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Published on: November 17, 2021
Molecular-targeted therapy for childhood low-grade glial and glioneuronal tumors
Benjamin I Siegel1,2,3,4, Elizabeth S Duke5,6, Lindsay B Kilburn5,7
1Brain Tumor Institute, Children's National Hospital, 111 Michigan Ave NW, Washington, DC, 20010, USA. BSiegel1@childrensnational.org.
Abstract:
Since the discovery of the association between BRAF mutations and fusions in the development of childhood low-grade gliomas and the subsequent recognition that most childhood low-grade glial and glioneuronal tumors have aberrant signaling through the RAS/RAF/MAP kinase pathway, there has been a dramatic change in how these tumors are conceptualized. Many of the fusions and mutations present in these tumors are associated with molecular targets, which have agents in development or already in clinical use. Various agents, including MEK inhibitors, BRAF inhibitors, MTOR inhibitors and, in small subsets of patients NTRK inhibitors, have been used successfully to treat children with recurrent disease, after failure of conventional approaches such as surgery or chemotherapy. The relative benefits of chemotherapy as compared to molecular-targeted therapy for children with newly diagnosed gliomas and neuroglial tumors are under study. Already the combination of an MEK inhibitor and a BRAF inhibitor has been shown superior to conventional chemotherapy (carboplatin and vincristine) in newly diagnosed children with BRAF-V600E mutated low-grade gliomas and neuroglial tumors. However, the long-term effects of such molecular-targeted treatment are unknown. The potential use of molecular-targeted therapy in early treatment has made it mandatory that the molecular make-up of the majority of low-grade glial and glioneuronal tumors is known before initiation of therapy. The primary exception to this rule is in children with neurofibromatosis type 1 who, by definition, have NF1 loss; however, even in this population, gliomas arising in late childhood and adolescence or those not responding to conventional treatment may be candidates for biopsy, especially before entry on molecular-targeted therapy trials.
Insights
Targeted therapies show promise for childhood low-grade gliomas by inhibiting the RAS/RAF/MAP kinase pathway. Molecular profiling is crucial before initiating treatment, especially for newly diagnosed patients.
Area of Science:
- Pediatric Oncology
- Molecular Biology
- Neuro-oncology
Background:
- Childhood low-grade gliomas (LGGs) are increasingly understood to be driven by RAS/RAF/MAP kinase pathway alterations.
- BRAF mutations/fusions and other pathway aberrations are common in pediatric LGGs.
Purpose of the Study:
- To review the evolving landscape of molecularly targeted therapies for pediatric LGGs.
- To highlight the importance of molecular profiling in guiding treatment decisions for these tumors.
Main Methods:
- Review of current literature on molecular targets and targeted agents in pediatric LGGs.
- Analysis of clinical trial data and treatment outcomes for targeted therapies.
Main Results:
- Targeted agents (MEK, BRAF, MTOR, NTRK inhibitors) show efficacy in recurrent pediatric LGGs.
- Combination therapy (MEK and BRAF inhibitors) is superior to chemotherapy for newly diagnosed BRAF-V600E LGGs.
- Long-term effects of targeted therapies remain unknown.
Conclusions:
- Molecularly targeted therapy represents a paradigm shift in pediatric LGG treatment.
- Mandatory molecular profiling is essential for personalized treatment selection.
- Further research is needed on long-term outcomes and optimal treatment sequencing.

