Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6377332 | Industrial Crops and Products | 2013 | 8 Pages |
Abstract
Solid lipid nanoparticle (SLN) systems were developed using response surface methodology to optimize the mean particle size, α-tocopherol recovery rate and zeta potential of SLNs containing α-tocopherol. The optimization of α-tocopherol-loaded SLNs was characterized by X-ray diffraction analysis, differential scanning calorimetry, and the analysis of morphology and physical stability. The optimal conditions for an α-tocopherol-loaded SLN preparation were a particle size, α-tocopherol recovery rate and zeta potential of 214.5 nm, 75.4% and â41.9 mV, respectively; this preparation was stable during storage at 6 °C for 21 days. Furthermore, Compritol® 888 CG ATO changed its crystalline nature from the βⲠpolymorphic form in the pure formulation to the α and βⲠpolymorphic forms in SLNs.
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Authors
Sabrina Matos de Carvalho, Carolina Montanheiro Noronha, Caroline Louise Floriani, Renata Calegari Lino, Gabriela Rocha, Ismael Casagrande Bellettini, Paulo José Ogliari, Pedro Luiz Manique Barreto,