Ngn3-Positive Cells Arise from Pancreatic Duct Cells
Chiemi Kimura-Nakajima1,2, Kousuke Sakaguchi1, Yoshiko Hatano1
1Department of Nutritional Science and Food Safety, Faculty of Applied Bioscience, Tokyo University of Agriculture, Tokyo 156-8502, Japan.
Abstract:
The production of pancreatic β cells is the most challenging step for curing diabetes using next-generation treatments. Adult pancreatic endocrine cells are thought to be maintained by the self-duplication of differentiated cells, and pancreatic endocrine neogenesis can only be observed when the tissue is severely damaged. Experimentally, this can be performed using a method named partial duct ligation (PDL). As the success rate of PDL surgery is low because of difficulties in identifying the pancreatic duct, we previously proposed a method for fluorescently labeling the duct in live animals. Using this method, we performed PDL on neurogenin3 (Ngn3)-GFP transgenic mice to determine the origin of endocrine precursor cells and evaluate their potential to differentiate into multiple cell types. Ngn3-activated cells, which were marked with GFP, appeared after PDL operation. Because some GFP-positive cells were aligned proximally to the duct, we hypothesized that Ngn3-positive cells arise from the pancreatic duct. Therefore, we next developed an in vitro pancreatic duct culture system using Ngn3-GFP mice and examined whether Ngn3-positive cells emerge from this duct. We observed GFP expressions in ductal organoid cultures. GFP expressions were correlated with Ngn3 expressions and endocrine cell lineage markers. Interestingly, tuft cell markers were also correlated with GFP expressions. Our results demonstrate that in adult mice, Ngn3-positive endocrine precursor cells arise from the pancreatic ducts both in vivo and in vitro experiments indicating that the pancreatic duct could be a potential donor for therapeutic use.
Insights
Pancreatic ducts in adult mice can generate new endocrine precursor cells, offering a potential source for diabetes cell therapy. These neurogenin3-positive cells arise from ductal cells, confirmed through in vivo and in vitro studies.
Area of Science:
- Endocrinology
- Developmental Biology
- Regenerative Medicine
Background:
- Pancreatic beta cell production is critical for diabetes treatment.
- Adult pancreatic endocrine cells typically self-duplicate, with neogenesis rare except in severe damage.
- Partial duct ligation (PDL) is an experimental method to induce pancreatic endocrine neogenesis.
Purpose of the Study:
- To investigate the origin of endocrine precursor cells after PDL.
- To evaluate the differentiation potential of these precursor cells.
- To determine if pancreatic ducts can serve as a source for new endocrine cells.
Main Methods:
- Utilized neurogenin3 (Ngn3)-GFP transgenic mice for fluorescent duct labeling.
- Performed partial duct ligation (PDL) surgery in live animals.
- Established an in vitro pancreatic duct organoid culture system.
Main Results:
- Ngn3-activated (GFP-positive) cells appeared post-PDL.
- GFP-positive cells were observed originating from the pancreatic duct.
- In vitro cultures showed GFP expression correlated with Ngn3 and endocrine markers, and also tuft cell markers.
Conclusions:
- Adult pancreatic ducts are a source of Ngn3-positive endocrine precursor cells in mice.
- These findings were consistent in both in vivo and in vitro experimental models.
- The pancreatic duct represents a promising donor source for therapeutic applications in diabetes.
Related Concept Videos
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...
Renewal of Intestinal Stem Cells
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...


