The influence of agitation sequence and ionic strength on in vitro drug release from hypromellose (E4M and K4M) ER matrices--the use of the USP III apparatus.
暂无分享,去创建一个
Waseem Kaialy | Ali Nokhodchi | A. Nokhodchi | P. Laity | M. Levina | A. Rajabi-Siahboomi | B. Conway | Peter R Laity | Kofi Asare-Addo | Marina Levina | Barbara R Conway | K. Asare-Addo | Ali Rajabi-Siahboomi | Mohammed U Ghori | Enes Supuk | E. Šupuk | W. Kaialy
[1] 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.
[2] H. Larhrib,et al. Influence of Batch Cooling Crystallization on Mannitol Physical Properties and Drug Dispersion from Dry Powder Inhalers , 2012 .
[3] Nicholas A. Peppas,et al. A simple equation for description of solute release I. Fickian and non-fickian release from non-swellable devices in the form of slabs, spheres, cylinders or discs , 1987 .
[4] M. Ghadiri,et al. Analysis of a Simple Test Device for Tribo‐Electric Charging of Bulk Powders , 2009 .
[5] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[6] A. Hussain,et al. Polymer erosion and drug release characterization of hydroxypropyl methylcellulose matrices. , 1998, Journal of pharmaceutical sciences.
[7] Martyn C. Davies,et al. Structure and Behavior in Hydrophilic Matrix Sustained Release Dosage Forms: 4. Studies of Water Mobility and Diffusion Coefficients in the Gel Layer of HPMC Tablets Using NMR Imaging , 1996, Pharmaceutical Research.
[8] J. A. Hersey,et al. Segregation and mixing of fine particles in an ordered mixture , 1981 .
[9] M. Tobyn,et al. Development and evaluation of bio-dissolution systems capable of detecting the food effect on a polysaccharide-based matrix system. , 2003, Journal of controlled release : official journal of the Controlled Release Society.
[10] Martyn C. Davies,et al. Structure and behaviour in hydrophilic matrix sustained release dosage forms: 3. The influence of pH on the sustained-release performance and internal gel structure of sodium alginate matrices , 1995 .
[11] M. Ghadiri,et al. Tribo-electrification of active pharmaceutical ingredients and excipients , 2012 .
[12] S. Bolton,et al. The influence of tablet density on the human oral absorption of sustained release acetaminophen matrix tablets , 1991 .
[13] Ali Nokhodchi,et al. Effect of ionic strength and pH of dissolution media on theophylline release from hypromellose matrix tablets—Apparatus USP III, simulated fasted and fed conditions , 2011 .
[14] J. Sjögren,et al. Investigation of prandial effects on hydrophilic matrix tablets. , 1999, Drug development and industrial pharmacy.
[15] Waseem Kaialy,et al. Dry powder inhalers: mechanistic evaluation of lactose formulations containing salbutamol sulphate. , 2012, International journal of pharmaceutics.
[16] B. Abrahamsson,et al. Evaluation of Solubilizers in the Drug Release Testing of Hydrophilic Matrix Extended-Release Tablets of Felodipine , 1994, Pharmaceutical Research.
[17] H. Venables,et al. Powder Mixing , 2001, Drug development and industrial pharmacy.
[18] Richard Bowtell,et al. Structure and behaviour in hydrophilic matrix sustained release dosage forms: 2. NMR-imaging studies of dimensional changes in the gel layer and core of HPMC tablets undergoing hydration , 1994 .
[19] Waseem Kaialy,et al. The influence of physical properties and morphology of crystallised lactose on delivery of salbutamol sulphate from dry powder inhalers. , 2012, Colloids and surfaces. B, Biointerfaces.
[20] Carla Caramella,et al. Influence of medium on dissolution-erosion behaviour of Na carboxymethylcellulose and on viscoelastic properties of gels , 1995 .
[21] N. L. Stemm,et al. Qualitative evaluation of the mechanism of release of matrix sustained release dosage forms by measurement of polymer release , 1993 .
[22] J. Siepmann,et al. Modeling of drug release from delivery systems based on hydroxypropyl methylcellulose (HPMC). , 2001 .
[23] B. Lippold,et al. Drug Release From Hydrocolloid Embeddings with High or Low Susceptibility to Hydrodynamic Stress , 1995, Pharmaceutical Research.
[24] Kristl Julijana,et al. Analysis of surface properties of cellulose ethers and drug release from their matrix tablets. , 2006, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[25] M. Williams,et al. Influence of ionic strength on matrix integrity and drug release from hydroxypropyl cellulose compacts , 1993 .
[26] Ali R. Rajabi-Siahboomi,et al. A study on the interaction of water and cellulose ethers using differential scanning calorimetry , 1997 .
[27] John E. Hogan,et al. The influence of additives on the cloud point, disintegration and dissolution of hydroxypropylmethylcellulose gels and matrix tablets , 1990 .
[28] K. A. Khan. The concept of dissolution efficiency , 1975, The Journal of pharmacy and pharmacology.
[29] Ali Nokhodchi,et al. Study of dissolution hydrodynamic conditions versus drug release from hypromellose matrices: the influence of agitation sequence. , 2010, Colloids and surfaces. B, Biointerfaces.
[30] J. Staniforth,et al. Powder mixing by triboelectrification , 1981 .