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Updated: May 15, 2026

Comparing Metastatic Clear Cell Renal Cell Carcinoma Model Established in Mouse Kidney and on Chicken Chorioallantoic Membrane
Published on: February 8, 2020
Vascularity of primary and metastatic renal cell carcinoma specimens
Saadia A Aziz1, Joshua Sznol, Adebowale Adeniran
1Department of the School of Medicine, Yale University School of Medicine, New Haven, CT, USA.
Purpose:
Anti-angiogenic therapies are among the most commonly used drugs in renal cell carcinoma. Tumor vascularity, defined by microvessel area, may be associated with response to these drugs. Clinical studies suggest that metastatic sites are more responsive than primary tumors. Our purpose was to characterize microvessel area (MVA) in matched primary and metastatic samples and in samples of different histologies.
Methods:
We employed a method of automated, quantitative analysis of in situ tumor components to identify the area of CD-34 staining endothelial cells within renal cell carcinoma tumors. MVA was assessed in corresponding primary and metastatic samples from 34 patients, as well as in 334 primary nephrectomy specimens with variable histologies.
Results:
MVA measurements from different parts of the same tumor correlated well (R = 0.75), indicating that MVA was fairly uniform within a tumor. While MVA was slightly higher in primary tumors than corresponding metastatic sites, the difference was not statistically significant (P = 0.1). MVA in paired primary and metastatic samples correlated moderately well (R = 0.36). MVA was higher in clear cell than papillary histology and oncocytomas (P < 0.0001 and P = 0.018, respectively).
Conclusions:
Lack of significant differences MVA in matched primary and metastatic samples suggests that both types of tumors should respond to anti-angiogenic drugs. This should be confirmed on additional cohorts. Given the small cohort, future predictive biomarker studies entailing MVA measurements should include specimens from both sites. Clear cell carcinomas are more vascular than other histologic subtypes, which may explain the higher response rates to anti-angiogenic therapies in clear cell tumors.
Insights
Microvessel area (MVA) in renal cell carcinoma did not significantly differ between primary and metastatic tumors, suggesting similar response to anti-angiogenic drugs. Clear cell subtypes showed higher MVA than others.
Area of Science:
- Oncology
- Translational Research
- Cancer Biology
Background:
- Anti-angiogenic therapies are a cornerstone treatment for renal cell carcinoma (RCC).
- Tumor vascularity, quantified by microvessel area (MVA), is a potential biomarker for anti-angiogenic drug response.
- Previous studies suggest metastatic RCC may be more sensitive to these therapies than primary tumors.
Purpose of the Study:
- To quantitatively assess and compare microvessel area (MVA) in matched primary and metastatic renal cell carcinoma (RCC) samples.
- To investigate MVA variations across different RCC histologies.
Main Methods:
- Automated quantitative analysis of CD-34 stained endothelial cells to determine MVA.
- MVA was assessed in paired primary and metastatic RCC samples from 34 patients.
- MVA was also analyzed in 334 primary RCC specimens representing various histologies.
Main Results:
- Microvessel area (MVA) demonstrated good uniformity within individual tumors (R=0.75).
- No statistically significant difference in MVA was observed between primary and matched metastatic RCC samples (P=0.1).
- Clear cell RCC exhibited significantly higher MVA compared to papillary RCC and oncocytomas (P<0.0001 and P=0.018, respectively).
Conclusions:
- The similar MVA in primary and metastatic RCC suggests comparable responsiveness to anti-angiogenic agents, warranting further validation.
- Clear cell RCC's higher vascularity may underlie its enhanced response to anti-angiogenic therapies.
- Future predictive biomarker studies should incorporate samples from both primary and metastatic sites.
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