Preclinical Therapeutic Synergy of MEK1/2 and CDK4/6 Inhibition in Neuroblastoma
Lori S Hart1, JulieAnn Rader1, Pichai Raman1
1Division of Oncology and Center for Childhood Cancer Research, Children's Hospital of Philadelphia, Philadelphia, Pennsylvania.
Abstract:
Purpose: Neuroblastoma is treated with aggressive multimodal therapy, yet more than 50% of patients experience relapse. We recently showed that relapsed neuroblastomas frequently harbor mutations leading to hyperactivated ERK signaling and sensitivity to MEK inhibition therapy. Here we sought to define a synergistic therapeutic partner to potentiate MEK inhibition.Experimental Design: We first surveyed 22 genetically annotated human neuroblastoma-derived cell lines (from 20 unique patients) for sensitivity to the MEK inhibitor binimetinib. After noting an inverse correlation with sensitivity to ribociclib (CDK4/6 inhibitor), we studied the combinatorial effect of these two agents using proliferation assays, cell-cycle analysis, Ki67 immunostaining, time-lapse microscopy, and xenograft studies.Results: Sensitivity to binimetinib and ribociclib was inversely related (r = -0.58, P = 0.009). MYCN amplification status and expression were associated with ribociclib sensitivity and binimetinib resistance, whereas increased MAPK signaling was the main determinant of binimetinib sensitivity and ribociclib resistance. Treatment with both compounds resulted in synergistic or additive cellular growth inhibition in all lines tested and significant inhibition of tumor growth in three of four xenograft models of neuroblastoma. The augmented growth inhibition was attributed to diminished cell-cycle progression that was reversible upon removal of drugs.Conclusions: Here we demonstrate that combined binimetinib and ribociclib treatment shows therapeutic synergy across a broad panel of high-risk neuroblastoma preclinical models. These data support testing this combination therapy in relapsed high-risk neuroblastoma patients, with focus on cases with hyperactivated RAS-MAPK signaling. Clin Cancer Res; 23(7); 1785-96. ©2016 AACR.
Insights
Combining MEK inhibitor binimetinib with CDK4/6 inhibitor ribociclib shows synergistic effects in preclinical neuroblastoma models. This combination therapy holds promise for treating relapsed high-risk neuroblastoma patients with hyperactivated RAS-MAPK signaling.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Neuroblastoma, a common childhood cancer, often relapses despite aggressive treatment.
- Relapsed neuroblastomas frequently exhibit hyperactivated ERK signaling, making them sensitive to MEK inhibitors.
- Identifying synergistic partners for MEK inhibitors is crucial for improving treatment outcomes.
Purpose of the Study:
- To identify a synergistic therapeutic partner to enhance MEK inhibition in neuroblastoma.
- To investigate the combined effects of binimetinib (MEK inhibitor) and ribociclib (CDK4/6 inhibitor).
Main Methods:
- Screened 22 neuroblastoma cell lines for sensitivity to binimetinib.
- Assessed the combinatorial effects of binimetinib and ribociclib using proliferation assays, cell-cycle analysis, and xenograft studies.
- Correlated drug sensitivity with genetic factors like MYCN amplification and MAPK signaling.
Main Results:
- Sensitivity to binimetinib and ribociclib showed an inverse correlation.
- MYCN amplification was linked to ribociclib sensitivity and binimetinib resistance.
- Combined treatment demonstrated synergistic or additive growth inhibition in cell lines and significant tumor growth inhibition in xenografts.
- Treatment led to diminished cell-cycle progression.
Conclusions:
- Combined binimetinib and ribociclib exhibit therapeutic synergy in high-risk neuroblastoma preclinical models.
- This combination warrants clinical testing in relapsed high-risk neuroblastoma, particularly in patients with hyperactivated RAS-MAPK signaling.
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