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Updated: Oct 7, 2025

Comparing Metastatic Clear Cell Renal Cell Carcinoma Model Established in Mouse Kidney and on Chicken Chorioallantoic Membrane
Published on: February 8, 2020
Genomics of Clear-cell Renal Cell Carcinoma: A Systematic Review and Meta-analysis
Thi Oanh Bui1, Van Tu Dao1, Van Tai Nguyen2
1National Cancer Hospital, Cancer Research and Clinical Trials Center, Ha Noi, Vietnam; Université de Paris, INSERM, UMR_S942 MASCOT, F-75006, Paris, France.
Context:
Although antiangiogenic treatments and immunotherapies have significantly improved the prognosis of metastatic renal cell carcinoma (RCC), many patients will develop resistance, leading to treatment failure. Genetic tumor heterogeneity is a major cause of this resistance.
Objective:
To perform a meta-analysis of genomic data for clear-cell RCC obtained from primary tumors and metastases to assess the prevalence of gene mutations and copy number alterations (CNAs).
Evidence Acquisition:
Articles were selected from Medline and Embase libraries using the search algorithm ("Kidney Neoplasms"[Mesh] OR "Renal Cell Carcinoma") AND ("Genomics"[Mesh] OR "Mutation") from January 1999 to February 2021. A critical review was conducted according to the Preferred Reporting Items for Systematic Review and Meta-Analysis (PRISMA) statement. Ninety-three publications were selected for inclusion in this meta-analysis.
Evidence Synthesis:
Our meta-analysis included a total 14 696 patients, 14 299 primary tumor samples, and 969 metastatic samples. We evaluated the overall and subgroup prevalence of gene mutations and CNAs, including comparisons between primary tumors and metastases. In particular, for metastases we observed that the mutation prevalence was significantly more marked for ten genes compared to primary tumors, with no or little heterogeneity across studies. The VHL mutation prevalence increased significantly from 64% in primary tumors to 75% in metastases (p < 0.001). There was a significant increase in CNA prevalence from primary tumors to metastases for chromosomes 1p36.11, 9p21.3, and 18 in terms of losses, and for chromosomes 1q21.3, 7q36.3, 8q, and 20q11.21 in terms of gains. CDKN2A, also called p16 and involved in cell-cycle progression, is located at the 9p21.3 locus and was lost in 76% of metastatic samples. ASXL1, located on 20p11.21 and amplified in 50% of metastatic RCCs compared to 21% of primary tumors (p < 0.001), is closely linked to BAP1 function.
Conclusions:
Our results underline the added value of preferential biopsies on RCC metastases to fully explore the biology of metastatic disease for therapeutic purposes.
Patient Summary:
We reviewed the literature on genetic mutations in primary tumors and metastatic lesions in kidney cancer. Our pooled results for all the relevant studies show a higher level of mutations in metastases than in primary tumors. This highlights the importance of taking biopsies of metastases to analyze genetic mutations and potentially guide selection of the most suitable treatment strategy.
Insights
Genomic analysis reveals increased gene mutations and copy number alterations in metastatic renal cell carcinoma (RCC) compared to primary tumors. Biopsying metastases is crucial for understanding disease biology and guiding treatment strategies.
Area of Science:
- Oncology
- Genetics
- Genomics
Background:
- Metastatic renal cell carcinoma (RCC) poses significant treatment challenges due to resistance to antiangiogenic and immunotherapies.
- Genetic tumor heterogeneity is a primary driver of this treatment resistance.
Purpose of the Study:
- To conduct a meta-analysis of genomic data from primary and metastatic clear-cell RCC.
- To determine the prevalence of gene mutations and copy number alterations (CNAs) in these tumors.
Main Methods:
- A systematic literature search was performed on Medline and Embase databases (1999-2021).
- Ninety-three publications were included in the meta-analysis, adhering to PRISMA guidelines.
- Genomic data from 14,696 patients (14,299 primary tumors, 969 metastases) were analyzed.
Main Results:
- Metastatic RCC exhibited significantly higher mutation prevalence in ten genes compared to primary tumors.
- VHL mutation prevalence increased from 64% in primary tumors to 75% in metastases.
- Significant increases in CNA prevalence were observed in metastases for specific chromosomal regions, including gains on 1q21.3, 7q36.3, 8q, and 20q11.21, and losses on 1p36.11, 9p21.3, and 18.
Conclusions:
- Preferential biopsy of RCC metastases is highly valuable for comprehensive biological understanding.
- Genomic profiling of metastases can inform therapeutic strategies for patients with advanced RCC.
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