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Updated: Aug 11, 2026

Preparation Of Neovascular Tissues from Human Glioma Tissues for Quantitative Proteomics Analysis of Tumor Angiogenesis
Published on: March 20, 2026
Antiangiogenic combination tumor therapy blocking alpha(v)-integrins and VEGF-receptor-2 increases therapeutic
Sebastian Strieth1, Martin E Eichhorn, Arne Sutter
1Institute for Surgical Research, Klinikum Grosshadern, Ludwig-Maximilians-University, Munich, Germany. sebastian.strieth@med.uni-muenchen.de
Abstract:
Anti-angiogenesis is a promising strategy for cancer therapy currently evaluated in clinical trials. The aim of the study was to investigate the effects of an antiangiogenic combination therapy inhibiting alpha(v)-integrins by a c(yclic)RGD-peptide (EMD270179) and blocking VEGFR-2 by SU5416 on tumor angiogenesis and progression in vivo. Experiments were performed in dorsal skinfold chamber preparations of Syrian golden hamsters (60 +/- 5 g) bearing A-Mel-3 tumors. From day 3-10 after tumor-cell implantation, animals (n = 6 per group) were treated by monotherapies using the cRGD-peptide (114 mg/kg/day; i.p.), the VEGFR-2 antagonist (6 mg/kg/day; i.p.) or by the combination of both monotherapies. A control group received only the solvent DMSO. Using intravital microscopy parameters of intratumoral microcirculation were analyzed on day 5, 7 and 10. In separate experiments subcutaneous tumor growth and metastasis formation was evaluated starting therapy on day 0. Functional vessel density was significantly reduced by the combination therapy compared to that by all other groups on day 10. Although intratumoral red blood cell velocity and vessel diameters were less affected, blood flow in vessel segments and the microcirculatory perfusion index were lower after combined therapy compared to controls. In addition, we observed a significantly stronger inhibition of subcutaneous tumor growth and metastasis formation using the combination therapy. These data clearly support the concept of antiangiogenic combination therapy and demonstrate that it may especially be effective when scheduled as an early or prophylactic treatment regimen, thus avoiding angiogenesis-dependent tumor and metastasis initiation or tumor recurrence.
Insights
Combination anti-angiogenesis therapy using an alpha(v)-integrin inhibitor and a VEGFR-2 blocker significantly reduced tumor angiogenesis and growth. Early or prophylactic treatment effectively inhibited tumor and metastasis initiation.
Area of Science:
- Oncology
- Vascular Biology
- Pharmacology
Background:
- Anti-angiogenesis is a key cancer therapy strategy.
- Combination therapies offer enhanced efficacy.
- Targeting alpha(v)-integrins and VEGFR-2 are promising anti-angiogenic approaches.
Purpose of the Study:
- To evaluate the in vivo efficacy of a combination therapy inhibiting alpha(v)-integrins and VEGFR-2.
- To assess the impact on tumor angiogenesis and progression.
- To determine the optimal treatment regimen.
Main Methods:
- In vivo dorsal skinfold chamber model in Syrian golden hamsters bearing A-Mel-3 tumors.
- Intravital microscopy to analyze intratumoral microcirculation.
- Assessment of subcutaneous tumor growth and metastasis formation.
Main Results:
- Combination therapy significantly reduced functional vessel density.
- Intratumoral blood flow and microcirculatory perfusion index were decreased.
- Combination therapy strongly inhibited tumor growth and metastasis formation.
Conclusions:
- Combined inhibition of alpha(v)-integrins and VEGFR-2 is an effective anti-angiogenic strategy.
- Early or prophylactic administration enhances efficacy.
- This approach can prevent angiogenesis-dependent tumor and metastasis initiation or recurrence.
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