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Modeling Spontaneous Metastatic Renal Cell Carcinoma mRCC in Mice Following Nephrectomy
Published on: April 29, 2014
MET Inhibition in Clear Cell Renal Cell Carcinoma
Zuoquan Xie1, Young H Lee2, Marta Boeke3
11. Department of Urology, Yale School of Medicine; 5. Division of Antitumor Pharmacology, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China.
Background:
Clear cell renal cell carcinoma (ccRCC) is the most lethal form of kidney cancer. Small molecule VEGFR inhibitors are widely used but are not curative and various resistance mechanisms such as activation of the MET pathway have been described. Dual MET/VEGFR2 inhibitors have recently shown clinical benefit but limited preclinical data evaluates their effects in ccRCC.
Methods:
An interrogation of the Cancer Genome Atlas (TCGA) dataset was performed to evaluate oncogenic alterations in the MET/VEGFR2 pathway. We evaluated the in vitro effects of Cabozantinib, a dual MET/VEGFR2 inhibitor, using a panel of ccRCC cell lines. Drug effects of cell viability and proliferation, migration, cell scatter, anchorage independent growth, and downstream MET/VEGFR2 signaling pathways were assessed.
Results:
Twelve percent of TCGA cases had possible MET/HGF oncogenic alterations with co-occurrence noted (p<0.001). MET/HGF altered cases had worse overall survival (p=0.044). Cabozantinib was a potent inhibitor of MET and VEGFR2 in vitro in our cell line panel. PI3K, MAPK and mTOR pathways were also suppressed by cabozantinib, however the effects on cell viability in vitro were modest. At nanomolar concentrations of cabozantinib, HGF-stimulated migration, invasion, cellular scattering and soft agar colony formation were inhibited.
Conclusions:
We provide further preclinical rationale for dual MET/VEGFR2 inhibition in ccRCC. While the MET pathway is implicated in VEGFR resistance, dual inhibitors may have direct anti-tumor effects in a patient subset with evidence of MET pathway involvement. Cabozantinib is a potent dual MET/VEGFR2 inhibitor, significantly inhibits cell migration and invasion in vitro and likely has anti-angiogenic effects similar to other VEGFR tyrosine kinase inhibitors. Future work involving in vivo models will be useful to better define mechanisms of potential anti-tumor activity.
Insights
Clear cell renal cell carcinoma (ccRCC) is lethal. Dual MET/VEGFR2 inhibitors like Cabozantinib show promise by inhibiting cancer cell migration and invasion, offering a new therapeutic strategy for ccRCC patients.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Clear cell renal cell carcinoma (ccRCC) is the most lethal kidney cancer.
- VEGFR inhibitors are limited by resistance mechanisms, including MET pathway activation.
- Dual MET/VEGFR2 inhibitors offer potential but require preclinical evaluation in ccRCC.
Purpose of the Study:
- To investigate oncogenic alterations in the MET/VEGFR2 pathway in ccRCC using TCGA data.
- To evaluate the in vitro efficacy of Cabozantinib, a dual MET/VEGFR2 inhibitor, in ccRCC cell lines.
- To assess Cabozantinib's effects on ccRCC cell viability, proliferation, migration, and signaling pathways.
Main Methods:
- Analysis of Cancer Genome Atlas (TCGA) dataset for MET/VEGFR2 pathway alterations.
- In vitro assessment of Cabozantinib in a panel of ccRCC cell lines.
- Evaluation of cell viability, proliferation, migration, invasion, and downstream signaling.
Main Results:
- Twelve percent of ccRCC cases showed MET/HGF alterations, correlating with worse survival.
- Cabozantinib potently inhibited MET and VEGFR2 in vitro, suppressing PI3K, MAPK, and mTOR pathways.
- Cabozantinib inhibited HGF-stimulated migration, invasion, scattering, and anchorage-independent growth at nanomolar concentrations.
Conclusions:
- Preclinical data support dual MET/VEGFR2 inhibition for ccRCC, particularly in patients with MET pathway involvement.
- Cabozantinib demonstrates potent inhibition of MET/VEGFR2, migration, and invasion in vitro.
- Further in vivo studies are warranted to define Cabozantinib's anti-tumor activity mechanisms in ccRCC.
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