Title of article :
Formulation, physicochemical characterization and in vitro evaluation of human insulin-loaded microspheres as potential oral carrier
Author/Authors :
Agrawal, Gauravkumar R. Department of Chemical Technology - Dr. Babasaheb Ambedkar Marathwada University,India , Wakte, Pravin Department of Chemical Technology - Dr. Babasaheb Ambedkar Marathwada University,India , Shelke, Santosh Department of Pharmaceutics - Yash Institute of Pharmacy, Indi
Abstract :
The objective of the present investigation was to
formulate and characterize the human insulin entrapped
Eudragit S100 microspheres containing protease inhibitors
and to develop an optimized formulation with desirable
features. A w/o/w multiple emulsion solvent evaporation
technique was employed to produce microspheres of
human insulin using Eudragit S-100 as coating material
and polyvinyl alcohol as a stabilizer. The resultant microspheres
were evaluated for drug-excipient compatibility,
encapsulation efficiency, particle size, surface morphology,
micromeritic properties, enteric nature, and in vitro drug
release studies. Micromeritic properties indicated good
flow properties and compressibility. In present investigation
formulation F6 with drug/polymer ratio (1:100) was
found to be optimal in terms of evaluated parameters where
it showed a significantly higher percentage of encapsulation
efficiency (76.84%) with minimal drug release
(3.25%) in an acidic environment. The optimized formulation
(F6) also possessed good spherical shape and particle
size (57.42 lm) required to achieve the desired in vitro
drug release profile at pH 7.4. The results confirmed that
human insulin-loaded Eudragit S-100 microspheres containing
protease inhibitor possessed good encapsulation
efficiency, pH dependant controlled release carrying
encapsulated insulin to its optimum site of absorption. This
ultimately resulted in enhanced insulin absorption and
biological response
Keywords :
W/O/W multiple emulsion , Eudragit S-100 , Microspheres , Controlled release , Oral insulin , Protease inhibitors
Journal title :
Progress in Biomaterials
Journal title :
Progress in Biomaterials