The influence of formulation variables on the properties of pellets containing a self-emulsifying mixture
Autor: | Michael Newton, Jenny Petersson, Ashley Hoddesdon Clarke, Fridrun Podczeck, Steven William Booth |
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Rok vydání: | 2001 |
Předmět: |
Materials science
Surface Properties Stereochemistry Pellets Pharmaceutical Science Dosage form Pellet Dosage Form Microcrystalline cellulose chemistry.chemical_compound Drug Delivery Systems Chemical engineering chemistry Pulmonary surfactant Tensile Strength Ultimate tensile strength Pellet Microscopy Electron Scanning Emulsions Extrusion |
Zdroj: | Journal of Pharmaceutical Sciences. 90:987-995 |
ISSN: | 0022-3549 |
DOI: | 10.1002/jps.1051 |
Popis: | A method of converting self-emulsifying drug delivery systems to a pellet form has been studied. Formulations with varied relative quantities of an oil/surfactant mixture, water, microcrystalline cellulose (MCC), and lactose were chosen in a statistical design after preliminary ranging experiments. Pellets were produced by extrusion/spheronization. The characteristics of the pellets were studied by sieving, disintegration testing, diametral compression, image analysis, non-contact laser profilometry, and scanning electron microscopy. The effects of the formulation variables on pellet properties were evaluated by analysis of variance. It was possible to relate the formulation variables to all the quantified pellet properties except the shape. The relative quantities of oil/surfactant and water had an effect on the amount of liquid and oil/surfactant that could be incorporated into the powder, extrusion force, median diameter, size spread, disintegration time, tensile strength, and surface roughness. The relative quantities of lactose and MCC had an effect on the amount of liquid and oil/surfactant that could be incorporated into the powder, tensile strength, and roughness only. Water was an essential element of the formulations. The maximum quantity of the specific oil/surfactant combination studied that can be incorporated was 42% of the dry pellet weight. © 2001 Wiley-Liss, Inc. and the American Pharmaceutical Association J Pharm Sci 90:987–995, 2001 |
Databáze: | OpenAIRE |
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