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Identification and Characterization of Metastatic Factors by Gene Transfer into the Novel RIP-Tag; RIP-tva Murine Model
Published on: October 16, 2017
Moderate antiangiogenic activity by local, transgenic expression of endostatin in Rip1Tag2 transgenic mice
Birgit Schaffhauser1, Tanja Veikkola, Karin Strittmatter
1Department of Clinical-Biological Sciences, University of Basel, Mattenstrasse 28, CH-4058 Basel, Switzerland.
Abstract:
Many previous reports have demonstrated that systemic administration of endostatin (ES), a proteolytic cleavage product of collagen type XVIII and an endogenous angiogenesis inhibitor, represses tumor angiogenesis in different preclinical tumor models with varying efficacy. For example, systemic delivery of recombinant ES to rat insulin promoter 1 (Rip1)T-antigen 2 (Tag2)-transgenic mice, a mouse model of pancreatic beta-cell carcinogenesis, has repressed tumor angiogenesis efficiently and with it, tumor growth. Here, we report that the transgenic expression of ES in Rip1ES-transgenic mice only interferes moderately with tumor growth in Rip1Tag2;Rip1ES double-transgenic mice. Tumor incidence is not reduced by the local expression of ES, and tumor outgrowth and progression to tumor malignancy are only retarded slightly. A significant effect of local ES expression on tumor angiogenesis is only apparent during the early stages of tumor development, where less angiogenic hyperplastic lesions are observed. Although efficiently produced and secreted by transgenic beta cells, locally expressed ES appears to be sequestered in the microenvironment, and its systemic levels are not increased. The results indicate that the antiangiogenic functions of ES critically depend on the mode of delivery and the site of expression: although its systemic application represses tumor angiogenesis and tumor growth efficiently, locally expressed ES appears to be less effective, and hence, additional mechanisms of solubilization or activation of latent ES seem to be required. These results have important implications about the modes of delivery used in antiangiogenic, therapeutic strategies, which are based on the antiangiogenic activities of ES.
Insights
Systemic endostatin (ES) effectively inhibits tumor angiogenesis and growth. However, local ES expression shows limited efficacy, suggesting delivery method is crucial for anti-angiogenic therapies.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Endostatin (ES), derived from collagen type XVIII, is an endogenous angiogenesis inhibitor with demonstrated preclinical efficacy.
- Systemic administration of ES has shown promise in repressing tumor angiogenesis and growth in various models.
- Previous studies highlight the potential of ES in anti-angiogenic cancer therapy.
Purpose of the Study:
- To investigate the efficacy of locally expressed endostatin (ES) in a preclinical model of pancreatic cancer.
- To compare the anti-angiogenic and anti-tumor effects of local ES expression versus systemic administration.
- To understand the role of delivery method and expression site on ES function.
Main Methods:
- Generation of Rip1ES-transgenic mice for local ES expression in pancreatic beta cells.
- Crossbreeding Rip1ES mice with Rip1Tag2 mice to create double-transgenic mice for tumor studies.
- Assessment of tumor incidence, growth, malignancy, and angiogenesis in response to local ES expression.
Main Results:
- Local ES expression in Rip1Tag2;Rip1ES mice only moderately interfered with tumor growth and did not reduce tumor incidence.
- Tumor outgrowth and progression to malignancy were only slightly retarded by local ES.
- Significant anti-angiogenic effects of local ES were observed only in early-stage hyperplastic lesions; systemic ES levels did not increase.
Conclusions:
- The anti-angiogenic efficacy of ES is critically dependent on the mode of delivery and site of expression.
- Local ES expression is less effective than systemic application, potentially due to microenvironmental sequestration.
- Further research into solubilization or activation mechanisms for latent ES may be required for localized therapeutic strategies.

