Physicochemical properties and mechanism of drug release from ethyl cellulose matrix tablets prepared by direct compression and hot-melt extrusion

被引:194
作者
Crowley, MM [1 ]
Schroeder, B
Fredersdorf, A
Obara, S
Talarico, M
Kucera, S
McGinity, JW
机构
[1] Univ Texas, Coll Pharm, Div Pharmaceut, Austin, TX 78712 USA
[2] Free Univ Berlin, Coll Pharm, Berlin, Germany
[3] Shin Etsu Chem Co Ltd, Specialty Chem Res Ctr, Niigata 9428601, Japan
[4] Micromerit Instrument Corp, Norcross, GA 30093 USA
关键词
hot-melt extrusion; guaifenesin; ethyl cellulose; matrix tablets; Higuchi diffusion model; porosity; tortuosity; percolation; free volume; sustained release; mercury porosimetry;
D O I
10.1016/j.ijpharm.2003.09.037
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The objective of this research project was to determine the physicochemical properties and investigate the drug release mechanism from ethyl cellulose (EC) matrix tablets prepared by either direct compression or hot-melt extrusion (HME) of binary mixtures of water soluble drug (guaifenesin) and the polymer. Ethyl cellulose was separated into "fine" or "coarse" particle size fractions corresponding to 325-80 and 80-30 mesh particles, respectively. Tablets containing 30% guaifenesin were prepared at 10, 30, or 50 kN compaction forces and extruded at processing temperatures of 80-90 and 90-110degreesC. The drug dissolution and release kinetics were determined and the tablet pore characteristics, tortuosity, thermal properties and surface morphologies were studied using helium pycnometry, mercury porosimetry, differential scanning calorimetry and scanning electron microscopy. The tortuosity was measured directly by a novel technique that allows for the calculation of diffusion coefficients in three experiments. The Higuchi diffusion model, Percolation Theory and Polymer Free Volume Theory were applied to the dissolution data to explain the release properties of drug from the matrix systems. The release rate was shown to be dependent on the ethyl cellulose particle size, compaction force and extrusion temperature. (C) 2003 Elsevier B.V. All rights reserved.
引用
收藏
页码:509 / 522
页数:14
相关论文
共 55 条
[1]   Hot melt extrusion of acrylic films [J].
AitkenNichol, C ;
Zhang, F ;
McGinity, JW .
PHARMACEUTICAL RESEARCH, 1996, 13 (05) :804-808
[2]   FUROSEMIDE-LOADED ETHYL CELLULOSE MICROSPHERES PREPARED BY SPHERICAL CRYSTALLIZATION TECHNIQUE - MORPHOLOGY AND RELEASE CHARACTERISTICS [J].
AKBUGA, J .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1991, 76 (03) :193-198
[3]   RESTRICTED TRANSPORT IN SMALL PORES - MODEL FOR STERIC EXCLUSION AND HINDERED PARTICLE MOTION [J].
ANDERSON, JL ;
QUINN, JA .
BIOPHYSICAL JOURNAL, 1974, 14 (02) :130-150
[4]   Modelling drying shrinkage in reconstructed porous materials: application to porous Vycor glass [J].
Bentz, DP ;
Garboczi, EJ ;
Quenard, DA .
MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING, 1998, 6 (03) :211-236
[5]   PERCOLATION THEORY AND ITS APPLICATION TO GROUNDWATER HYDROLOGY [J].
BERKOWITZ, B ;
BALBERG, I .
WATER RESOURCES RESEARCH, 1993, 29 (04) :775-794
[6]  
Broadbent S. R., 1957, P CAMBRIDGE PHIL SOC, V53, P629, DOI [DOI 10.1017/S0305004100032680, 10.1017/S0305004100032680]
[7]  
BROOKSHAW AP, 1973, BR POLYM J, V5, P229
[8]   The relative roles of compaction and early cementation in the destruction of permeability in carbonate grainstones: a case study from the Paleogene of west-central Florida, USA [J].
Budd, DA .
JOURNAL OF SEDIMENTARY RESEARCH, 2002, 72 (01) :116-128
[9]   Use of commercial porous ceramic particles for sustained drug delivery [J].
Byrne, RS ;
Deasy, PB .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2002, 246 (1-2) :61-73
[10]   Porous electrodes-based double-layer supercapacitors:: pore structure versus series resistance [J].
Celzard, A ;
Collas, F ;
Marêché, JF ;
Furdin, G ;
Rey, I .
JOURNAL OF POWER SOURCES, 2002, 108 (1-2) :153-162