The aim of this work was to investigate the effects of the nature and concentration of cellulose derivatives on the release kinetics of ibuprofen from hydrogel matrices using a response surface method (RSM). A series of cellulose derivatives, as methyl, hydroxyethyl, hydroxypropyl and hydroxypropyl methyl celluloses (MC, HEC, HPC and HPMC) were used as polymer platforms and their impacts on drug release were studied and compared to those obtained with a reference formulation prepared with HEC. It was shown that the use of HPMC in the gel formulation contributes to the improvement of drug release and consequently its biodisponibility. Indeed, the increase in HPMC concentration forms a controlled system release because polymer chains relaxati...
Hydrogels are materials largely used in the formulation of pharmaceuticals since, in principle, they...
The rheological properties of water-soluble le cellulose ether networks were studied to assess their...
Polysaccharides are attractive gelling agents in pharmacy due to their safety, biocompatibility, bio...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
The present work reports the study of different ketoprofen:excipient formulations, in order to deter...
The present study involved the preparation of ibuprofen-containing controlled release tablets formul...
Objective: Super porous hydrogels (SPHs), a novel drug delivery system can be developed to retain dr...
The water swellable hydrogels are commonly used in the production of solid pharmaceutical dosage sys...
The present research work was conducted in two phases.The research work in first phase was carried o...
Cellulose ethers have been increasingly used in the formulation of controlled release dosage forms; ...
This thesis examines the use of hydroxypropylmethylcellulose (HPMC), sodium carboxymethylcellulose (...
The study is focused on formulation of biocompatible hydrogels with a poorly soluble drug ibuprofen ...
Hydrophilic matrix tablets are a compressed well mixed composite of drug substance and excipients in...
In this study hydroxypropylmethylcellulose (HPMC) and sodium carboxymethylcellulose (NaCMC) were use...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
Hydrogels are materials largely used in the formulation of pharmaceuticals since, in principle, they...
The rheological properties of water-soluble le cellulose ether networks were studied to assess their...
Polysaccharides are attractive gelling agents in pharmacy due to their safety, biocompatibility, bio...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
The present work reports the study of different ketoprofen:excipient formulations, in order to deter...
The present study involved the preparation of ibuprofen-containing controlled release tablets formul...
Objective: Super porous hydrogels (SPHs), a novel drug delivery system can be developed to retain dr...
The water swellable hydrogels are commonly used in the production of solid pharmaceutical dosage sys...
The present research work was conducted in two phases.The research work in first phase was carried o...
Cellulose ethers have been increasingly used in the formulation of controlled release dosage forms; ...
This thesis examines the use of hydroxypropylmethylcellulose (HPMC), sodium carboxymethylcellulose (...
The study is focused on formulation of biocompatible hydrogels with a poorly soluble drug ibuprofen ...
Hydrophilic matrix tablets are a compressed well mixed composite of drug substance and excipients in...
In this study hydroxypropylmethylcellulose (HPMC) and sodium carboxymethylcellulose (NaCMC) were use...
Purpose: To develop a oral controlled matrix drug delivery system for a highly water soluble drug, d...
Hydrogels are materials largely used in the formulation of pharmaceuticals since, in principle, they...
The rheological properties of water-soluble le cellulose ether networks were studied to assess their...
Polysaccharides are attractive gelling agents in pharmacy due to their safety, biocompatibility, bio...