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.

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.