The dissolution of powder drugs, besides being a topic of utmost importance, especially for the sparingly soluble ones, is far from being well-explained. The purpose of the present study is, on the one hand, to obtain experimental dissolution profiles and, on the other hand, to analyze and process the data for dissolution modeling. Three different size fractions of a widely used sparingly soluble drugsibuprofenswere fully characterized with regard to its particle size distribution, specific surface area, density, solubility, and diffusion coefficient. The dissolution profiles were obtained making use of a technique that counts and sizes particlessthe Coulter counter techniqueswhich is capable of following the number and size of th...
The objective of this work is to use direct Monte Carlo techniques in simulating drug delivery from ...
The objective of this work is to use direct Monte Carlo techniques in simulating drug delivery from ...
peer-reviewedThe published OA version of this article was added to ULIR on the 07/05/2021Accurate me...
The dissolution of powder drugs, besides being a topic of utmost importance, especially for the spa...
The present work deals with the simulation of the dissolution process of polydisperse powders. Three...
The present work deals with the simulation of the dissolution process of polydisperse powders. Three...
A novel dissolution method was developed, suitable for powder mixtures, based on the USP basket appa...
The present work deals with the simulationof the dissolution process of polydispersepowders.Three di...
The aim of this theoretical paper is to develop a mathematical model for describing the dissolution ...
Though various attempts have been made in literature to model the particle size distribution of an a...
Many drugs are administered as crystalline particles compressed into tablets and taken orally. When ...
Many drugs are administered as crystalline particles compressed into tablets and taken orally. When ...
The dissolution processes of active pharmaceutical ingredient (API) crystals have been extensively s...
The use of mathematical concepts and language aiming to describe and represent the interactions and ...
Dissolution has an important role in the release of active ingredients from pharmaceutical preparati...
The objective of this work is to use direct Monte Carlo techniques in simulating drug delivery from ...
The objective of this work is to use direct Monte Carlo techniques in simulating drug delivery from ...
peer-reviewedThe published OA version of this article was added to ULIR on the 07/05/2021Accurate me...
The dissolution of powder drugs, besides being a topic of utmost importance, especially for the spa...
The present work deals with the simulation of the dissolution process of polydisperse powders. Three...
The present work deals with the simulation of the dissolution process of polydisperse powders. Three...
A novel dissolution method was developed, suitable for powder mixtures, based on the USP basket appa...
The present work deals with the simulationof the dissolution process of polydispersepowders.Three di...
The aim of this theoretical paper is to develop a mathematical model for describing the dissolution ...
Though various attempts have been made in literature to model the particle size distribution of an a...
Many drugs are administered as crystalline particles compressed into tablets and taken orally. When ...
Many drugs are administered as crystalline particles compressed into tablets and taken orally. When ...
The dissolution processes of active pharmaceutical ingredient (API) crystals have been extensively s...
The use of mathematical concepts and language aiming to describe and represent the interactions and ...
Dissolution has an important role in the release of active ingredients from pharmaceutical preparati...
The objective of this work is to use direct Monte Carlo techniques in simulating drug delivery from ...
The objective of this work is to use direct Monte Carlo techniques in simulating drug delivery from ...
peer-reviewedThe published OA version of this article was added to ULIR on the 07/05/2021Accurate me...