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Refined PBPK model of aggregate exposure to methyl tertiary-butyl ether
Authors:Kim David  Andersen Melvin E  Pleil Joachim D  Nylander-French Leena A  Prah James D
Affiliation:Department of Environmental Science and Engineering, School of Public Health, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA. kbkim@hsph.harvard.edu
Abstract:
Keywords:AB, amount of TBA in blood   AE, amount of MTBE in the skin   Aexp, exposed surface area   AI, amount of MTBE in the small intestines   Aoral, oral dose of MTBE   AS, amount of MTBE in the stomach   AUC, area under the curve   BMI, body mass index   BW, body weight   CAB, concentration of MTBE in arterial blood   Cair, air concentration of MTBE   CB, concentration of TBA in blood   COTBA, concentration of TBA in other tissue   CE, concentration of MTBE in the skin   CLTBA, concentration of TBA in the liver   ClMET1, Phase I clearance   ClMET2, Phase II clearance   CV, coefficient of variation   CVB, concentration of MTBE in venous blood   Cwater, water concentration of MTBE   GC–MS, gas chromatography–mass spectrometry   HT, height   IRIS, integrated risk information system   kai, rate constant for intestinal absorption   kas, rate constant for stomach absorption   KM, Michaelis constant   Kp, permeability coefficient   ksi, rate constant for transfer from stomach to intestine   VE, volume of skin   Vmax, maximum rate of metabolism   MTBE, methyl tertiary-butyl ether   NSC, normalized sensitivity coefficient   PBMTBE, blood:air partition coefficient for MTBE   PBTBA, blood:air partition coefficient for TBA   PBPK, physiologically based pharmacokinetic   PE, skin:blood partition coefficient   PF, fat:air partition coefficient   PLTBA, liver:blood partition coefficient for TBA   POMTBE, other tissue:blood partition coefficient for MTBE   POTBA, other tissue:blood partition coefficient for TBA   PR, rapidly perfused tissue:air partition coefficient   PS, slowly perfused tissue:air partition coefficient   QC, cardiac output   QE, blood flow rate to skin   QF, blood flow rate to fat   QK, blood flow rate to kidney   QL, blood flow rate to liver   QOMTBE, blood flow rate to other tissue for the MTBE model   QOTBA, blood flow rate to other tissue for the TBA model   QP, alveolar ventilation rate   QR, blood flow rate to rapidly perfused tissue   QS, blood flow rate to slowly perfused tissue   QSAR, quantitative structure–activity relationship   S.D., standard deviation   SURFA, total body surface area   TBA, tertiary-butyl alcohol   VB, volume of blood   VE, volume of skin   VF, volume of fat   VK, volume of kidney   VL, volume of liver   VO, volume of other tissue   VR, volume of rapidly perfused tissue   VS, volume of slowly perfused tissue   Vwater, volume of water ingested
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