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^^i^i'^-^^iS'^^.^^^ AR226-2714 AR226-2714 / 2004 43fd SOT Annual Meeting Ythbius mbraoywpserirnwt ibnydocwlickoirncgliocnk tfhfiies 'bXu' tbtuontt.oTnoInretthuerntotpo ltihgehtpcreovmioeursopfathgee, pcalogsee. CONSIDERATIONS RELEVANT TO CONSTRUCTING A HUMAN PBPK MODEL FOR PERFUJOROOCTANOXCACID (PFOA) D. Paustentiach1; G. Jepson2 1. ChemRtsk, San Francisco, CA, USA. Molecular Toxicology, Haskell Laboratory for Health and 2. Biochemical and Sciences, Newark, DE, USA. Environmental Perfluorooctanolc add (PFOA) is a surfactant, which has received significant blood samples from Interest In recent years due to its reported prevalence in Consequently, there has been some activity associated with many US citizens. constructing a human PBPK model to relate inhalation and oral exposures to studies conducted on PFOA levels in plasma. While there have been many kinetic data have not been useful in extrapolation to PFOA rodents, the rodent kinetic There are several considerations relevant to the construction kinetics in humans. of a human P8PK model that will determine how, or even If, such a model is which will affect PFOA. First, PFOA Is a surface-active chemical, has thus far complicated any efforts to appropriate for Its behavior in biological systems and partition coefficients. Second, PFOA is reported to be determine tissue to blood In mammalian systems, thereby eliminating the need for explicit unmetabollzed description of metabolizing organs or tissues. Third, the elimination rate is The reported half-life In dramaticallaypdpirfofexriemnat tbeelytw4eyeenahrsumasancsomanpdarreoddteont2s.hours in the female rat. humans Further, Is rats have sex dependent elimination rates, which do not appear to be to PFOA are lacking; to humans. Fourth, controlled human exposures PBPK model wouid be severely limited. This relevant therefore, any attempts to validate a mechanisms have not been complicated by the fact that elimination Is further completely elucidated In rats and humans. These considerations and gaps In it impractical to the of species-specific elimination of PFOA make generic kinetic model to predict PFOA understanding construct and apply a human PBPK or following Ingestlon or Inhalation of PFOA. The basis for ccoonnscternutcrtaitnigonasnIdn vpallaisdmataing a human PBPK model for PFOA was described and evaluated. E1D775276 EID775277