139 - 151 |
Application of a hydrodynamic model to microencapsulation by coacervation Dobetti L, Pantaleo V |
153 - 164 |
In vitro antibiotic release from poly(3-hydroxybutyrate-co-3-hydroxyvalerate) rods Gursel I, Yagmurlu F, Korkusuz F, Hasirci V |
165 - 172 |
Spray-dried microparticulate systems containing acetaminophen Billon A, Bataille B, Delalonde M, Jacob N |
173 - 180 |
Crosslinked chitosan microspheres for encapsulation of diclofenac sodium: effect of crosslinking agent Kumbar SG, Kulkarni AR, Aminabhavi TM |
181 - 189 |
Oxidation of linoleic acid encapsulated with gum arabic or maltodextrin by spray-drying Minemoto Y, Hakamata K, Adachi S, Matsuno R |
191 - 201 |
The release of diazepam from poly(hydroxybutyrate-hydroxyvalerate) microspheres Chen J, Davis SS |
203 - 212 |
Vibrio cholerae-loaded poly(DL lactide co-glycolide) microparticles Yeh MK, Chen JL, Chiang CH |
213 - 223 |
Specific attachment of aqueous-based microcapsules to macrophages, B cells, and dendritic cells in vitro Brubaker JO, Macartney KK, Speaker TJ, Offit PA |
225 - 235 |
The effect of oral absorption enhancers on the in vivo performance of insulin-loaded poly(ethylcyanoacrylate) nanospheres in diabetic rats Radwan MA, Aboul-Enein HY |
237 - 244 |
Preparation and stability of agarose microcapsules containing BCG Esquisabel A, Hernandez RM, Igartua M, Gascon AR, Calvo B, Pedraz JL |
245 - 259 |
Polyvinylamine hydrochloride-based microcapsules: polymer synthesis, permeability and mechanical properties Grigorescu G, Rehor A, Hunkeler D |