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PMID: 26729531 Published · ppublish English Journal Article

Mathematical Model-Based Accelerated Development of Extended-release Metformin Hydrochloride Tablet Formulation.

AAPS PharmSciTech ·Vol. 17 ·No. 4 ·2016-08-00 ·页码 1007-13

Chen W, Desai D, Good D, Crison J, Timmins P, Paruchuri S, Wang J, Ha K

Abstract

A computational fluid dynamic (CFD) model was developed to predict metformin release from a hydroxypropylmethylcellulose (HPMC) matrix-based extended-release formulation that took into consideration the physical and chemical properties of the drug substance, composition, as well as size and shape of the tablet. New high dose strength (1000 mg) tablet geometry was selected based on the surface area/volume (SA/V) approach advocated by Lapidus/Lordi/Reynold to obtain the desired equivalent metformin release kinetics. Maintaining a similar SA/V ratio across all extended-release metformin hydrochloride (Met XR) tablet strengths that had different geometries provided similar simulations of dissolution behavior. Experimental dissolution profiles of three lots of high-strength tablets agreed with the simulated release kinetics. Additionally, a pharmacokinetic absorption model was developed using GastroPlus™ software and known physicochemical, pharmacokinetic, and in vitro dissolution properties of metformin to predict the clinical exposure of the new high strength (1000 mg) tablet prior to conducting a human clinical bioequivalence study. In vitro metformin release kinetics were utilized in the absorption model to predict exposures in humans for new 1000-mg Met XR tablets, and the absorption model correctly projected equivalent in vivo exposure across all dose strengths. A clinical bioequivalence study was pursued based on the combined modeling results and demonstrated equivalent exposure as predicted by the simulations.

Keywords
CFD GastroPlus HPMC diffusion mathematical model scale-up surface area volume
MeSH 主题词
Chemistry, Pharmaceutical/methods Delayed-Action Preparations/chemistry Hypoglycemic Agents/chemistry Hypromellose Derivatives/chemistry Kinetics Metformin/chemistry Models, Theoretical Tablets/chemistry Therapeutic Equivalency
化学物质
Delayed-Action Preparations Hypoglycemic Agents Tablets Hypromellose Derivatives Metformin
作者与单位
共 8 位作者,点击展开单位 / ORCID
Chen W
Drug Product Science and Technology, Bristol-Myers Squibb Co., P.O. Box 191, New Brunswick, New Jersey, 08903-0191, USA.
Desai D
Drug Product Science and Technology, Bristol-Myers Squibb Co., P.O. Box 191, New Brunswick, New Jersey, 08903-0191, USA. [email protected].
Good D
Drug Product Science and Technology, Bristol-Myers Squibb Co., P.O. Box 191, New Brunswick, New Jersey, 08903-0191, USA.
Crison J
Drug Product Science and Technology, Bristol-Myers Squibb Co., P.O. Box 191, New Brunswick, New Jersey, 08903-0191, USA.
Timmins P
Drug Product Science and Technology, Bristol-Myers Squibb, Moreton, Merseyside, CH46 1QW, UK.
Paruchuri S
Appco Pharmaceuticals, Somerset, New Jersey, USA.
Wang J
Teva Pharmaceuticals, North Wales, Pennsylvania, USA.
Ha K
Analytical and Bioanalytical Development, Bristol-Myers Squibb Co., P.O. Box 191, New Brunswick, New Jersey, 08903-0191, USA.
Article Info
Journal
AAPS PharmSciTech
Abbr.
AAPS PharmSciTech
ISSN
1530-9932
Corresponding email
Published
2016-08-00
电子出版
2015-00-19
页码
1007-13
Language
English
Country/Region
United States
NLM ID
100960111
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