Therapeutic targets in pilocytic astrocytoma based on genetic analysis
1Department of Pathology, UCSF School of Medicine, San Francisco, CA.
Insights
Pilocytic astrocytoma (PA), a common childhood brain tumor, often shows BRAF gene alterations. Targeting the MAPK pathway and oncogene-induced senescence (OIS) may improve treatment for challenging PA cases.
Area of Science:
- Pediatric neuro-oncology
- Molecular oncology
Background:
- Pilocytic astrocytoma (PA) is the most common pediatric brain tumor, typically with a favorable prognosis (WHO Grade I).
- The KIAA1549-BRAF fusion is a frequent molecular alteration in sporadic PA, particularly in posterior fossa tumors.
- BRAF activation initiates the MAPK/ERK pathway, which also triggers oncogene-induced senescence (OIS).
Purpose of the Study:
- To review the clinicopathologic, prognostic, and molecular features of pilocytic astrocytoma.
- To discuss current and emerging therapeutic strategies for PA, considering molecular alterations and OIS.
- To highlight the importance of individualized treatment and avoiding overtreatment in indolent PA cases.
Main Methods:
- Literature review of historical, clinicopathologic, prognostic, and molecular data on pilocytic astrocytoma.
- Analysis of BRAF oncogene role and MAPK/ERK pathway activation in PA pathogenesis.
- Discussion of therapeutic strategies, including targeted therapy and combination regimens.
Main Results:
- The BRAF oncogene, particularly the KIAA1549-BRAF fusion, plays a crucial role in PA development.
- The MAPK/ERK pathway is constitutively activated, leading to OIS, which may contribute to PA dormancy or regression.
- Individualized treatment requires identifying specific MAPK alterations and balancing pathway inhibition with OIS modulation.
Conclusions:
- Understanding PA molecular drivers like BRAF alterations is key for effective treatment.
- Targeting the MAPK pathway and OIS, alongside avoiding overtreatment, is crucial for managing PA.
- Combination therapies and careful consideration of OIS are essential for challenging PA cases and preventing resistance.
Abstract:
Pilocytic astrocytoma (PA) is the most common astrocytic neoplasm of childhood. Patients have an extremely favorable prognosis after surgical resection, qualifying tumors for a grade I designation by the World Health Organization. The molecular data on PA support a key role for the BRAF oncogene in the pathogenesis of these tumors, with the KIAA1549-BRAF fusion being the most common alteration identified in sporadic cases, particularly those occurring in the posterior fossa. Constitutive activation of BRAF leads to downstream activation of the MEK/MAPK/ERK/p16 pathway, which interestingly is also used by cells to activate oncogene-induced senescence (OIS). In fact, the presence of an active OIS pathway might explain the periods of dormancy or spontaneous regression or both, that can be seen in PA. In addition to reviewing the historical evolution, clinicopathologic, predictive, prognostic, and molecular features of PA, we discuss current therapeutic strategies and the caveats that should be considered for the development of therapies that could be used to more effectively treat challenging cases. Individualized treatment requires identification of the type of MAPK alteration, as several alterations in BRAF have been described in addition to the KIAA1549-BRAF fusion. Combination regimens would also appear crucial to achieve tumor eradication and prevent the development of drug resistance. Balancing mitogen-activated protein kinases (MAPK) pathway inhibition with abrogation of an active OIS should be carefully considered as well to preserve any existing protective pathways. Importantly, PAs are largely indolent tumors, and care should be taken to avoid overtreatment, as aggressive therapy could cause more harm than good.
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