Related Experiment Video
Updated: Feb 4, 2026

In situ Quantification of Pancreatic Beta-cell Mass in Mice
Published on: June 7, 2010
Artificial Pancreas or Novel Beta-Cell Replacement Therapies: a Race for Optimal Glycemic Control?
Michiel F Nijhoff1, Eelco J P de Koning2
1Department of Medicine, Division of Nephrology and Transplantation, Division of Endocrinology and Metabolism, Leiden University Medical Centre, PO Box 9600, 2300, RC, Leiden, the Netherlands.
Purpose Of Review:
New treatment strategies are needed for patients with type 1 diabetes (T1D). Closed loop insulin delivery and beta-cell replacement therapy are promising new strategies. This review aims to give an insight in the most relevant literature on this topic and to compare the two radically different treatment modalities.
Recent Findings:
Multiple clinical studies have been performed with closed loop insulin delivery devices and have shown an improvement in overall glycemic control and time spent in hypoglycemia. Beta-cell transplantation has been shown to normalize or greatly improve glycemic control in T1D, but the donor organ shortage and the necessity to use immunosuppressive agents are major drawbacks. Donor organ shortage may be solved by the utilization of stem cell-derived beta cells, which has shown great promise in animal models and are now tested in clinical studies. Immunosuppression may be avoided by encapsulation. Closed loop insulin delivery devices are promising treatment strategies and are likely to be used in clinical practice in the short term. But this approach will always suffer from delays in glucose measurement and insulin action preventing it from normalizing glycemic control. In the long term, stem cell-derived beta cell transplantation may be able to achieve this, but wide implementation in clinical practice is still far away.
Insights
New treatments for type 1 diabetes (T1D) include closed-loop insulin delivery and beta-cell replacement. While closed-loop systems offer near-term benefits, stem cell therapies hold long-term promise for normalizing glucose control.
Area of Science:
- Endocrinology
- Metabolic Diseases
- Biotechnology
Background:
- Type 1 diabetes (T1D) management requires innovative therapeutic approaches.
- Current T1D treatments face limitations in achieving optimal glycemic control.
Purpose of the Study:
- To review and compare closed-loop insulin delivery systems and beta-cell replacement therapies for T1D.
- To provide insight into the latest literature on these T1D treatment modalities.
Main Methods:
- Literature review of clinical studies and research on T1D treatments.
- Comparative analysis of closed-loop insulin delivery and beta-cell transplantation.
Main Results:
- Closed-loop systems improve glycemic control and reduce hypoglycemia in T1D patients.
- Beta-cell transplantation normalizes glycemic control but faces donor shortage and immunosuppression challenges.
- Stem cell-derived beta cells and encapsulation show promise for overcoming transplantation drawbacks.
Conclusions:
- Closed-loop insulin delivery is a promising short-term T1D treatment, likely for clinical use soon.
- Stem cell-based beta-cell transplantation offers potential for long-term T1D cure but requires further development.
- Neither current approach fully normalizes glycemic control in T1D.
Related Concept Videos
Continuous Renal Replacement Therapy
Cells and Secretions of the Pancreas
Exocrine function is carried out by acinar cells, organized into clusters known as acini. These cells contribute to digestion by releasing substantial quantities of enzyme-rich, alkaline digestive juices.
Concurrently, the dispersed clusters of endocrine cells throughout the...
Extracorporeal Removal of Drugs: Continuous Renal Replacement Therapy
Pancreas
The broad head of the pancreas lies within the loop formed by the duodenum, while its slender body reaches towards the spleen. The tail of the pancreas is short...
RACE - Rapid Amplification of cDNA Ends
The Cell Cycle Control System
Cyclins and cyclin-dependent kinases (Cdks) are the primary cell cycle regulators and...

