Biomimetic Dissolution: A Tool to Predict Amorphous Solid Dispersion Performance

被引:0
作者
Michael M. Puppolo
Justin R. Hughey
Traciann Dillon
David Storey
Susan Jansen-Varnum
机构
[1] Hovione LLC,Department of Chemistry
[2] Temple University,undefined
[3] Banner Life Sciences,undefined
来源
AAPS PharmSciTech | 2017年 / 18卷
关键词
free drug; bioavailability; membrane permeation dissolution; amorphous solid dispersion; poorly water soluble;
D O I
暂无
中图分类号
学科分类号
摘要
The presented study describes the development of a membrane permeation non-sink dissolution method that can provide analysis of complete drug speciation and emulate the in vivo performance of poorly water-soluble Biopharmaceutical Classification System class II compounds. The designed membrane permeation methodology permits evaluation of free/dissolved/unbound drug from amorphous solid dispersion formulations with the use of a two-cell apparatus, biorelevant dissolution media, and a biomimetic polymer membrane. It offers insight into oral drug dissolution, permeation, and absorption. Amorphous solid dispersions of felodipine were prepared by hot melt extrusion and spray drying techniques and evaluated for in vitro performance. Prior to ranking performance of extruded and spray-dried felodipine solid dispersions, optimization of the dissolution methodology was performed for parameters such as agitation rate, membrane type, and membrane pore size. The particle size and zeta potential were analyzed during dissolution experiments to understand drug/polymer speciation and supersaturation sustainment of felodipine solid dispersions. Bland-Altman analysis was performed to measure the agreement or equivalence between dissolution profiles acquired using polymer membranes and porcine intestines and to establish the biomimetic nature of the treated polymer membranes. The utility of the membrane permeation dissolution methodology is seen during the evaluation of felodipine solid dispersions produced by spray drying and hot melt extrusion. The membrane permeation dissolution methodology can suggest formulation performance and be employed as a screening tool for selection of candidates to move forward to pharmacokinetic studies. Furthermore, the presented model is a cost-effective technique.
引用
收藏
页码:2841 / 2853
页数:12
相关论文
共 157 条
[1]  
Dahan A(2007)The effect of different lipid based formulations on the oral absorption of lipophilic drugs: the ability of in vitro lipolysis and consecutive ex vivo intestinal permeability data to predict in vivo bioavailability in rats Eur J Pharm Biopharm 67 96-105
[2]  
Hoffman A(2012)The solubility–permeability interplay and its implications in formulation design and development for poorly soluble drugs AAPS J 14 244-251
[3]  
Dahan A(2010)A pH-dilution method for estimation of biorelevant drug solubility along the gastrointestinal tract: application to physiologically based pharmacokinetic modeling Mol Pharm 7 1516-1526
[4]  
Miller JM(2012)Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings Adv Drug Deliv Rev 64 4-17
[5]  
Gao Y(2010)Finding solutions Chemical & Engineering News 88 13-18
[6]  
Carr RA(1998)Dissolution testing as a prognostic tool for oral drug absorption: immediate release dosage forms Pharm Res 15 11-22
[7]  
Spence JK(2007)Current perspectives in dissolution testing of conventional and novel dosage forms Int J Pharm 328 12-21
[8]  
Wang WW(1988)Estimating human oral fraction dose absorbed: a correlation using rat intestinal membrane permeability for passive and carrier-mediated compounds Pharm Res 5 651-654
[9]  
Turner TM(2014)The Biopharmaceutics Classification System: subclasses for in vivo predictive dissolution (IPD) methodology and IVIVC Eur J Pharm Sci 57 152-163
[10]  
Lipari JM(2008)Hydroxypropyl methylcellulose acetate succinate-based spray-dried dispersions: an overview Mol Pharm 5 1003-1019