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2007 | 16 | 5 |

Tytuł artykułu

Mutagenic activity of environmental air samples from the area of Wroclaw, Poland

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
It was found that the pollutants adsorbed on airborne particulates are a real threat to the health of in­habitants as high values of mutation ratio were obtained in the Salmonella plate incorporation assay (Ames test) for extracts of air samples collected during the summer and winter seasons in the centre of the town of Wrocław. The presence of pollutants which might directly and indirectly affect the genetic material has been indicated in tested samples. Mutagenicity of the air samples was highest in winter and lowest in sum­mer. The studied samples collected in different seasons of the year were mutagenic to all tested strains. The Salmonella typhimurium strains: TA 98, YG 1041 and YG 1042 have been found most useful for detection of genotoxic air pollutants in urban agglomerations.

Wydawca

-

Rocznik

Tom

16

Numer

5

Opis fizyczny

p.745-752,fig.,ref.

Twórcy

autor
  • Wroclaw University of Technology, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland

Bibliografia

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  • 2. CLAXTON L.D., MATTHEWS P.P., WARREN S.H. The genotoxicity of ambient outdoor air, a review: Salmonella mutagenicity. Mutation Research 567, 347, 2004.
  • 3. DUCAATTI A., VARGAS V.M.F. Mutagenic activity of air­borne particulate matter as an indicative measure of atmo­spheric pollution. Mutation Research 540, 67, 2003.
  • 4. FEILBERG A., NIELSEN T., BINDERUP M.L., SKOV H., POULSEN M.W.B. Observations of the effect of atmo­spheric processes on the genotoxic potency of airborne particulte matter. Atmospheric Environment 36, 4617, 2002.
  • 5. ROSENKRANZ H.S., MERMELSTEIN R. All nitro- con­taining chemicals were not created equal. Mutation Research 114, 217, 1983.
  • 6. MOHIN G.R. Bacterial systems for carcinogenicity testing. Mutation Research 87, 191, 1981.
  • 7. GUPTA P., HARGER W.P., AREY J. The contribution of ni­tro- and methylnitro- naphthalenes to the vapor- phase muta­genicity of ambient air samples. athmospheric Environment 30 (18), 3157, 1996.
  • 8. TAGA T., TAG, N., HATTORI T., TAMURA K., SAKAI S., TORBA A., KIZU R., HAYAKAWA K. Direct- acting mu­tagenicity of extracts of cool burning- derived particulates and contribution of nitropolycyclic aromatic hydrocarbons. Mutation Research 581, 91, 2005.
  • 9. MORTELMANS K., ZEIGER E. The Ames Salmonella/ microsome mutagenicity test. Mutation Research 455, 29, 2000.
  • 10. BINKOVA B., CERNA B., PASTORKOVA A., JELINEK R., BENES I., NOVAK J., SRAM R.J. Biological activities of organic compounds adsorbed onto ambient air particles: comparison between the cities of Teplice and Prague during the summer winter seasons 2000-2001. Mutation Research 525, 43, 2003.
  • 11. CASSONI F., BOCCHI C., MARTINO A., PINTO G., FONTANA F., BUSCHINI A. The Salmonella mutagenic­ity of urban airborne particulate matter (PM 2.5) from eight sites of the Emilia- Romagna regional monitoring network (italy). science of the Total environment 324, 79, 2004.
  • 12. DU FOUR V.A., VAN LAREBEKE N., JANSSEN C.R. Genotoxic and mutagenic activity of environmental air samples in Flanders, Belgium. Mutation Research 558, 155, 2004.
  • 13. KAMEDA T., INAZU K., BANDOW H., SANUKIDA S., MAEDA Y. Diurnal change of direct- acting mutagenicity of soluble organic fraction of airborne particles collected at Southern Osaka: correlation between the mutagenicity, par­ticles- associated nitroarenes, and gaseous emission. Atmo­spheric environment 38, 1903, 2004.
  • 14. KARPIŃSKA- SMULIKOWSKA J., PIEKARSKA K., MOSKAL J., CZARNY A. Evaluation of air pollution by bioindication tests. Acta Poloniae Toxicologica 8, (1), 147, 2000.
  • 15. VINITKETKUMNUEN U., KALAYANAMITRA K., CHEWONARIN T., KAMENS R. Particulate matter, PM 10 and PM 2.5 levels, and airborne mutagenicity in Chiang Mai, Thailand. Mutation Research 519, 121, 2002.
  • 16. FEILBERG A., NIELSEN T., BINDERUP M.L., SKOV H., POULSEN M.W.B. Observations of the effect of atmo­spheric processes on the genotoxic potency of airborne particulte matter, Atmospheric Environment 36, 4617, 2002.
  • 17. KRISHNA C. A simple method for extraction of mutagents from airborne particles. Environm. Monit. Asses. 5, 393, 1985.
  • 18. SZELIGA J., CHORĄŻY M., CIMANDER B. Quantitative and Qualitative Chemical Analysis of Extracts of Air Pollut­ants on the Territory of Katowice Province. Biotechnologia 3-4, 103, 1991, [in Polish].
  • 19. MARON D.M., AMES B.N. Revised methods for the Sal­monella mutagenicity test. Mutation Research 113, 173, 1983.
  • 20. HAGIWARA Y., WATANABE M., ODA Y. SOFUNI T., NOHMI T. Specificity and sensitivity of Salmonella typhimurium YG1041 and YG1042 strains possessing elevat­ed levels of both nitroreductase and acetyltransferase activ­ity. Mutation Research 291, 171, 1993.
  • 21. KADO N.Y., WONG J.M., KUZMICKY P. A., WOODROW H.N., NING H., SEIBER J.N., HSIEH P.H. Quantitative integration of the salmonella microsuspension assay with supercritical fluid extraction of model airborne vapor-phase mutagens. Mutation Research 271, 253, 1992.
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  • 23. ZAKRZEWSKI S.F. Basics of Toxicology of the Environ­ment, PWN, Warszawa, 1995, [in Polish].
  • 24. SASAKI J. AREY J., HARGER W. P. Formation of mute­gens from the photooxidations of 2-4-ring PAH. Envir. Sci. Technol. 29, 1324, 1995.
  • 25. ATKINSON R. AND AREY J. Atmospheric chemistry of gas-phase polycyclic aromatic hydrocarbons: formation of atmospheric mutagens. Envir. Hlth perspect. 102, 117, 1994.
  • 26. ZWOZDZIAK J. JADCZYK P. KUCHARCZYK J. Season­al variability of the mutagenicity of airborne particles in the town center. Aerosol Science 32, 409, 2001.100 50 25 12.5 6.25 3.125 1.56 0.78

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-78740b38-19ab-40a4-94dd-1d31e97fa5a6
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