, Stram D, Froines JR, Cho AK. Inhalation of concentrated ambient particulate matter near a heavily trafficked road stimulates antigen-induced airway responses in mice. Journal of the Air & Waste Management Association 2005;55(9):1277-1288. R827352 (2004)
R827352 (Final)
R827352C001 (Final)
R827352C005 (Final)
R827352C014 (Final)
R832413C003 (2010)
  • Abstract from PubMed
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Journal Article Ultrafine particulate pollutants induce oxidative stress and mitochondrial damage. ENVIRONMENTAL HEALTH PERSPECTIVES Li N, Sioutas C, Cho A, Schmitz D, Misra C, Sempf J, Wang M, Oberley T, Froines J, Nel A Li N, Sioutas C, Cho A, Schmitz D, Misra C, Sempf J, Wang M, Oberley T, Froines J, Nel A. Ultrafine particulate pollutants induce oxidative stress and mitochondrial damage. Environmental Health Perspectives 2003;111(4):455-460. R827352 (2004)
R827352 (Final)
R827352C001 (Final)
R827352C002 (Final)
R827352C014 (Final)
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Journal Article Nrf2 is a key transcription factor that regulates antioxidant defense in macrophages and epithelial cells: protecting against the proinflammatory and oxidizing effects of diesel exhaust chemicals. JOURNAL OF IMMUNOLOGY Li N, Alam J, Venkatesan MI, Eiguren-Fernandez A, Schmitz D, Di Stefano E, Slaughter N, Killeen E, Wang X, Huang A, Wang M, Miguel AH, Cho A, Sioutas C, Nel AE Li N, Alam J, Venkatesan MI, Eiguren-Fernandez A, Schmitz D, Di Stefano E, Slaughter N, Killeen E, Wang X, Huang A, Wang M, Miguel AH, Cho A, Sioutas C, Nel AE. Nrf2 is a key transcription factor that regulates antioxidant defense in macrophages and epithelial cells: protecting against the proinflammatory and oxidizing effects of diesel exhaust chemicals. Journal of Immunology 2004;173(5):3467-3481. R827352 (2004)
R827352 (Final)
R827352C001 (Final)
R827352C002 (Final)
R827352C013 (Final)
R827352C014 (Final)
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Journal Article Inherent redox properties of diesel exhaust particles: catalysis of the generation of reactive oxygen species by biological reductants. TOXICOLOGICAL SCIENCES Pan C-JG, Schmitz DA, Cho AK, Froines J, Fukuto JM Pan C-JG, Schmitz DA, Cho AK, Froines J, Fukuto JM. Inherent redox properties of diesel exhaust particles: catalysis of the generation of reactive oxygen species by biological reductants. Toxicological Sciences 2004;81(1):225-232. R827352 (2004)
R827352 (Final)
R827352C001 (Final)
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Journal Article An examination of quinone toxicity using the yeast Saccharomyces cerevisiae model system. TOXICOLOGY Rodriguez CE, Shinyashiki M, Froines J, Yu RC, Fukuto JM, Cho AK Rodriguez CE, Shinyashiki M, Froines J, Yu RC, Fukuto JM, Cho AK. An examination of quinone toxicity using the yeast Saccharomyces cerevisiae model system. Toxicology 2004;201(1-3):185-196. R827352 (2004)
R827352 (Final)
R827352C001 (Final)
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Journal Article The interactions of 9,10-phenanthrenequinone with glyceraldehyde-3-phosphate dehydrogenase (GAPDH), a potential site for toxic actions. CHEMICO-BIOLOGICAL INTERACTIONS Rodriguez CE, Fukuto JM, Taguchi K, Froines J, Cho AK Rodriguez CE, Fukuto JM, Taguchi K, Froines J, Cho AK. The interactions of 9,10-phenanthrenequinone with glyceraldehyde-3-phosphate dehydrogenase (GAPDH), a potential site for toxic actions. Chemico-Biological Interactions 2005;155(1-2):97-110. R827352 (Final)
R827352C001 (Final)
R832413C003 (2010)
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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.

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