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Updated: Jun 19, 2026

A System for ex vivo Culturing of Embryonic Pancreas
Published on: August 27, 2012
Morphological and functional studies on microencapsulated human fetal pancreatic tissue
Insights
Microencapsulated human fetal pancreatic tissue retains viability for over 25 days. This research suggests potential for treating diabetes mellitus through transplantation of these pancreatic microcapsules.
Area of Science:
- Biomedical Engineering
- Endocrinology
- Regenerative Medicine
Background:
- Diabetes mellitus is a chronic metabolic disorder characterized by hyperglycemia.
- Current treatments for diabetes include insulin therapy and, in some cases, pancreatic transplantation.
- Fetal pancreatic tissue offers a potential source for cell-based therapies due to its regenerative capacity.
Purpose of the Study:
- To assess the viability and function of microencapsulated human fetal pancreatic tissue in culture.
- To determine the suitability of microencapsulated fetal pancreatic tissue for potential transplantation in diabetes treatment.
Main Methods:
- Human fetal pancreases (4-6 months gestation) were microencapsulated using alginate and poly-lysine.
- Microcapsules were cultured for 4-7 days before morphological and functional studies.
- Immunocytochemical staining, radioimmunoassay (RIA) for insulin and C-peptide, and amylase determination were performed.
Main Results:
- B-cells within microcapsules remained morphologically intact up to 48 days.
- Microencapsulated tissues demonstrated sustained insulin secretion for 25 days, comparable to non-encapsulated tissues.
- No exocrine function was detected, indicated by negative amylase levels.
Conclusions:
- Microencapsulated human fetal pancreatic tissue maintains viability in culture for over 25 days.
- The retained insulin secretion function suggests potential therapeutic applications.
- These findings support the use of microencapsulated fetal pancreatic tissue as a transplantable material for managing diabetes mellitus.
Abstract:
Fifty human fetal pancreases of 4-6 months gestation obtained from legal abortions were microencapsulated with alginate, poly-lysine after culture for 4-7 days. The microcapsules were studied morphologically and functionally. Immunocytochemical staining for insulin indicated B-cells were morphologically intact at 48 days. Insulin and C-peptide of the culture medium measured with radioimmuno-assay (RIA) showed that the microcapsules still retained the function of insulin secretion after culture for 25 days. There was no statistical difference when compared with noncapsulated tissues. No exocrine function was detected as evidenced by the amylase determination. We conclude that microencapsulated human fetal pancreatic tissues retain viability in culture for more than 25 days and can be used as transplants in the treatment of diabetes mellitus.

