Influence of pluronics on protein-loaded poly(?-caprolactone) microparticles
- 1 January 2001
- journal article
- Published by Taylor & Francis in Journal of Microencapsulation
- Vol. 18 (2) , 191-197
- https://doi.org/10.1080/02652040010000370
Abstract
The objective of this study was designed to elucidate the importance of adding pluronics to PCL microparticles for the delivery of proteins. The influences of the type and the amount of pluronic on the surface morphology and release properties of protein-loaded PCL microparticles were evaluated. Microparticles were prepared by the w/o/o/o solvent evaporation technique with an ultrasonicator. All of the microparticles prepared were spherical in shape, with a rough surface due to crystallization of PCL in the microparticles. The pluronics efficiently prevented microparticles from aggregation, and the size of microparticles prepared was significantly reduced. The significant increase in the encapsulation efficiency and decrease in the burst release of protein from PCL microparticles were achieved by using pluronic F127. Incorporation of pluronic F127 increased the hydrophilicity of the matrix, which further retained protein in blended microparticles. Both pluronics PE10100 and L61 significantly reduced the crystallinity of PCL microparticles. Nevertheless, this result did not further influence the release property of BSA from these microparticles.Keywords
This publication has 10 references indexed in Scilit:
- In Vitro Displacement by Rat Serum of Adsorbed Radiolabeled Poloxamer and Poloxamine Copolymers from Model and Biodegradable NanospheresJournal of Pharmaceutical Sciences, 1998
- Cytokine immunotherapy of cancer with controlled release biodegradable microspheres in a human tumor xenograft/SCID mouse modelCancer Immunology, Immunotherapy, 1998
- Degradation of porous poly(anhydride-co-imide) microspheres and implications for controlled macromolecule deliveryBiomaterials, 1998
- Evaluation of the Hydrophobic Drug Loading Characteristics in Nanoprecipitated Amphiphilic Cyclodextrin NanospheresPharmaceutical Development and Technology, 1998
- Protein release from poly(ε-caprolactone) microspheres prepared by melt encapsulation and solvent evaporation techniques: A comparative studyJournal of Biomaterials Science, Polymer Edition, 1997
- Taxol encapsulation in poly(?-caprolactone) microspheresCancer Chemotherapy and Pharmacology, 1995
- The microencapsulation of protein using a novel ternary blend based on poly(a-caprolactone)Journal of Microencapsulation, 1995
- Sustained drug delivery systems. I. The permeability of poly(ϵ‐caprolactone), poly(DL‐lactic acid), and their copolymersJournal of Biomedical Materials Research, 1979
- Lactone Polymerization and Polymer PropertiesJournal of Macromolecular Science: Part A - Chemistry, 1972
- Multiregressional Analysis of the Griffin HLB Numbers for Polyoxyethylene Polyoxypropylene SurfactantsJournal of Pharmaceutical Sciences, 1968