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Biotechnology and Bioengineering|October 5, 1996
Poly(fumaric-co-sebacic) microspheres as oral drug delivery systemsD Chickering, J Jacob, E MathiowitzJournal of Microencapsulation|February 6, 2003
The effects of infiltration on protein release from multi-phase microspheres fabricated via solvent removalJ Godbee, P Weston, E MathiowitzBiomaterials|December 24, 1998
Degradation of double-walled polymer microspheres of PLLA and P(CPP:SA)20:80. II. In vivo degradationK J Leach, S Takahashi, E MathiowitzCancer Immunology, Immunotherapy : CII|March 31, 1998
Cytokine immunotherapy of cancer with controlled release biodegradable microspheres in a human tumor xenograft/SCID mouse modelN K Egilmez, Y S Jong, Y Iwanuma, et al.Journal of Microencapsulation|June 19, 2004
Degradation of multi-phase microspheres fabricated via solvent removalJ Godbee, P Pattamunuch, E Scott, et al.Journal of Pharmaceutical Sciences|August 1, 1988
Polyanhydride microsphere formulation by solvent extractionC Bindschaedler, K Leong, E Mathiowitz, et al.Biomaterials|June 5, 1998
Controlled delivery of therapeutics from microporous membranes. II. In vitro degradation and release of heparin-loaded poly(D,L-lactide-co-glycolide)M R Kreitz, J A Domm, E MathiowitzJournal of Controlled Release : Official Journal of the Controlled Release Society|October 2, 2001
Effect of protein molecular weight on release from micron-sized PLGA microspheresM Sandor, D Enscore, P Weston, et al.Biomedical Instrumentation & Technology|November 1, 1995
A microtensiometer for the analysis of bioadhesive microspheresD E Chickering, W P Harris, E MathiowitzJournal of Biomedical Materials Research|June 26, 1998
Characterization of soluble, salt-loaded, degradable PLGA films and their release of tetracyclineW L Webber, F Lago, C Thanos, et al.Pageof 6