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Published on: November 17, 2021
Molecular Genetics and Targeted Therapies for Paediatric High-grade Glioma
Kathrine S Rallis1,2, Alan Mathew George3,4, Anna Maria Wozniak2
1Barts Cancer Institute, Queen Mary University of London, London, U.K.; k.s.rallis@smd16.qmul.ac.uk.
Insights
Pediatric high-grade glioma (pHGG) is a deadly brain tumor with distinct genetics from adult forms. Novel targeted therapies show promise, but challenges like drug delivery and resistance require further research for effective combination treatments.
Area of Science:
- Pediatric oncology
- Neuro-oncology
- Cancer genetics
Background:
- High-grade glioma (HGG) is the leading cause of cancer-related death in children.
- Paediatric HGG (pHGG) has unique molecular genetics compared to adult HGG, necessitating distinct treatment strategies.
- Despite advances, pHGG prognosis remains poor due to treatment resistance and toxicity.
Purpose of the Study:
- To provide a comprehensive overview of pHGG molecular genetics.
- To review novel targeted therapies for pHGG.
- To discuss diagnostic and clinical implications of genetic differences between pediatric and adult HGG.
Main Methods:
- Review of current literature on pHGG molecular genetics.
- Analysis of ongoing and completed clinical trials for targeted therapies in pHGG.
- Discussion of challenges and future directions in pHGG treatment.
Main Results:
- pHGG exhibits distinct genetic mutations (e.g., PDGFRA, TP53, H3 K27M/G34R/V) compared to adult HGG.
- Targeted therapies including BRAF/MEK, PI3K/mTOR, EGFR, CDK4/6, and HDAC inhibitors show promise.
- Novel agents targeting UPS proteasome, ADAM10/17, IDO, and XPO1 are under investigation.
Conclusions:
- Effective pHGG treatment requires understanding unique molecular pathways and developing combination therapies.
- Overcoming challenges such as blood-brain barrier penetration and drug resistance is crucial.
- Multimodal treatment strategies integrating targeted agents, chemoradiotherapy, surgery, and immunotherapy are essential for future management.
Abstract:
Brain tumours are the leading cause of paediatric cancer-associated death worldwide. High-grade glioma (HGG) represents a main cause of paediatric brain tumours and is associated with poor prognosis despite surgical and chemoradiotherapeutic advances. The molecular genetics of paediatric HGG (pHGG) are distinct from those in adults, and therefore, adult clinical trial data cannot be extrapolated to children. Compared to adult HGG, pHGG is characterised by more frequent mutations in PDGFRA, TP53 and recurrent K27M and G34R/V mutations on histone H3. Ongoing trials are investigating novel targeted therapies in pHGG. Promising results have been achieved with BRAF/MEK and PI3K/mTOR inhibitors. Combination of PI3K/mTOR, EGFR, CDK4/6, and HDAC inhibitors are potentially viable options. Inhibitors targeting the UPS proteosome, ADAM10/17, IDO, and XPO1 are more novel and are being investigated in early-phase trials. Despite preclinical and clinical trials holding promise for the discovery of effective pHGG treatments, several issues persist. Inadequate blood-brain barrier penetration, unfavourable pharmacokinetics, dose-limiting toxicities, long-term adverse effects in the developing child, and short-lived duration of response due to relapse and resistance highlight the need for further improvement. Future pHGG management will largely depend on selecting combination therapies which work synergistically based on a sound knowledge of the underlying molecular target pathways. A systematic investigation of multimodal therapy with chemoradiotherapy, surgery, target agents and immunotherapy is paramount. This review provides a comprehensive overview of pHGG focusing on molecular genetics and novel targeted therapies. The diagnostics, genetic discrepancies with adults and their clinical implications, as well as conventional treatment approaches are discussed.
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