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Published on: February 6, 2015
MEK inhibitors as a novel therapy for neuroblastoma: Their in vitro effects and predicting their efficacy
Tomoko Tanaka1, Mayumi Higashi1, Koseki Kimura1
1Department of Pediatric Surgery, Kyoto Prefectural University of Medicine, Kyoto, Japan.
Background:
A recent study reported that relapsed neuroblastomas had frequent RAS-ERK pathway mutations. We herein investigated the effects and pathways of MEK inhibitors, which inhibit the RAS-ERK pathway, as a new molecular-targeted therapy for refractory neuroblastomas.
Method:
Five neuroblastoma cell lines were treated with trametinib (MEK inhibitor) or CH5126766 (RAF/MEK inhibitor). Growth inhibition was analyzed using a cell viability assay. ERK phosphorylation and the MYCN expression were analyzed by immunoblotting or immunohistochemistry. RAS/RAF mutations were identified by direct sequencing or through the COSMIC database.
Results:
Both MEK inhibitors showed growth inhibition effects on cells with ERK phosphorylation, but almost no effect on cells without. In immunoblotting analyses, ERK phosphorylation and MYCN expression were suppressed in ERK active cells by these drugs. Furthermore, phosphorylated-ERK immunohistochemistry corresponded to the drug responses. Regarding the relationship between RAS/Raf mutations and ERK phosphorylation, ERK was phosphorylated in one cell line (NLF) without RAS/Raf mutations.
Conclusion:
MEK inhibitors are a promising molecular-targeted therapeutic option for ERK active neuroblastomas. The efficacy of MEK inhibitors corresponds to ERK phosphorylation, while RAS/RAF mutations are not always detected in drug-sensitive cells. Phosphorylated-ERK immunohistochemistry is thus a useful method to analyze ERK activity and predict the therapeutic effects of MEK inhibitors.
Insights
MEK inhibitors show promise for treating neuroblastomas with RAS-ERK pathway activation. Their effectiveness correlates with ERK phosphorylation, not always RAS/RAF mutations, making phosphorylated-ERK a key indicator for therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Relapsed neuroblastomas frequently exhibit RAS-ERK pathway mutations.
- The RAS-ERK pathway is a potential target for novel molecular therapies in refractory neuroblastomas.
Purpose of the Study:
- To investigate the efficacy of MEK inhibitors in treating neuroblastomas.
- To explore the role of the RAS-ERK pathway and MYCN expression in response to MEK inhibitors.
Main Methods:
- Treatment of five neuroblastoma cell lines with MEK inhibitors (trametinib, CH5126766).
- Analysis of cell viability, ERK phosphorylation, and MYCN expression.
- Identification of RAS/RAF mutations and correlation with phosphorylated-ERK levels.
Main Results:
- MEK inhibitors effectively inhibited growth in neuroblastoma cells with ERK phosphorylation.
- ERK phosphorylation and MYCN expression were suppressed by MEK inhibitors in ERK-active cells.
- Phosphorylated-ERK immunohistochemistry correlated with drug response, independent of RAS/RAF mutations in some cases.
Conclusions:
- MEK inhibitors represent a promising targeted therapy for ERK-active neuroblastomas.
- ERK phosphorylation is a reliable biomarker for predicting MEK inhibitor efficacy.
- Phosphorylated-ERK immunohistochemistry can guide therapeutic decisions for neuroblastoma patients.
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