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Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
An In Vitro Analysis of TKI-Based Sequence Therapy in Renal Cell Carcinoma Cell Lines
Angela Zaccagnino1, Bozhena Vynnytska-Myronovska1, Michael Stöckle1
1Department of Urology and Pediatric Urology, Saarland University, 66421 Homburg, Germany.
Abstract:
The tyrosine kinase inhibitor (TKI) cabozantinib might impede the growth of the sunitinib-resistant cell lines by targeting MET and AXL overexpression in metastatic renal cell carcinoma (mRCC). We studied the role of MET and AXL in the response to cabozantinib, particularly following long-term administration with sunitinib. Two sunitinib-resistant cell lines, 786-O/S and Caki-2/S, and the matching 786-O/WT and Caki-2/WT cells were exposed to cabozantinib. The drug response was cell-line-specific. The 786-O/S cells were less growth-inhibited by cabozantinib than 786-O/WT cells (p-value = 0.02). In 786-O/S cells, the high level of phosphorylation of MET and AXL was not affected by cabozantinib. Despite cabozantinib hampering the high constitutive phosphorylation of MET, the Caki-2 cells showed low sensitivity to cabozantinib, and this was independent of sunitinib pretreatment. In both sunitinib-resistant cell lines, cabozantinib increased Src-FAK activation and impeded mTOR expression. The modulation of ERK and AKT was cell-line-specific, mirroring the heterogeneity among the patients. Overall, the MET- and AXL-driven status did not affect cell responsiveness to cabozantinib in the second-line treatment. The activation of Src-FAK might counteract cabozantinib activity and contribute to tumor survival and may be considered an early indicator of therapy response.
Insights
Cabozantinib
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Metastatic renal cell carcinoma (mRCC) often develops resistance to sunitinib.
- Overexpression of MET and AXL tyrosine kinases is implicated in RCC progression and drug resistance.
Purpose of the Study:
- To investigate the efficacy of cabozantinib in sunitinib-resistant mRCC cell lines.
- To determine the role of MET and AXL in mediating response to cabozantinib after sunitinib treatment.
Main Methods:
- Exposure of sunitinib-resistant (786-O/S, Caki-2/S) and wild-type (786-O/WT, Caki-2/WT) cell lines to cabozantinib.
- Assessment of cell growth inhibition, tyrosine kinase phosphorylation (MET, AXL), and downstream signaling pathways (Src-FAK, mTOR, ERK, AKT).
Main Results:
- Cabozantinib's drug response was cell-line-specific, with 786-O/S cells showing less inhibition than 786-O/WT cells.
- MET and AXL phosphorylation levels were not consistently affected by cabozantinib in resistant cells.
- Cabozantinib increased Src-FAK activation and impeded mTOR expression in resistant cell lines, potentially counteracting its effects.
Conclusions:
- MET and AXL status did not predict cabozantinib response in this second-line setting.
- Src-FAK activation may contribute to cabozantinib resistance and tumor survival in mRCC.
- Src-FAK activation could serve as an early indicator of therapeutic response.

