Cargando…
Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles.
Many pulmonary toxicity studies of diesel exhaust particles (DEPs) have used an automobile-generated sample (A-DEPs) whose mutagenicity has not been reported. In contrast, many mutagenicity studies of DEPs have used a forklift-generated sample (SRM 2975) that has been evaluated in only a few pulmona...
Autores principales: | , , , , , |
---|---|
Formato: | Texto |
Lenguaje: | English |
Publicado: |
2004
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1242006/ https://www.ncbi.nlm.nih.gov/pubmed/15175166 |
_version_ | 1782125562707312640 |
---|---|
author | DeMarini, David M Brooks, Lance R Warren, Sarah H Kobayashi, Takahiro Gilmour, M Ian Singh, Pramila |
author_facet | DeMarini, David M Brooks, Lance R Warren, Sarah H Kobayashi, Takahiro Gilmour, M Ian Singh, Pramila |
author_sort | DeMarini, David M |
collection | PubMed |
description | Many pulmonary toxicity studies of diesel exhaust particles (DEPs) have used an automobile-generated sample (A-DEPs) whose mutagenicity has not been reported. In contrast, many mutagenicity studies of DEPs have used a forklift-generated sample (SRM 2975) that has been evaluated in only a few pulmonary toxicity studies. Therefore, we evaluated the mutagenicity of both DEPs in Salmonella coupled to a bioassay-directed fractionation. The percentage of extractable organic material (EOM) was 26.3% for A-DEPs and 2% for SRM 2975. Most of the A-EOM (~55%) eluted in the hexane fraction, reflecting the presence of alkanes and alkenes, typical of uncombusted fuel. In contrast, most of the SRM 2975 EOM (~58%) eluted in the polar methanol fraction, indicative of oxygenated and/or nitrated organics derived from combustion. Most of the direct-acting, base-substitution activity of the A-EOM eluted in the hexane/dichloromethane (DCM) fraction, but this activity eluted in the polar methanol fraction for the SRM 2975 EOM. The direct-acting frameshift mutagenicity eluted across fractions of A-EOM, whereas > 80% eluted only in the DCM fraction of SRM 2975 EOM. The A-DEPs were more mutagenic than SRM 2975 per mass of particle, having 227 times more polycyclic aromatic hydrocarbon-type and 8-45 more nitroarene-type mutagenic activity. These differences were associated with the different conditions under which the two DEP samples were generated and collected. A comprehensive understanding of the mechanisms responsible for the health effects of DEPs requires the evaluation of DEP standards for a variety of end points, and our results highlight the need for multidisciplinary studies on a variety of representative samples of DEPs. |
format | Text |
id | pubmed-1242006 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2004 |
record_format | MEDLINE/PubMed |
spelling | pubmed-12420062005-11-08 Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. DeMarini, David M Brooks, Lance R Warren, Sarah H Kobayashi, Takahiro Gilmour, M Ian Singh, Pramila Environ Health Perspect Research Article Many pulmonary toxicity studies of diesel exhaust particles (DEPs) have used an automobile-generated sample (A-DEPs) whose mutagenicity has not been reported. In contrast, many mutagenicity studies of DEPs have used a forklift-generated sample (SRM 2975) that has been evaluated in only a few pulmonary toxicity studies. Therefore, we evaluated the mutagenicity of both DEPs in Salmonella coupled to a bioassay-directed fractionation. The percentage of extractable organic material (EOM) was 26.3% for A-DEPs and 2% for SRM 2975. Most of the A-EOM (~55%) eluted in the hexane fraction, reflecting the presence of alkanes and alkenes, typical of uncombusted fuel. In contrast, most of the SRM 2975 EOM (~58%) eluted in the polar methanol fraction, indicative of oxygenated and/or nitrated organics derived from combustion. Most of the direct-acting, base-substitution activity of the A-EOM eluted in the hexane/dichloromethane (DCM) fraction, but this activity eluted in the polar methanol fraction for the SRM 2975 EOM. The direct-acting frameshift mutagenicity eluted across fractions of A-EOM, whereas > 80% eluted only in the DCM fraction of SRM 2975 EOM. The A-DEPs were more mutagenic than SRM 2975 per mass of particle, having 227 times more polycyclic aromatic hydrocarbon-type and 8-45 more nitroarene-type mutagenic activity. These differences were associated with the different conditions under which the two DEP samples were generated and collected. A comprehensive understanding of the mechanisms responsible for the health effects of DEPs requires the evaluation of DEP standards for a variety of end points, and our results highlight the need for multidisciplinary studies on a variety of representative samples of DEPs. 2004-06 /pmc/articles/PMC1242006/ /pubmed/15175166 Text en |
spellingShingle | Research Article DeMarini, David M Brooks, Lance R Warren, Sarah H Kobayashi, Takahiro Gilmour, M Ian Singh, Pramila Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. |
title | Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. |
title_full | Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. |
title_fullStr | Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. |
title_full_unstemmed | Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. |
title_short | Bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. |
title_sort | bioassay-directed fractionation and salmonella mutagenicity of automobile and forklift diesel exhaust particles. |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1242006/ https://www.ncbi.nlm.nih.gov/pubmed/15175166 |
work_keys_str_mv | AT demarinidavidm bioassaydirectedfractionationandsalmonellamutagenicityofautomobileandforkliftdieselexhaustparticles AT brookslancer bioassaydirectedfractionationandsalmonellamutagenicityofautomobileandforkliftdieselexhaustparticles AT warrensarahh bioassaydirectedfractionationandsalmonellamutagenicityofautomobileandforkliftdieselexhaustparticles AT kobayashitakahiro bioassaydirectedfractionationandsalmonellamutagenicityofautomobileandforkliftdieselexhaustparticles AT gilmourmian bioassaydirectedfractionationandsalmonellamutagenicityofautomobileandforkliftdieselexhaustparticles AT singhpramila bioassaydirectedfractionationandsalmonellamutagenicityofautomobileandforkliftdieselexhaustparticles |