From Bench to Humans: Formulation Development of a Poorly Water Soluble Drug to Mitigate Food Effect
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John Crison | Brian Yan | Preetanshu Pandey | P. Pandey | D. Bindra | R. Hamey | J. Crison | R. Perrone | T. Eley | Chandra Vemavarapu | Chandra Vemavarapu | Neil Mathias | Timothy Eley | Rhye Hamey | Dilbir S. Bindra | Zongyun Huang | Robert Perrone | N. Mathias | Zongyun Huang | B. Yan | R. Perrone | Timothy Eley | Brian Yan
[1] Hans Lennernäs,et al. The Effects of Food on the Dissolution of Poorly Soluble Drugs in Human and in Model Small Intestinal Fluids , 2005, Pharmaceutical Research.
[3] A. Tatavarti,et al. Tabletability assessment of conventional formulations containing Vitamin E tocopheryl polyethylene glycol succinate. , 2010, International journal of pharmaceutics.
[4] P. Pandey,et al. Processing challenges with solid dosage formulations containing vitamin E TPGS , 2013, Pharmaceutical development and technology.
[5] Y. Masaoka,et al. Effect of food intake on the oral absorption of poorly water-soluble drugs: in vitro assessment of drug dissolution and permeation assay system. , 2006, Journal of pharmaceutical sciences.
[6] Gordon L. Amidon,et al. Prediction of Solubility and Permeability Class Membership: Provisional BCS Classification of the World’s Top Oral Drugs , 2009, The AAPS Journal.
[7] D. Fleisher,et al. Drug, Meal and Formulation Interactions Influencing Drug Absorption After Oral Administration , 1999, Clinical pharmacokinetics.
[8] K. Raghavan,et al. Predicting Effect of Food on Extent of Drug Absorption Based on Physicochemical Properties , 2007, Pharmaceutical Research.
[9] Claus-Michael Lehr,et al. Permeability assessment for solid oral drug formulations based on Caco-2 monolayer in combination with a flow through dissolution cell. , 2007, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[10] Kimberley A. Lentz,et al. Current Methods for Predicting Human Food Effect , 2008, The AAPS Journal.
[11] R. Löbenberg,et al. Evaluation of Various Dissolution Media for Predicting In Vivo Performance of Class I and II Drugs , 1998, Pharmaceutical Research.
[12] J. Crison,et al. A Theoretical Basis for a Biopharmaceutic Drug Classification: The Correlation of in Vitro Drug Product Dissolution and in Vivo Bioavailability , 1995, Pharmaceutical Research.
[13] Gloria Kwei,et al. The role of biopharmaceutics in the development of a clinical nanoparticle formulation of MK-0869: a Beagle dog model predicts improved bioavailability and diminished food effect on absorption in human. , 2004, International journal of pharmaceutics.
[14] Leslie Z. Benet,et al. Predicting Drug Disposition via Application of BCS: Transport/Absorption/ Elimination Interplay and Development of a Biopharmaceutics Drug Disposition Classification System , 2004, Pharmaceutical Research.
[15] Thierry Lavé,et al. Predicting Pharmacokinetic Food Effects Using Biorelevant Solubility Media and Physiologically Based Modelling , 2006, Clinical pharmacokinetics.
[16] J. Polli,et al. Prediction of dissolution-absorption relationships from a continuous dissolution/Caco-2 system , 1999, AAPS PharmSci.
[17] V. Lukacova,et al. Predicting Pharmacokinetics of Drugs Using Physiologically Based Modeling—Application to Food Effects , 2009, The AAPS Journal.
[18] J. Dressman,et al. Physiochemical and physiological mechanisms for the effects of food on drug absorption: the role of lipids and pH. , 1997, Journal of pharmaceutical sciences.
[19] S. Klein. The Use of Biorelevant Dissolution Media to Forecast the In Vivo Performance of a Drug , 2010, The AAPS Journal.
[20] Malcolm Rowland,et al. Physiologically-based pharmacokinetics in drug development and regulatory science. , 2011, Annual review of pharmacology and toxicology.
[21] Filippos Kesisoglou,et al. Forecasting in vivo oral absorption and food effect of micronized and nanosized aprepitant formulations in humans. , 2010, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[22] Leslie Z Benet,et al. Predicting drug disposition, absorption/elimination/transporter interplay and the role of food on drug absorption. , 2008, Advanced drug delivery reviews.
[23] Xujin Lu,et al. pH-Dependent Dissolution in Vitro and Absorption in Vivo of Weakly Basic Drugs: Development of a Canine Model , 2005, Pharmaceutical Research.
[24] J. Dressman,et al. In vitro-in vivo correlations for lipophilic, poorly water-soluble drugs. , 2000, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[25] Christos Reppas,et al. Forecasting the In Vivo Performance of Four Low Solubility Drugs from Their In Vitro Dissolution Data , 1999, Pharmaceutical Research.
[26] N. Fotaki,et al. Canine versus in vitro data for predicting input profiles of L-sulpiride after oral administration. , 2005, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.