Characterization of Glucose-Mediated Insulin Release from Implantable Polymers
- 1 December 1996
- journal article
- Published by American Geophysical Union (AGU) in Journal of Pharmaceutical Sciences
- Vol. 85 (12) , 1341-1345
- https://doi.org/10.1021/js9600686
Abstract
We characterized a glucose-sensitive, controlled-release insulin delivery system. Insulin release rates increased when glucose was perfused in the release media surrounding the matrix. The system was composed of solid, particulate insulin, incorporated into an ethylene-vinyl acetate copolymer (EVAc) matrix. Feedback control was mediated by the glucose oxidase enzyme immobilized to Sepharose beads, which were incorporated along with insulin into the EVAc matrix. When glucose in solution entered the insulin delivery system, gluconic acid was produced, causing a drop in the microenvironmental pH of the matrix. This fall in pH resulted in a rise in insulin solubility and consequently a rise in the insulin release rate from the matrix. Insulin concentrations increased in vitro and in vivo in response to glucose infusion. The increased insulin release was shown to consist of a finite pulse of insulin that required an optimal recovery period of 1 h to achieve a maximal repeated response to a glucose stimulus. Repeated pulses were demonstrated over a 4 h period. An optimum enzyme ratio was also determined.Keywords
This publication has 20 references indexed in Scilit:
- Enzymatically controlled drug delivery.Proceedings of the National Academy of Sciences, 1988
- In vitro and in vivo kinetics of regulated drug release from polymer matrices by oscillating magnetic fieldsJournal of Biomedical Materials Research, 1987
- Controlled Release of Insulin From Polymer Matrices: Control of Diabetes in RatsDiabetes, 1986
- Controlled Release of Insulin From Polymer Matrices: In Vitro KineticsDiabetes, 1986
- Sintering Technique for the Preparation of Polymer Matrices for the Controlled Release of MacromoleculesJournal of Pharmaceutical Sciences, 1984
- A new approach (cyano-transfer) for cyanogen bromide activation of Sepharose at neutral pH, which yields activated resins, free of interfering nitrogen derivativesBiochemical and Biophysical Research Communications, 1982
- Magnetic modulation of release of macromolecules from polymers.Proceedings of the National Academy of Sciences, 1981
- Polymers for Sustained Macromolecule Release: Procedures to Fabricate Reproducible Delivery Systems and Control Release KineticsJournal of Pharmaceutical Sciences, 1980
- Polymers for the sustained release of proteins and other macromoleculesNature, 1976
- The Synthesis of Triaminoacyl-insulins and the Use of the t-Butyloxycarbonyl Group for the Reversible Blocking of the Amino Groups of Insulin*Biochemistry, 1967