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Evaluation of the experimental basis for assessment factors to protect individuals with asthma from health effects during short-term exposure to airborne chemicals.
Johansson, Mia K V; Johanson, Gunnar; Öberg, Mattias.
Afiliação
  • Johansson MK; a Unit of Work Environment Toxicology , Karolinska Institutet, Institute of Environmental Medicine , Stockholm , Sweden and.
  • Johanson G; a Unit of Work Environment Toxicology , Karolinska Institutet, Institute of Environmental Medicine , Stockholm , Sweden and.
  • Öberg M; a Unit of Work Environment Toxicology , Karolinska Institutet, Institute of Environmental Medicine , Stockholm , Sweden and.
Crit Rev Toxicol ; 46(3): 241-60, 2016.
Article em En | MEDLINE | ID: mdl-26515429
ABSTRACT

BACKGROUND:

Asthmatic individuals constitute a large sub-population that is often considered particularly susceptible to the deleterious effects of inhalation of airborne chemicals. However, for most such chemicals information on asthmatics is lacking and inter-individual assessment factors (AFs) of 3-25 have been proposed for use in the derivation of health-based guideline values.

OBJECTIVE:

To evaluate available information in attempt to determine whether a general difference in airway response during short-term exposure between healthy and asthmatic individuals can be identified, and whether current AFs for inter-individual variability provide sufficient protection for asthmatics.

METHODS:

After performing systematic review of relevant documents and the scientific literature estimated differential response factors (EDRF) were derived as the ratio between the lowest observed adverse effect levels for healthy and asthmatic subjects based on studies in which both groups were tested under the same conditions. Thereafter, the concentration-response relationships for healthy and asthmatic subjects exposed separately to four extensively tested chemicals (nitrogen dioxide, ozone, sulfuric acid, sulfur dioxide) were compared on the basis of combined data. Finally, a Benchmark Concentration (BMC) analysis was performed for sulfur dioxide.

RESULTS:

We found evidence of higher sensitivity among asthmatics (EDRF > 1) to 8 of 19 tested chemicals, and to 3 of 11 mixtures. Thereafter, we confirmed the higher sensitivity of asthmatics to sulfuric acid and sulfur dioxide. No difference was observed in the case of ozone and nitrogen dioxide. Finally, our BMC analysis of sulfur dioxide indicated a ninefold higher sensitivity among asthmatics.

CONCLUSION:

Although experimental data are often inconclusive, our analyses suggest that an AF of 10 is adequate to protect asthmatics from the deleterious respiratory effects of airborne chemicals.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Asma / Poluentes Atmosféricos Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Asma / Poluentes Atmosféricos Idioma: En Ano de publicação: 2016 Tipo de documento: Article