The use of visible and UV dissolution imaging for the assessment of propranolol hydrochloride in liquisolid compacts of Sesamum radiatum gum
暂无分享,去创建一个
Alan M. Smith | B. Conway | Adam Ward | K. Asare-Addo | N. Ngwuluka | A. Adebisi | E. Nep | K. Walton | M. Wallis | Slavena Stoycheva | S. Shaboun | Seham Shaboun
[1] J. Sabín,et al. Thermodynamics of clay–drug complex dispersions: Isothermal titration calorimetry and high-performance liquid chromatography , 2019, Journal of pharmaceutical analysis.
[2] Waseem Kaialy,et al. Development of a novel method utilising dissolution imaging for the measurement of swelling behaviour in hydrophilic matrices , 2019, International journal of pharmaceutics: X.
[3] P. Timmins,et al. Effect of preparation method on the surface properties and UV imaging of indomethacin solid dispersions , 2019, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[4] N. Fotaki,et al. Surface Dissolution UV Imaging for Investigation of Dissolution of Poorly Soluble Drugs and Their Amorphous Formulation , 2019, AAPS PharmSciTech.
[5] P. Laity,et al. Real time calorimetric characterisation of clay – drug complex dispersions and particles , 2018, International journal of pharmaceutics: X.
[6] Alan M. Smith,et al. Solid state and dissolution behaviour of a low melting point drug in co-milled mixtures of Sesamum radiatum gum , 2018, British Journal of Pharmacy.
[7] P. Timmins,et al. Direct imaging of the dissolution of salt forms of a carboxylic acid drug , 2018, International journal of pharmaceutics.
[8] T. Pongjanyakul,et al. Modification of alginate beads using gelatinized and ungelatinized arrowroot (Tacca leontopetaloides L. Kuntze) starch for drug delivery. , 2018, International journal of biological macromolecules.
[9] N. Petersen,et al. UV-vis Imaging of Piroxicam Supersaturation, Precipitation, and Dissolution in a Flow-Through Setup. , 2018, Analytical chemistry.
[10] Nickolaj J. Petersen,et al. Concomitant monitoring of implant formation and drug release of in situ forming poly (lactide-co-glycolide acid) implants in a hydrogel matrix mimicking the subcutis using UV-vis imaging. , 2018, Journal of pharmaceutical and biomedical analysis.
[11] M. H. Mahdi,et al. Hydro-alcoholic media effects on theophylline release from sesamum polysaccharide gum matrices , 2018, Drug development and industrial pharmacy.
[12] M. Maniruzzaman,et al. Intercalated theophylline-smectite hybrid for pH-mediated delivery , 2018, Drug Delivery and Translational Research.
[13] Jesper Østergaard,et al. UV imaging in pharmaceutical analysis. , 2018, Journal of pharmaceutical and biomedical analysis.
[14] M. H. Mahdi,et al. The influence of hydroalcoholic media on the performance of Grewia polysaccharide in sustained release tablets. , 2017, International journal of pharmaceutics.
[15] Barbara R. Conway,et al. Variable-focus microscopy and UV surface dissolution imaging as complementary techniques in intrinsic dissolution rate determination. , 2017, International journal of pharmaceutics.
[16] J. Siepmann,et al. Chitosan-clay nanocomposite microparticles for controlled drug delivery: Effects of the MAS content and TPP crosslinking , 2017 .
[17] N. Jadhav,et al. Solid state behavior of progesterone and its release from Neusilin US2 based liquisolid compacts , 2017 .
[18] Alan M. Smith,et al. Evaluation of sesamum gum as an excipient in matrix tablets , 2016 .
[19] V. Kontogiorgos,et al. Structural characterisation and rheological properties of a polysaccharide from sesame leaves (Sesamum radiatum Schumach. & Thonn.). , 2016, Carbohydrate polymers.
[20] Waseem Kaialy,et al. Effect of solvent on retarding the release of diltiazem HCl from Polyox‐based liquisolid tablets , 2016, The Journal of pharmacy and pharmacology.
[21] J. Siepmann,et al. In vitro release studies of insulin from lipid implants in solution and in a hydrogel matrix mimicking the subcutis. , 2016, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[22] Alan M. Smith,et al. Starch-free grewia gum matrices: Compaction, swelling, erosion and drug release behaviour. , 2015, International journal of pharmaceutics.
[23] B. Conway,et al. The Influence of Fillers on Theophylline Release from Clay Matrices , 2015 .
[24] Karthik Yadav Janga,et al. Competence of raloxifene hydrochloride loaded liquisolid compacts for improved dissolution and intestinal permeation , 2015 .
[25] A. Nokhodchi,et al. Application of Polymer Combinations in Extended Release Hydrophilic Matrices , 2015 .
[26] Anja Boisen,et al. pH-triggered drug release from biodegradable microwells for oral drug delivery , 2015, Biomedical microdevices.
[27] V. Thakur,et al. Handbook of Polymers for Pharmaceutical Technologies , 2015 .
[28] N. Ochekpe,et al. Comparative Rheological Characterization of Two Natural Polymers from Sesamum radiatum and Bombax buonopozense for Application in Drug Delivery , 2014 .
[29] Ali Nokhodchi,et al. Drug release from matrix tablets: physiological parameters and the effect of food , 2014, Expert opinion on drug delivery.
[30] Waseem Kaialy,et al. Psyllium: a promising polymer for sustained release formulations in combination with HPMC polymers , 2014, Pharmaceutical development and technology.
[31] F. Sayyad,et al. Design and development of liquisolid compact of candesartan cilexetil to enhance dissolution , 2013 .
[32] J. Rantanen,et al. A New Approach to Dissolution Testing by UV Imaging and Finite Element Simulations , 2013, Pharmaceutical Research.
[33] A. Nokhodchi,et al. The role of oral controlled release matrix tablets in drug delivery systems. , 2012, BioImpacts : BI.
[34] Rama Rao Tadikonda,et al. Use of the liquisolid compact technique for improvement of the dissolution rate of valsartan , 2012 .
[35] T. Heinze,et al. Thermal studies of plant carbohydrate polymer hydrogels , 2011 .
[36] A. Nokhodchi,et al. Release Behaviour of Propranolol HCl from Hydrophilic Matrix Tablets Containing Psyllium Powder in Combination with Hydrophilic Polymers , 2011, AAPS PharmSciTech.
[37] T. Rades,et al. Novel chitosan-magnesium aluminum silicate nanocomposite film coatings for modified-release tablets. , 2011, International journal of pharmaceutics.
[38] T. Pongjanyakul,et al. Alginate-magnesium aluminum silicate films for buccal delivery of nicotine. , 2009, Colloids and surfaces. B, Biointerfaces.
[39] R. A. Freitas,et al. Physicochemical and mechanical characterization of galactomannan from Mimosa scabrella : Effect of drying method , 2009 .
[40] Yousef Javadzadeh,et al. Liquisolid technique as a new approach to sustain propranolol hydrochloride release from tablet matrices. , 2008, International journal of pharmaceutics.
[41] Yousef Javadzadeh,et al. Liquisolid technique for dissolution rate enhancement of a high dose water-insoluble drug (carbamazepine). , 2007, International journal of pharmaceutics.
[42] C. Caramella,et al. Use of clays as drug delivery systems: Possibilities and limitations , 2007 .
[43] S. Puttipipatkhachorn,et al. Xanthan-alginate composite gel beads: molecular interaction and in vitro characterization. , 2007, International journal of pharmaceutics.
[44] S. Puttipipatkhachorn,et al. Investigation of novel alginate-magnesium aluminum silicate microcomposite films for modified-release tablets. , 2005, Journal of controlled release : official journal of the Controlled Release Society.
[45] F. Shokrolahi,et al. THERMAL STUDIES ON NATURAL AND MODIFIED GUMS , 2004 .
[46] James W McGinity,et al. Physicochemical properties and mechanism of drug release from ethyl cellulose matrix tablets prepared by direct compression and hot-melt extrusion. , 2004, International journal of pharmaceutics.
[47] M. Bartolomei,et al. Physico-chemical characterisation of the modifications I and II of (R,S) propranolol hydrochloride: solubility and dissolution studies. , 1999, Journal of pharmaceutical and biomedical analysis.
[48] R. Grover,et al. Effect of powder substrate on the dissolution properties of methyclothiazide liquisolid compacts. , 1999, Drug development and industrial pharmacy.
[49] A. Hussain,et al. Polymer erosion and drug release characterization of hydroxypropyl methylcellulose matrices. , 1998, Journal of pharmaceutical sciences.
[50] R. K. Khar,et al. Evaluation of guar gum in the preparation of sustained-release matrix tablets. , 1998, Drug development and industrial pharmacy.
[51] A. Varma,et al. Thermal behavior of galactomannan guar gum and its periodate oxidation products , 1997 .
[52] D. L. Munday,et al. Release characteristics of diclofenac sodium from encapsulated natural gum mini-matrix formulations , 1996 .
[53] R. Kinget,et al. Comparative study on xanthan gum and hydroxypropylmethyl cellulose as matrices for controlled-release drug delivery I. Compaction and in vitro drug release behaviour , 1996 .
[54] N. Peppas,et al. Drug diffusion front movement is important in drug release control from swellable matrix tablets. , 1995, Journal of pharmaceutical sciences.
[55] S. Rossi,et al. On the employment of λ-carrageenan in a matrix system. I. Sensitivity to dissolution medium and comparison with Na carboxymethylcellulose and xanthan gum , 1993 .
[56] Ping I. Lee,et al. Probing the mechanisms of drug release from hydrogels , 1991 .
[57] N. Peppas,et al. A simple equation for the description of solute release. III. Coupling of diffusion and relaxation , 1989 .