Literature DB >> 19430911

Prediction of modified release pharmacokinetics and pharmacodynamics from in vitro, immediate release, and intravenous data.

Viera Lukacova1, Walter S Woltosz, Michael B Bolger.   

Abstract

The aim of this study was to demonstrate the value of mechanistic simulations in gaining insight into the behaviors of modified release (MR) formulations in vivo and to use the properly calibrated models for prediction of pharmacokinetics (PK) and pharmacodynamics (PD). GastroPlus (Simulations Plus, Inc.) was used to fit mechanistic models for adinazolam and metoprolol that describe the absorption, PK, and PD after intravenous (i.v.) and immediate release (IR) oral (p.o.) administration. The fitted model for adinazolam was then used to predict the PD profile for a MR formulation and to design a new formulation with desired onset and duration of action. The fitted metoprolol model was used to gain insight and to explain the in vivo behaviors of MR formulations. For each drug, a single absorption/PK model was fitted that provided simulated plasma concentration-time profiles closely matching observed in vivo profiles across several different i.v. and p.o doses. Sedation score profiles of adinazolam were fitted with an indirect PD model. For metoprolol, the fitted absorption/PK model for IR p.o. doses was used to select in vitro dissolution conditions that best matched the in vivo release of MR doses. This model also explained differences in exposure after administration of MR formulations with different release rates. Mechanistic absorption/PK models allow for detailed descriptions of all processes affecting the two drugs' bioavailability, including release/dissolution, absorption, and intestinal and hepatic first pass extraction. The insights gained can be used to design formulations that more effectively overcome identified problems.

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Year:  2009        PMID: 19430911      PMCID: PMC2691467          DOI: 10.1208/s12248-009-9107-2

Source DB:  PubMed          Journal:  AAPS J        ISSN: 1550-7416            Impact factor:   4.009


  58 in total

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4.  Prediction of intestinal absorption: comparative assessment of GASTROPLUS and IDEA.

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8.  Pharmacokinetic studies on the selective beta1-receptor antagonist metoprolol in man.

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9.  The influence of first pass metabolism on the development and validation of an IVIVC for metoprolol extended release tablets.

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  27 in total

1.  A semi-mechanistic modeling strategy to link in vitro and in vivo drug release for modified release formulations.

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3.  Comparison of Deconvolution-Based and Absorption Modeling IVIVC for Extended Release Formulations of a BCS III Drug Development Candidate.

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4.  Use of preclinical dog studies and absorption modeling to facilitate late stage formulation bridging for a BCS II drug candidate.

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5.  Toxicokinetic Triage for Environmental Chemicals.

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6.  Biopharmaceutical Evaluation and CMC Aspects of Oral Modified Release Formulations.

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8.  PXR polymorphisms and their impact on pharmacokinetics/pharmacodynamics of repaglinide in healthy Chinese volunteers.

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9.  Physiologically Based Absorption Modeling to Design Extended-Release Clinical Products for an Ester Prodrug.

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Review 10.  In vitro to in vivo extrapolation for high throughput prioritization and decision making.

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Journal:  Toxicol In Vitro       Date:  2017-12-05       Impact factor: 3.500

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