211 - 223 |
Eudragit nanoparticles loaded with silybin: a detailed study of preparation, freeze-drying condition and in vitro/in vivo evaluation Varshosaz J, Minaiyan M, Khaleghi N |
224 - 230 |
Triblock polymeric micelles as carriers for anti-inflammatory drug delivery Yoncheva K, Petrov P, Pencheva I, Konstantinov S |
231 - 239 |
Preparation and in vitro-in vivo evaluation of surface-modified poly(lactide-co-glycolide) nanoparticles as controlled release carriers for flutamide delivery Ige PP, Dipsingh SN |
240 - 246 |
Understanding solid-state properties of triglycerides used in pharmaceutical and food microencapsulation Elviri L, Mangia M, Menabeni R, Della Bella A, Camellini C, Beltrami D, Arduini L, Bettini R |
247 - 254 |
Effect of wall material on the antioxidant activity and physicochemical properties of Rubus fruticosus juice microcapsules Diaz DI, Beristain CI, Azuara E, Luna G, Jimenez M |
255 - 272 |
Driving forces for drug loading in drug carriers Li Y, Yang L |
273 - 280 |
Development of cyclosporine A microemulsion for parenteral delivery Yuan Y, Che X, Zhao MY, Wang Y, Liu YJ, Schwendeman A, Li SM |
281 - 289 |
Development of a microparticulate prostate cancer vaccine and evaluating the effect of route of administration on its efficacy via the skin Akalkotkar A, Chablani L, Tawde SA, D'Souza C, D'Souza MJ |
290 - 299 |
Microencapsulation of Clostridium acetobutylicum ATCC 824 spores in gellan gum microspheres for the production of biobutanol Rathore S, Heng PWS, Chan LW |
300 - 307 |
Improved viability of Lactobacillus acidophilus NRRL-B 4495 during freeze-drying in whey protein-pullulan microcapsules Cabuk B, Harsa ST |
308 - 316 |
Microencapsulation of insulin using a W/O/W double emulsion followed by complex coacervation to provide protection in the gastrointestinal tract Cardenas-Bailon F, Osorio-Revilla G, Gallardo-Velazquez T |