Physiologically based pharmacokinetics (PBPK)
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Dominique Tytgat | Italo Poggesi | J. Watelet | I. Poggesi | P. Espié | D. Tytgat | M. Sargentini-Maier | Pascal Espié | Maria-Laura Sargentini-Maier | Jean-Baptiste Watelet | P. Espié | M. Sargentini‐Maier
[1] S Haddad,et al. A methodology for solving physiologically based pharmacokinetic models without the use of simulation softwares. , 1996, Toxicology letters.
[2] Sven Björkman,et al. Prediction of drug disposition in infants and children by means of physiologically based pharmacokinetic (PBPK) modelling: theophylline and midazolam as model drugs. , 2005, British journal of clinical pharmacology.
[3] K Rowland-Yeo,et al. Prediction of in vivo drug clearance from in vitro data. II: Potential inter-ethnic differences , 2006, Xenobiotica; the fate of foreign compounds in biological systems.
[4] Kairui Feng,et al. The Simcyp population-based ADME simulator. , 2009, Expert opinion on drug metabolism & toxicology.
[5] Yoshitaka Yano,et al. Prediction of human clearance from animal data and molecular structural parameters using multivariate regression analysis. , 2002, Journal of pharmaceutical sciences.
[6] Malcolm Rowland,et al. Physiologically based pharmacokinetics in drug development and regulatory science: a workshop report (Georgetown University, Washington, DC, May 29-30, 2002). , 2004, AAPS pharmSci.
[7] Huadong Tang,et al. A NOVEL MODEL FOR PREDICTION OF HUMAN DRUG CLEARANCE BY ALLOMETRIC SCALING , 2005, Drug Metabolism and Disposition.
[8] A. Morice,et al. Physiologically based modelling of inhibition of metabolism and assessment of the relative potency of drug and metabolite: dextromethorphan vs. dextrorphan using quinidine inhibition. , 2003, British journal of clinical pharmacology.
[9] Peter Ballard,et al. Prediction of In Vivo Tissue Distribution from In Vitro Data 1. Experiments with Markers of Aqueous Spaces , 2000, Pharmaceutical Research.
[10] Keith W Ward,et al. A comprehensive analysis of the role of correction factors in the allometric predictivity of clearance from rat, dog, and monkey to humans. , 2004, Journal of pharmaceutical sciences.
[11] Walter Schmitt,et al. A physiological model for the estimation of the fraction dose absorbed in humans. , 2004, Journal of medicinal chemistry.
[12] R. Portmann,et al. Interspecies Pharmacokinetic Comparisons and Allometric Scaling of Napsagatran, a Low Molecular Weight Thrombin Inhibitor , 1999, The Journal of pharmacy and pharmacology.
[13] J. Gross,et al. Estimation of tissue-to-plasma partition coefficients used in physiological pharmacokinetic models , 1979, Journal of Pharmacokinetics and Biopharmaceutics.
[14] J B Houston,et al. Optimizing drug development: strategies to assess drug metabolism/transporter interaction potential--towards a consensus. , 2001, British journal of clinical pharmacology.
[15] Thierry Lavé,et al. Physiologically based pharmacokinetic (PBPK) modeling of disposition of epiroprim in humans. , 2003, Journal of pharmaceutical sciences.
[16] Toshihiko Ikeda,et al. The Quantitative Prediction of CYP-mediated Drug Interaction by Physiologically Based Pharmacokinetic Modeling , 2008, Pharmaceutical Research.
[17] K. Lin,et al. Formulation design of double-layer in the outer shell of dry-coated tablet to modulate lag time and time-controlled dissolution function: Studies on micronized ethylcellulose for dosage form design (VII) , 2004, The AAPS Journal.
[18] Patrick Poulin,et al. Prediction of pharmacokinetics prior to in vivo studies. 1. Mechanism-based prediction of volume of distribution. , 2002, Journal of pharmaceutical sciences.
[19] J. Gabrielsson,et al. Constant-rate infusion of nicotine and cotinine. I. A physiological pharmacokinetic analysis of the cotinine disposition, and effects on clearance and distribution in the rat , 1987, Journal of Pharmacokinetics and Biopharmaceutics.
[20] Thierry Lavé,et al. Predicting Pharmacokinetic Food Effects Using Biorelevant Solubility Media and Physiologically Based Modelling , 2006, Clinical pharmacokinetics.
[21] J B Houston,et al. Utility of in vitro drug metabolism data in predicting in vivo metabolic clearance. , 1994, Biochemical pharmacology.
[22] Yuichi Sugiyama,et al. Prediction of the volumes of distribution of basic drugs in humans based on data from animals , 1984, Journal of Pharmacokinetics and Biopharmaceutics.
[23] Walter Schmitt,et al. Development and Evaluation of a Generic Physiologically Based Pharmacokinetic Model for Children , 2006, Clinical pharmacokinetics.
[24] M Rowland,et al. Dose-dependent pharmacokinetics of cyclosporin A in rats: events in tissues. , 2000, Drug metabolism and disposition: the biological fate of chemicals.
[25] L Aarons,et al. Physiologically based pharmacokinetic modelling: a sound mechanistic basis is needed. , 2005, British journal of clinical pharmacology.
[26] Philip A. Arundel,et al. A Multi-Compartmental Model Generally Applicable to Physiologically-Based Pharmacokinetics , 1997 .
[27] I. Mahmood,et al. Interspecies scaling of biliary excreted drugs. , 2002, Journal of pharmaceutical sciences.
[28] M Rowland,et al. Physiologically based pharmacokinetics of cyclosporine A: extension to tissue distribution kinetics in rats and scale-up to human. , 1998, The Journal of pharmacology and experimental therapeutics.
[29] G. Searle,et al. APPLICATION OF A GENERIC PHYSIOLOGICALLY BASED PHARMACOKINETIC MODEL TO THE ESTIMATION OF XENOBIOTIC LEVELS IN HUMAN PLASMA , 2006, Drug Metabolism and Disposition.
[30] F. Theil,et al. Prediction of adipose tissue: plasma partition coefficients for structurally unrelated drugs. , 2001, Journal of pharmaceutical sciences.
[31] M. Ellmerer,et al. Measurement of interstitial albumin in human skeletal muscle and adipose tissue by open-flow microperfusion. , 2000, American journal of physiology. Endocrinology and metabolism.
[32] Italo Poggesi,et al. Predicting human pharmacokinetics from preclinical data. , 2004, Current opinion in drug discovery & development.
[33] Robert J Riley,et al. Mechanism-based inhibition of cytochrome P450 enzymes: an evaluation of early decision making in vitro approaches and drug-drug interaction prediction methods. , 2009, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[34] L. A. Fenu,et al. Prediction of Human Pharmacokinetics Using Physiologically Based Modeling: A Retrospective Analysis of 26 Clinically Tested Drugs , 2007, Drug Metabolism and Disposition.
[35] Jörg Lippert,et al. From physicochemistry to absorption and distribution: predictive mechanistic modelling and computational tools , 2005, Expert opinion on drug metabolism & toxicology.
[36] Ryosei Kawai,et al. Physiologically based pharmacokinetic study on a cyclosporin derivative, SDZ IMM 125 , 1994, Journal of Pharmacokinetics and Biopharmaceutics.
[37] Sheila Annie Peters,et al. Evaluation of a Generic Physiologically Based Pharmacokinetic Model for Lineshape Analysis , 2008, Clinical pharmacokinetics.
[38] Willard R. Chappell,et al. Extrapolation of Toxicological and Pharmacological Data from Animals to Humans , 1991 .
[39] G L Amidon,et al. A compartmental absorption and transit model for estimating oral drug absorption. , 1999, International journal of pharmaceutics.
[40] I Mahmood,et al. Interspecies Scaling: Predicting Volumes, Mean Residence Time and Elimination Half‐life. * Some Suggestions , 1998, The Journal of pharmacy and pharmacology.
[41] R K Jain,et al. Physiologically based pharmacokinetic modeling: principles and applications. , 1983, Journal of pharmaceutical sciences.
[42] Hugh A Barton,et al. Evaluation of physiologically based pharmacokinetic models for use in risk assessment , 2007, Journal of applied toxicology : JAT.
[43] Y. Sawada,et al. PHYSIOLOGICALLY BASED PHARMACOKINETIC MODEL FOR PRALMORELIN HYDROCHLORIDE IN RATS , 2005, Drug Metabolism and Disposition.
[44] Thierry Lavé,et al. Prediction of intestinal absorption: comparative assessment of GASTROPLUS and IDEA. , 2002, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[45] Robert L. Dedrick,et al. Animal scale-up , 1973, Journal of Pharmacokinetics and Biopharmaceutics.
[46] Patrick Poulin,et al. Prediction of pharmacokinetics prior to in vivo studies. II. Generic physiologically based pharmacokinetic models of drug disposition. , 2002, Journal of pharmaceutical sciences.
[47] H J Clewell,et al. Development of a physiologically based pharmacokinetic model of isopropanol and its metabolite acetone. , 2001, Toxicological sciences : an official journal of the Society of Toxicology.
[48] Patrizia Crivori,et al. Evaluation of a basic physiologically based pharmacokinetic model for simulating the first-time-in-animal study. , 2007, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[49] B Agoram,et al. Predicting the impact of physiological and biochemical processes on oral drug bioavailability. , 2001, Advanced drug delivery reviews.
[50] Stefan S De Buck,et al. Physiologically based approaches towards the prediction of pharmacokinetics: in vitro–in vivo extrapolation , 2007, Expert opinion on drug metabolism & toxicology.
[51] I Mahmood,et al. Interspecies scaling: predicting pharmacokinetic parameters of antiepileptic drugs in humans from animals with special emphasis on clearance. , 1996, Journal of pharmaceutical sciences.
[52] Yuichi Sugiyama,et al. In vitro andin vivo evaluation of the tissue-to-blood partition coefficient for physiological pharmacokinetic models , 1982, Journal of Pharmacokinetics and Biopharmaceutics.
[53] Andreas Reichel,et al. Development and Application of Physiologically Based Pharmacokinetic‐Modeling Tools to Support Drug Discovery , 2005, Chemistry & biodiversity.
[54] Walter Schmitt,et al. Whole body physiologically-based pharmacokinetic models: their use in clinical drug development , 2008, Expert opinion on drug metabolism & toxicology.
[55] R J Riley,et al. Evaluation of human pharmacokinetics, therapeutic dose and exposure predictions using marketed oral drugs. , 2007, Current drug metabolism.
[56] Y. Sugiyama,et al. Quantitative prediction of in vivo drug clearance and drug interactions from in vitro data on metabolism, together with binding and transport. , 1998, Annual review of pharmacology and toxicology.
[57] J. Mordenti,et al. Man versus beast: pharmacokinetic scaling in mammals. , 1986, Journal of pharmaceutical sciences.
[58] Malcolm Rowland,et al. Mechanistic Approaches to Volume of Distribution Predictions: Understanding the Processes , 2007, Pharmaceutical Research.
[59] M. Delp,et al. Physiological Parameter Values for Physiologically Based Pharmacokinetic Models , 1997, Toxicology and industrial health.
[60] Thierry Lavé,et al. An evaluation of the utility of physiologically based models of pharmacokinetics in early drug discovery. , 2005, Journal of pharmaceutical sciences.
[61] G L Amidon,et al. Saturable small intestinal drug absorption in humans: modeling and interpretation of cefatrizine data. , 1998, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[62] Kiyomi Ito,et al. Prediction of the in vivo interaction between midazolam and macrolides based on in vitro studies using human liver microsomes. , 2003, Drug metabolism and disposition: the biological fate of chemicals.
[63] Ivan Nestorov,et al. Whole Body Pharmacokinetic Models , 2003, Clinical pharmacokinetics.
[64] Walter Schmitt,et al. PK-Sim®: a physiologically based pharmacokinetic ‘whole-body’ model , 2003 .
[65] L. A. Fenu,et al. The Prediction of Drug Metabolism, Tissue Distribution, and Bioavailability of 50 Structurally Diverse Compounds in Rat Using Mechanism-Based Absorption, Distribution, and Metabolism Prediction Tools , 2007, Drug Metabolism and Disposition.
[66] I Mahmood,et al. Interspecies scaling of renally secreted drugs. , 1998, Life sciences.
[67] M. Rowland,et al. Physiologically based pharmacokinetic modeling 1: predicting the tissue distribution of moderate-to-strong bases. , 2005, Journal of pharmaceutical sciences.
[68] M. Mayersohn,et al. Comparative Pharmacokinetics and Interspecies Scaling of Amphotericin B in Several Mammalian Species , 1997, The Journal of pharmacy and pharmacology.
[69] G. E. Searle,et al. APPLICATION OF A GENERIC PHYSIOLOGICALLY BASED PHARMACOKINETIC MODEL TO THE ESTIMATION OF XENOBIOTIC LEVELS IN RAT PLASMA , 2006, Drug Metabolism and Disposition.
[70] H J Clewell,et al. A physiologically based pharmacokinetic model for retinoic acid and its metabolites. , 1997, Journal of the American Academy of Dermatology.
[71] W. Förster,et al. Dependence of pharmacokinetic parameters on the body weight. , 1977, International journal of clinical pharmacology and biopharmacy.
[72] J H Lin,et al. Applications and limitations of interspecies scaling and in vitro extrapolation in pharmacokinetics. , 1998, Drug metabolism and disposition: the biological fate of chemicals.
[73] P. Sanwald-Ducray,et al. Prediction of the pharmacokinetic parameters of reduced-dolasetron in man using in vitro-in vivo and interspecies allometric scaling. , 1997, Xenobiotica; the fate of foreign compounds in biological systems.
[74] D J Rance,et al. The prediction of human pharmacokinetic parameters from preclinical and in vitro metabolism data. , 1997, The Journal of pharmacology and experimental therapeutics.
[75] M. Rowland,et al. Physiologically based pharmacokinetic modelling 2: predicting the tissue distribution of acids, very weak bases, neutrals and zwitterions. , 2006, Journal of pharmaceutical sciences.
[76] J. Balian,et al. Interspecies scaling: predicting clearance of drugs in humans. Three different approaches. , 1996, Xenobiotica; the fate of foreign compounds in biological systems.
[77] T Lavé,et al. Challenges and opportunities with modelling and simulation in drug discovery and drug development , 2007, Xenobiotica; the fate of foreign compounds in biological systems.
[78] Shiew-Mei Huang,et al. Optimizing Drug Development: Strategies to Assess Drug Metabolism/Transporter Interaction Potential—Toward a Consensus , 2001, Pharmaceutical Research.
[79] Harold Boxenbaum,et al. Interspecies scaling, allometry, physiological time, and the ground plan of pharmacokinetics , 1982, Journal of Pharmacokinetics and Biopharmaceutics.
[80] W. Daniel,et al. Interactions between promazine and antidepressants at the level of cellular distribution. , 1997, Pharmacology & toxicology.
[81] Xiaochun Lou,et al. Allometric Pharmacokinetic Scaling: Towards the Prediction of Human Oral Pharmacokinetics , 2000, Pharmaceutical Research.
[82] Patrick Poulin,et al. Utility of physiologically based pharmacokinetic models to drug development and rational drug discovery candidate selection. , 2003, Toxicology letters.
[83] I. Mahmood. Prediction of Clearance in Humans from In Vitro Human Liver Microsomes and Allometric Scaling. A Comparative Study of the Two Approaches , 2002, Drug metabolism and drug interactions.
[84] D J Paustenbach,et al. Physiologically based pharmacokinetic and pharmacodynamic modeling in health risk assessment and characterization of hazardous substances. , 1995, Toxicology letters.
[85] Thierry Lavé,et al. Application of full physiological models for pharmaceutical drug candidate selection and extrapolation of pharmacokinetics to man. , 2005, Basic & clinical pharmacology & toxicology.
[86] W. Roth,et al. Pharmacokinetics of the M1-agonist talsaclidine in mouse, rat, rabbit and monkey, and extrapolation to man , 2000, Xenobiotica; the fate of foreign compounds in biological systems.
[87] G. Tucker,et al. Prediction of in vivo drug clearance from in vitro data. I: Impact of inter-individual variability , 2006, Xenobiotica; the fate of foreign compounds in biological systems.
[88] F. Theil,et al. A priori prediction of tissue:plasma partition coefficients of drugs to facilitate the use of physiologically-based pharmacokinetic models in drug discovery. , 2000, Journal of pharmaceutical sciences.
[89] Kairui Feng,et al. The Simcyp® Population-based ADME Simulator , 2009 .
[90] A. Leo,et al. Partition coefficients and their uses , 1971 .
[91] Jan Meulenbelt,et al. A Human Physiologically-Based Model for Glycyrrhzic Acid, A Compound Subject to Presystemic Metabolism and Enterohepatic Cycling , 2000, Pharmaceutical Research.
[92] Amin Rostami-Hodjegan,et al. Simulation and prediction of in vivo drug metabolism in human populations from in vitro data , 2007, Nature Reviews Drug Discovery.
[93] I. Mahmood. Integration of in vitro data and brain weight in allometric scaling to predict clearance in humans: some suggestions. , 1998, Journal of pharmaceutical sciences.
[94] T Lavé,et al. Prediction of Hepatic Metabolic Clearance Based on Interspecies Allometric Scaling Techniques and In Vitro-In Vivo Correlations , 1999, Clinical pharmacokinetics.
[95] Amin Rostami-Hodjegan,et al. Prediction of the Clearance of Eleven Drugs and Associated Variability in Neonates, Infants and Children , 2006, Clinical pharmacokinetics.
[96] D. Perrier,et al. Area method for the estimation of partition coefficients for physiological pharmacokinetic models , 1987, Journal of Pharmacokinetics and Biopharmaceutics.
[97] G L Amidon,et al. Transport approaches to the biopharmaceutical design of oral drug delivery systems: prediction of intestinal absorption. , 1996, Advanced drug delivery reviews.
[98] Malcolm Rowland,et al. Rodgers T, Rowland M. 2006. Physiologically‐based Pharmacokinetic Modeling 2: Predicting the tissue distribution of acids, very weak bases, neutrals and zwitterions. J Pharm Sci 95:1238–1257. , 2007 .
[99] R C Chou,et al. Integration of in vitro data into allometric scaling to predict hepatic metabolic clearance in man: application to 10 extensively metabolized drugs. , 1997, Journal of pharmaceutical sciences.
[100] Yuichi Sugiyama,et al. Quantitative Prediction of In Vivo Drug-Drug Interactions from In Vitro Data Based on Physiological Pharmacokinetics: Use of Maximum Unbound Concentration of Inhibitor at the Inlet to the Liver , 2000, Pharmaceutical Research.
[101] I. Mahmood. Interspecies Scaling: Role of Protein Binding in the Prediction of Clearance from Animals to Humans , 2000, Journal of clinical pharmacology.
[102] K. Bachmann. Predicting toxicokinetic parameters in humans from toxicokinetic data acquired from three small mammalian species , 1989, Journal of applied toxicology : JAT.
[103] I. Mahmood. Can Absolute Oral Bioavailability in Humans be Predicted from Animals? A Comparison of Allometry and Different Indirect Methods , 2000, Drug metabolism and drug interactions.