Molecular Pharmaceutics · 2014 · 24 citations · 51 references
Materials ScienceSpatial Ibuprofen DistributionAdvanced Multipellet FormulationsEngineeringExcipientsCeramic PowdersMedicinePharmaceutical TechnologyDrug Delivery SystemsPellet SurfaceDrug DistributionSoft MatterPharmacologySolid State Modifications
Drying is a common pharmaceutical process, whose potential to alter the final drug properties-even at relatively low temperatures-is often neglected. The present study addresses the impact of drying at 20 and 50 °C on wet-extruded calcium stearate (CaSt) pellets. Drying at 20 °C caused the majority of ibuprofen to accumulate at the pellet surface due to a strong convective flow from the pellet's center to the surface. In contrast, pellets dried at 50 °C still contained ibuprofen in the pellet's interior due to the higher drying rate and the associated film breakage during drying. Moreover, the higher drying temperature caused CaSt to form a second lamellar phase and ibuprofen to convert (partly) into its amorphous state. Overall, the drying process affected the solid state and the spatial ibuprofen distribution within the pellet. Knowledge of these effects can aid in tailoring advanced multipellet formulations.
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Michael Hart, Moshe Deutsch · Physics Bulletin · 1983 · 4.6K citations
Comprehensive Treatment, X-ray Spectroscopy, Engineering +14
George W. Scherer · Journal of the American Ceramic Society · 1990 · 997 citations
Materials Science, Pore Structure, Differential Shrinkage +13