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VEGFR2 heterogeneity and response to anti-angiogenic low dose metronomic cyclophosphamide treatment
Steven G Patten1, Una Adamcic, Kristen Lacombe
1Department of Biomedical Sciences, Ontario Veterinary College, University of Guelph, Guelph, ON Canada N1G 2W1.
Background:
Targeting tumor vasculature is a strategy with great promise in the treatment of many cancers. However, anti-angiogenic reagents that target VEGF/VEGFR2 signaling have met with variable results clinically. Among the possible reasons for this may be heterogeneous expression of the target protein.
Methods:
Double immunofluorescent staining was performed on formalin-fixed paraffin embedded sections of treated and control SW480 (colorectal) and WM239 (melanoma) xenografts, and tissue microarrays of human colorectal carcinoma and melanoma. Xenografts were developed using RAG1-/- mice by injection with WM239 or SW480 cells and mice were treated with 20 mg/kg/day of cyclophosphamide in their drinking water for up to 18 days. Treated and control tissues were characterized by double immunofluorescence using the mural cell marker α-SMA and CD31, while the ratio of desmin/CD31 was also determined by western blot. Hypoxia in treated and control tissues were quantified using both western blotting for HIF-1α and immunohistochemistry of CA-IX.
Results:
VEGFR2 is heterogeneously expressed in tumor vasculature in both malignant melanoma and colorectal carcinoma. We observed a significant decrease in microvascular density (MVD) in response to low dose metronomic cyclophosphamide chemotherapy in both malignant melanoma (with higher proportion VEGFR2 positive blood vessels; 93%) and colorectal carcinoma (with lower proportion VEGFR2 positive blood vessels; 60%) xenografts. This reduction in MVD occurred in the absence of a significant anti-tumor effect. We also observed less hypoxia in treated melanoma xenografts, despite successful anti-angiogenic blockade, but no change in hypoxia of colorectal xenografts, suggesting that decreases in tumor hypoxia reflect a complex relationship with vascular density. Based on α-SMA staining and the ratio of desmin to CD31 expression as markers of tumor blood vessel functionality, we found evidence for increased stabilization of colorectal microvessels, but no such change in melanoma vessels.
Conclusions:
Overall, our study suggests that while heterogeneous expression of VEGFR2 is a feature of human tumors, it may not affect response to low dose metronomic cyclophosphamide treatment and possibly other anti-angiogenic approaches. It remains to be seen whether this heterogeneity is partly responsible for the variable clinical success seen to date with targeted anti-VEGFR2 therapy.
Insights
Heterogeneous expression of VEGFR2 in tumors did not impact response to low-dose metronomic cyclophosphamide chemotherapy. This suggests anti-VEGFR2 therapies may still be viable despite variable target protein expression in cancer.
Area of Science:
- Oncology
- Cancer Research
- Vascular Biology
Background:
- Targeting tumor vasculature via anti-angiogenic agents shows promise for cancer treatment.
- Vascular Endothelial Growth Factor Receptor 2 (VEGFR2) signaling is a key target, but clinical results are variable.
- Heterogeneous expression of VEGFR2 in tumor vasculature may explain inconsistent treatment outcomes.
Purpose of the Study:
- To investigate the impact of heterogeneous VEGFR2 expression on the efficacy of low-dose metronomic cyclophosphamide chemotherapy.
- To assess the effect of this chemotherapy on tumor microvascular density, hypoxia, and vessel stabilization in colorectal carcinoma and melanoma models.
Main Methods:
- Utilized SW480 (colorectal) and WM239 (melanoma) xenografts and human tissue microarrays.
- Administered low-dose metronomic cyclophosphamide to xenografts.
- Performed double immunofluorescence for CD31 and α-SMA, and Western blot for desmin/CD31 ratio to assess vascularization and stabilization.
- Quantified hypoxia using Western blot for HIF-1α and immunohistochemistry for CA-IX.
Main Results:
- Observed significant reduction in microvascular density (MVD) in both xenograft models following chemotherapy, irrespective of VEGFR2 expression levels.
- Chemotherapy led to decreased tumor hypoxia in melanoma but not colorectal carcinoma xenografts.
- Colorectal microvessels showed increased stabilization, while melanoma vessels did not, suggesting complex responses to treatment.
Conclusions:
- Heterogeneous VEGFR2 expression did not preclude response to low-dose metronomic cyclophosphamide, indicating potential therapeutic utility.
- The variable clinical success of anti-VEGFR2 therapies may not solely be attributed to VEGFR2 heterogeneity.
- Further research is needed to fully understand the complex interplay between tumor vascularization, hypoxia, and anti-angiogenic treatment response.
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