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Employing Digital Droplet PCR to Detect BRAF V600E Mutations in Formalin-fixed Paraffin-embedded Reference Standard Cell Lines
Published on: October 8, 2015
Clinical Relevance of BRAF V600E Mutation Status in Brain Tumors with a Focus on a Novel Management Algorithm
Adam Kowalewski1, Justyna Durślewicz2, Marek Zdrenka2,3
1Department of Clinical Pathomorphology, Collegium Medicum in Bydgoszcz, Nicolaus Copernicus University, Torun, Poland. kowalewskiresearch@gmail.com.
Abstract:
The possible application of BRAF-targeted therapy in brain tumors is growing continuously. We have analyzed clinical strategies that address BRAF activation in primary brain tumors and verified current recommendations regarding screening for BRAF mutations. There is preliminary evidence for a range of positive responses in certain brain tumor types harboring the BRAF V600E mutation. National Comprehensive Cancer Network Guidelines for central nervous system cancers recommend screening for the BRAF V600E mutation in pilocytic astrocytoma, pleomorphic xanthoastrocytoma, and ganglioglioma. We suggest additional testing in glioblastomas WHO grade IV below the age of 30 years, especially those with epithelioid features, papillary craniopharyngiomas, and pediatric low-grade astrocytomas. BRAF-targeted therapy should be limited to the setting of a clinical trial. If the patient harboring a V600E mutation does not qualify for a trial, multimodality treatment is recommended. Dual inhibition of both RAF and MEK is expected to provide more potent and durable effects than anti-BRAF monotherapy. First-generation RAF inhibitors should be avoided. Gain-of-function mutations of EGFR and KIAA fusions may compromise BRAF-targeted therapy. BRAF alterations that result in MAPK pathway activation are common events in several types of brain tumors. BRAF V600E mutation emerges as a promising molecular target. The proposed algorithm was designed to help oncologists to provide the best therapeutic options for brain tumor patients.
Insights
BRAF V600E mutations are a promising target in brain tumors, with specific screening recommended for certain types. BRAF-targeted therapy shows potential but should be used in clinical trials or with multimodality treatment.
Area of Science:
- Neuro-oncology
- Molecular oncology
- Cancer genetics
Background:
- BRAF alterations are frequent in brain tumors, activating the MAPK pathway.
- BRAF V600E mutation is a key driver in specific primary brain tumors.
- BRAF-targeted therapy offers a new avenue for treating brain tumors.
Purpose of the Study:
- To analyze clinical strategies for BRAF activation in primary brain tumors.
- To verify current recommendations for BRAF mutation screening.
- To propose an algorithm for guiding BRAF-targeted therapy decisions.
Main Methods:
- Review of clinical strategies and guidelines for BRAF mutation screening.
- Analysis of preliminary evidence for BRAF-targeted therapy responses.
- Evaluation of factors influencing BRAF-targeted therapy efficacy.
Main Results:
- Preliminary evidence supports BRAF V600E targeted therapy in specific brain tumors.
- NCCN guidelines recommend BRAF V600E screening in pilocytic astrocytoma, pleomorphic xanthoastrocytoma, and ganglioglioma.
- Additional screening suggested for specific glioblastomas, craniopharyngiomas, and pediatric low-grade astrocytomas.
Conclusions:
- BRAF V600E is a promising molecular target in brain tumors.
- BRAF-targeted therapy should be limited to clinical trials or combined with other treatments.
- Dual RAF/MEK inhibition may offer superior outcomes compared to monotherapy.
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