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.

Abstract

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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