Abstract
Rat islets encapsulated in semipermeable membranes remained viable in culture for 4 months. Multiple allotransplants of islets encapsulated in alginate-polylysine-polyethyleneimine membranes restored normoglycemia in recipient diabetic rats for most of a 90-day experimental period. Each individual transplant restored normal fasting plasma glucose levels for 15-20 d. The failure of the encapsulated islets was caused by an inflammatory response induced by polyethyleneimine. In contrast a single transplant of islets encapsulated in a biocompatible alginate-polylysine-alginate membrane restored normoglycemia in recipient animals for up to 10 months. Capsules with intact membranes and containing viable islets were recovered from the abdominal cavity 5 months post-transplantation. SEM studies on capsule membranes revealed essentially smooth surfaces. Differences between wet and dry wall thicknesses indicated that the membrane is a hydrogel, 4.00±0.28 μm thick in an aqueous environment. The clinical potential of transplanting cells encapsulated in biocompatible semipermeable hydrogel membranes is demonstrated by this study. © 1984 Humana Press Inc.
Author supplied keywords
- Microencapsulation, of islet cells
- alginate, in encapsulated islet support
- bioartificial pancreas
- biocompatible microencapsulated islets
- islet transplantation, microencapsulation in
- islets, microencapsulated
- pancreas, microencapsulated islets as an artificial
- poly-l-lysine, in encapsulated islet support
- polyethyleneimine, in encapsulated islet support
Cite
CITATION STYLE
Sun, A. M., O’Shea, G. M., & Goosen, M. F. A. (1984). Injectable microencapsulated islet cells as a bioartificial pancreas. Applied Biochemistry and Biotechnology, 10(1–3), 87–99. https://doi.org/10.1007/BF02783739
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