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Published on: September 1, 2016
Effect of VEGF receptor-2 antibody on vascular function and oxygenation in spontaneous and transplanted tumors
Bruce M Fenton1, Scott F Paoni, Ivan Ding
1Department of Radiation Oncology, University of Rochester Medical Center, Rochester, NY 14642, USA.
Background And Purpose:
The primary objectives of this study were to address two major questions. (1) Does VEGF receptor-2 antibody (DC101) produce detrimental effects on tumor vascular function and oxygenation that could compromise adjuvant therapies? (2) Is pathophysiological response to such antiangiogenic strategies different in transplanted versus primary spontaneous tumors?
Materials And Methods:
The effects of early and late initiation DC101 treatment were evaluated using spontaneous murine mammary carcinomas and two markedly different transplanted mammary tumors, MCa-35 and MCa-4. Mice were administered DC101 or saline, tumors were frozen, and immunohistochemical staining was quantified using image analysis of multiply-stained frozen sections. Total blood vessels were identified using antibodies to CD31 or panendothelial antigen, perfused vessels via i.v. injection of fluorescent DiOC7, and tumor hypoxia by hypoxia marker (EF5) uptake.
Results:
Tumor growth was significantly inhibited following DC101 administration in all tumor models. In general, early initiation DC101 treatment reduced perfused vessel counts and increased tumor hypoxia, while late initiation treatment had no significant impact on either. Results indicate that DC101 slows tumor growth through a decrease in vascular function, leading to increased tumor cell apoptosis and necrosis at sites distant from perfused blood vessels, and suggest that DC101 accelerates the rate at which tumor cells outgrow their functional vascular supply.
Conclusions:
Although highly variable among individual spontaneous tumors, the overall effects of DC101 on tumor hypoxia were quite similar between spontaneous and transplanted tumors. Since reductions in tumor oxygenation due to antiangiogenic treatment were transient, initial pathophysiological deficiencies that could compromise conventional therapies over the short-term may be of less relevance when administered over more extended treatment schedules.
Insights
Vascular endothelial growth factor receptor-2 antibody (DC101) inhibits tumor growth by reducing vascular function and increasing hypoxia. These antiangiogenic effects were similar in spontaneous and transplanted tumors, with transient impacts on oxygenation.
Area of Science:
- Oncology
- Cancer Research
- Immunotherapy
Background:
- Antiangiogenic therapies target tumor vascularization.
- VEGF receptor-2 antibody (DC101) is a potential antiangiogenic agent.
- Understanding its effects on tumor physiology is crucial for optimizing cancer treatment.
Purpose of the Study:
- To determine if DC101 impairs tumor vascular function and oxygenation.
- To assess if antiangiogenic responses differ between spontaneous and transplanted tumors.
- To evaluate the impact of early versus late DC101 initiation.
Main Methods:
- DC101 or saline administered to mice with spontaneous or transplanted mammary tumors.
- Immunohistochemical analysis of tumor sections for blood vessels and hypoxia.
- Quantification of total and perfused vessels, and hypoxia marker uptake.
Main Results:
- DC101 significantly inhibited tumor growth across all models.
- Early DC101 treatment reduced perfused vessels and increased tumor hypoxia.
- Late DC101 treatment had minimal impact on vascular function or oxygenation.
- DC101 promotes tumor growth inhibition via decreased vascular function and increased apoptosis.
Conclusions:
- DC101's effects on tumor hypoxia were comparable in spontaneous and transplanted tumors.
- Reductions in tumor oxygenation were transient, suggesting short-term relevance for adjuvant therapies.
- Extended DC101 treatment schedules may mitigate short-term pathophysiological compromises.
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