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A Syngeneic Mouse Model of Metastatic Renal Cell Carcinoma for Quantitative and Longitudinal Assessment of Preclinical Therapies
Published on: April 12, 2017
C-Met as a Key Factor Responsible for Sustaining Undifferentiated Phenotype and Therapy Resistance in Renal
Paulina Marona1, Judyta Górka2, Jerzy Kotlinowski3
1Department of General Biochemistry, Faculty of Biochemistry, Biopphisics and Biotechnology, Jagiellonian University, Gronostajowa Street 7, 30-387 Krakow, Poland. paulina.marona@doctoral.uj.edu.pl.
Abstract:
C-Met tyrosine kinase receptor plays an important role under normal and pathological conditions. In tumor cells' overexpression or incorrect activation of c-Met, this leads to stimulation of proliferation, survival and increase of motile activity. This receptor is also described as a marker of cancer initiating cells. The latest research shows that the c-Met receptor has an influence on the development of resistance to targeted cancer treatment. High c-Met expression and activation in renal cell carcinomas is associated with the progression of the disease and poor survival of patients. C-Met receptor has become a therapeutic target in kidney cancer. However, the therapies used so far using c-Met tyrosine kinase inhibitors demonstrate resistance to treatment. On the other hand, the c-Met pathway may act as an alternative target pathway in tumors that are resistant to other therapies. Combination treatment together with c-Met inhibitor reduces tumor growth, vascularization and pro-metastatic behavior and results in suppressed mesenchymal phenotype and vascular endothelial growth factor (VEGF) secretion. Recently, it has been shown that the acquirement of mesenchymal phenotype or lack of cell differentiation might be related to the presence of the c-Met receptor and is consequently responsible for therapy resistance. This review presents the results from recent studies identifying c-Met as an important factor in renal carcinomas being responsible for tumor growth, progression and metastasis, indicating the role of c-Met in resistance to antitumor therapy and demonstrating the pivotal role of c-Met in supporting mesenchymal cell phenotype.
Insights
The C-Met receptor drives kidney cancer growth and metastasis. Targeting C-Met shows promise for overcoming treatment resistance and suppressing tumor progression, especially in resistant cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- C-Met receptor tyrosine kinase is crucial in normal and pathological processes.
- Overexpression or aberrant activation of C-Met in tumors promotes proliferation, survival, and motility.
- C-Met is implicated in cancer stem cell markers and acquired resistance to targeted therapies.
Purpose of the Study:
- To review recent findings on C-Met's role in renal cell carcinomas (RCC).
- To highlight C-Met's involvement in tumor progression, metastasis, and therapy resistance in RCC.
- To explore C-Met as a therapeutic target and its role in mesenchymal phenotypes.
Main Methods:
- Literature review of recent studies on C-Met in renal carcinomas.
- Analysis of C-Met's impact on tumor growth, metastasis, and patient survival.
- Examination of C-Met's role in therapeutic resistance and mesenchymal transition.
Main Results:
- High C-Met expression in RCC correlates with disease progression and poor patient survival.
- C-Met inhibitors show potential but face treatment resistance.
- Combination therapies involving C-Met inhibitors reduce tumor growth, vascularization, and metastasis.
- C-Met signaling supports mesenchymal phenotypes, contributing to therapy resistance.
Conclusions:
- C-Met is a key driver of tumor growth, progression, and metastasis in renal carcinomas.
- C-Met plays a significant role in the development of resistance to anti-cancer therapies.
- Targeting the C-Met pathway, potentially in combination therapies, offers a strategy to overcome resistance and suppress tumor progression.
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