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Published on: January 7, 2019
Identification of candidate molecular markers predicting sensitivity in solid tumors to dasatinib: rationale for
Fei Huang1, Karen Reeves, Xia Han
1Departments of Clinical Discovery and Oncology Discovery, Bristol-Myers Squibb Co., Princeton, NJ 08543, USA. fei.huang@bms.com
Abstract:
Dasatinib is a multitargeted kinase inhibitor that was recently approved for the treatment of chronic myelogenous leukemia and Philadelphia chromosome-positive acute lymphoblastic leukemia with resistance or intolerance to prior therapy. It is also in clinical trials for treating patients with solid tumors. The identification of molecular markers predictive of response to dasatinib could assist in clinical development by selecting patients most likely to derive clinical benefit. Using baseline gene expression profiling of a panel of 23 breast cancer cell lines, we identified genomic signatures highly correlated with in vitro sensitivity to dasatinib. The ability of these signatures to predict dasatinib sensitivity was further confirmed and validated in independent test cell lines. A six-gene model was used to correctly predict dasatinib sensitivity in 11 out of 12 (92%) additional breast and 19 out of 23 (83%) lung cancer cell lines. Quantitative real-time PCR and immunohistochemical assays further confirmed the differential expression pattern of selected markers. Finally, these gene signatures were observed in a subset of primary breast, lung, and ovarian tumors suggesting potential utility in patient selection. The subset of breast cancer patients expressing the dasatinib-sensitive signature includes a distinct clinical and molecular subgroup: the so-called "triple negative" (i.e., estrogen receptor-negative, progesterone receptor-negative, and HER2-negative) or "basal" breast cancer subtype. This patient population has a poor prognosis and currently has few effective treatment options. Our results implicate that dasatinib may represent a valuable treatment option in this difficult-to-treat population. To test this hypothesis, clinical studies are now under way to determine the activity of dasatinib in these patients.
Insights
Researchers identified gene signatures predicting dasatinib sensitivity in cancer cell lines. These signatures may help select triple-negative breast cancer patients for dasatinib treatment, offering hope for this poor-prognosis group.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Dasatinib is a kinase inhibitor approved for certain leukemias and investigated for solid tumors.
- Identifying predictive markers for dasatinib response is crucial for optimizing clinical development.
- Triple-negative breast cancer (TNBC) lacks targeted therapies and has a poor prognosis.
Purpose of the Study:
- To identify genomic signatures predictive of dasatinib sensitivity in cancer cell lines.
- To validate these signatures in independent cell lines and primary tumors.
- To explore the potential of dasatinib as a treatment for TNBC.
Main Methods:
- Gene expression profiling of 23 breast cancer cell lines.
- Validation in independent breast and lung cancer cell lines.
- Quantitative real-time PCR and immunohistochemistry for marker confirmation.
- Analysis of gene signatures in primary breast, lung, and ovarian tumors.
Main Results:
- Genomic signatures correlated with in vitro dasatinib sensitivity were identified.
- A six-gene model accurately predicted dasatinib sensitivity in 92% of breast and 83% of lung cancer cell lines.
- The identified signatures were present in a subset of primary tumors, including TNBC.
- TNBC patients expressing the sensitive signature represent a distinct, poor-prognosis subgroup.
Conclusions:
- Dasatinib sensitivity can be predicted by specific gene expression signatures.
- These signatures show potential for selecting patients, particularly those with triple-negative breast cancer.
- Dasatinib may offer a valuable therapeutic option for TNBC patients.
- Clinical studies are ongoing to confirm dasatinib's efficacy in this population.
