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Updated: Jun 12, 2026

Bioluminescent Orthotopic Model of Pancreatic Cancer Progression
Published on: June 28, 2013
A bioluminescent mouse model of pancreatic {beta}-cell carcinogenesis
Adrian Zumsteg1, Karin Strittmatter, Daniela Klewe-Nebenius
1Department of Biomedicine, Institute of Biochemistry and Genetics, University of Basel, Switzerland.
Abstract:
The Rip1Tag2 transgenic mouse model of pancreatic beta-cell carcinogenesis has been instrumental in identifying several hallmarks of cancer, including tumor cell evasion from apoptosis, tumor angiogenesis and tumor invasion. Moreover, Rip1Tag2 mice have been helpful in the development and testing of innovative cancer therapies and tumor imaging protocols. However, based on tumor localization in the mouse, primary tumor growth and metastatic dissemination cannot be easily monitored in a longitudinal axis by non-invasive and low-technology approaches. Here, we report the generation of a new transgenic mouse line as a versatile tool to study beta-cell carcinogenesis. Transgenic expression of a bicistronic messenger RNA encoding simian virus large T antigen and firefly luciferase in pancreatic beta-cells recapitulates insulinoma development in a reproducible multistage process. In the mouse line called RipTag-IRES-Luciferase line (RTL) 1, the beta-cell-specific expression of luciferase allows the non-invasive monitoring of primary tumor growth over time in vivo and the detection and quantification of disseminated tumor cells and micrometastases in distant organs ex vivo. When crossed to mouse lines in which the expression of cancer 'modifier' genes has been manipulated, tumor initiation and tumor progression are similarly affected as previously reported for Rip1Tag2 mice, indicating a robust tumor progression pathway shared between the two different transgenic mouse lines. Together, the data indicate that the RTL1 mouse line will be of great value to study anti-tumoral therapeutic approaches as well as to define the functional roles of cancer- and metastasis-related genes when crossed to appropriate transgenic or gene-targeted mouse lines.
Insights
A new transgenic mouse model, RipTag-IRES-Luciferase (RTL) 1, enables non-invasive monitoring of pancreatic beta-cell tumors and metastases. This tool aids research into cancer therapies and gene functions in carcinogenesis.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- The Rip1Tag2 mouse model advanced understanding of pancreatic beta-cell cancer hallmarks.
- Limitations exist in monitoring tumor growth and metastasis longitudinally in Rip1Tag2 mice using non-invasive methods.
Purpose of the Study:
- To develop a novel transgenic mouse model for studying beta-cell carcinogenesis.
- To enable non-invasive, longitudinal monitoring of primary tumor growth and metastatic dissemination.
Main Methods:
- Generation of the RipTag-IRES-Luciferase (RTL) 1 transgenic mouse line.
- Expression of firefly luciferase in pancreatic beta-cells for in vivo and ex vivo imaging.
- Crossbreeding RTL1 mice with lines manipulating cancer modifier genes.
Main Results:
- RTL1 mice recapitulate insulinoma development in a reproducible, multistage process.
- Luciferase expression allows non-invasive monitoring of primary tumor growth.
- Disseminated tumor cells and micrometastases can be detected and quantified ex vivo.
Conclusions:
- The RTL1 mouse line is a versatile tool for studying beta-cell carcinogenesis.
- This model facilitates research on anti-tumoral therapies and gene functions in cancer progression and metastasis.

