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Updated: Jun 3, 2026

Modeling Spontaneous Metastatic Renal Cell Carcinoma (mRCC) in Mice Following Nephrectomy
Published on: April 29, 2014
Inhibition of angiogenic and non-angiogenic targets by sorafenib in renal cell carcinoma (RCC) in a RCC xenograft
J S P Yuen1, M Y Sim, H G Siml
1Department of Urology, Singapore General Hospital, Singapore.
Background:
It is widely recognised that sorafenib inhibits a range of molecular targets in renal cell carcinoma (RCC). In this study, we aim to use patient-derived RCC xenografts to delineate the angiogenic and non-angiogenic molecular targets of sorafenib therapy for advanced RCC (aRCC).
Methods:
We successfully generated three patient RCC-derived xenografts in severe combined immunodeficient mice, consisting of three different RCC histological subtypes: conventional clear cell, poorly differentiated clear cell RCC with sarcomatoid changes, and papillary RCC. This study also used clear cell RCC cells (786-0/EV) harbouring mutant VHL to investigate the clonogenic survival of cells transfected with survivin sense and antisense oligonucleotides.
Results:
All three xenografts retain their original histological characteristics. We reported that sorafenib inhibited all three RCC xenograft lines regardless of histological subtypes in a dose-dependant manner. Sorafenib-induced growth suppression was associated with not only inhibition of angiogenic targets p-PDGFR-β, p-VEGFR-2, and their downstream signalling pathways p-Akt and p-ERK, cell cycle, and anti-apoptotic proteins that include cyclin D1, cyclin B1, and survivin but also upregulation of proapoptotic Bim. Survivin knockdown by survivin-specific antisense-oligonucleotides inhibited colony formation and induced cell death in clear cell RCC cells.
Conclusion:
This study has shed light on the molecular mechanisms of sorafenib in RCC. Inhibition of non-angiogenic molecules by sorafenib could contribute in part to its anti-tumour activities observed in vivo, in addition to its anti-angiogenic effects.
Insights
Sorafenib effectively inhibits renal cell carcinoma (RCC) growth by targeting both angiogenic and non-angiogenic pathways. This study reveals its impact on cell survival and apoptosis, offering insights into advanced RCC (aRCC) treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Sorafenib is known to target multiple molecular pathways in renal cell carcinoma (RCC).
- Understanding the specific angiogenic and non-angiogenic targets is crucial for advanced RCC (aRCC) therapy.
Purpose of the Study:
- To delineate the angiogenic and non-angiogenic molecular targets of sorafenib in patient-derived RCC xenografts.
- To investigate the role of survivin in RCC cell survival and response to therapy.
Main Methods:
- Generation of three patient-derived RCC xenografts representing diverse histological subtypes.
- In vitro studies using clear cell RCC cells with mutant VHL to assess survivin knockdown effects.
Main Results:
- Sorafenib demonstrated dose-dependent inhibition across all RCC xenograft subtypes.
- Therapy suppressed angiogenic targets (p-PDGFR-β, p-VEGFR-2) and downstream pathways (p-Akt, p-ERK), cell cycle proteins (cyclin D1, cyclin B1), and survivin, while upregulating Bim.
- Survivin knockdown inhibited colony formation and induced cell death in clear cell RCC cells.
Conclusions:
- Sorafenib exhibits anti-tumor activity in RCC through inhibition of both angiogenic and non-angiogenic molecular targets.
- Targeting non-angiogenic molecules like survivin may contribute significantly to sorafenib's efficacy in advanced RCC.
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