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Route‐to‐Route Extrapolation of the Toxic Potency of MTBE

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  • Michael L. Dourson
  • Susan P. Felter

Abstract

MTBE is a volatile organic compound used as an oxygenating agent in gasoline. Inhalation from fumes while refueling automobiles is the principle route of exposure for humans, and toxicity by this route has been well studied. Oral exposures to MTBE exist as well, primarily due to ground‐water contamination from leaking stationary sources, such as underground storage tanks. Assessing the potential public health impacts of oral exposures to MTBE is problematic because drinking water studies do not exist for MTBE, and the few oil‐gavage studies from which a risk assessment could be derived are limited. This paper evaluates the suitability of the MTBE database for conducting an inhalation route‐to‐oral route extrapolation of toxicity. This includes evaluating the similarity of critical effect between these two routes, quantifiable differences in absorption, distribution, metabolism, and excretion, and sufficiency of toxicity data by the inhalation route. We conclude that such an extrapolation is appropriate and have validated the extrapolation by finding comparable toxicity between a subchronic gavage oral bioassay and oral doses we extrapolate from a subchronic inhalation bioassay. Our results are extended to the 2‐year inhalation toxicity study by Chun et al. (1992) in which rats were exposed to 0, 400, 3000, or 8000 ppm MTBE for 6 hr/d, 5 d/wk. We have estimated the equivalent oral doses to be 0, 130, 940, or 2700 mg/kg/d. These equivalent doses may be useful in conducting noncancer and cancer risk assessments.

Suggested Citation

  • Michael L. Dourson & Susan P. Felter, 1997. "Route‐to‐Route Extrapolation of the Toxic Potency of MTBE," Risk Analysis, John Wiley & Sons, vol. 17(6), pages 717-725, December.
  • Handle: RePEc:wly:riskan:v:17:y:1997:i:6:p:717-725
    DOI: 10.1111/j.1539-6924.1997.tb01278.x
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    References listed on IDEAS

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    1. John J. Clary, 1997. "Methyl tert Butyl Ether Systemic Toxicity," Risk Analysis, John Wiley & Sons, vol. 17(6), pages 661-672, December.
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