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AAPS Pharmscitech|January 20, 2004
Dynamic changes in size distribution of emulsion droplets during ethyl acetate-based microencapsulation processY Bahl, H SahPDA Journal of Pharmaceutical Science and Technology|May 27, 1999
Protein instability toward organic solvent/water emulsification: implications for protein microencapsulation into microspheresH SahJournal of Controlled Release : Official Journal of the Controlled Release Society|March 4, 1999
Stabilization of proteins against methylene chloride/water interface-induced denaturation and aggregationH SahJournal of Pharmaceutical Sciences|December 10, 1999
Protein behavior at the water/methylene chloride interfaceH SahJournal of Pharmaceutical Sciences|December 31, 1997
A new strategy to determine the actual protein content of poly(lactide-co-glycolide) microspheresH SahInternational Journal of Pharmaceutics|February 17, 2000
Ethyl formate - alternative dispersed solvent useful in preparing PLGA microspheresH SahJournal of Microencapsulation|July 16, 2005
Formulation and process parameters affecting protein encapsulation into PLGA microspheres during ethyl acetate-based microencapsulation processM Cho, H SahJournal of Pharmaceutical Sciences|November 1, 1995
Effects of H+ liberated from hydrolytic cleavage of polyester microcapsules on their permeability and degradabilityH Sah, Y W ChienThe Journal of Pharmacy and Pharmacology|January 1, 1996
Prolonged immune response evoked by a single subcutaneous injection of microcapsules having a monophasic antigen releaseH Sah, Y W ChienJournal of Biomaterials Science. Polymer Edition|November 1, 2017
Solvent hydrolysis rate determines critical quality attributes of PLGA microspheres prepared using non-volatile green solventH Kim, S Kim, H SahPageof 2