Related Experiment Video
Updated: Jan 29, 2026

A Protocol for Explant Cultures of IDH1-mutant Diffuse Low-grade Gliomas
Published on: May 9, 2025
Radiotherapy for High-Grade Gliomas in Adults and Children: A Systematic Review of Advances Published in the Second
1Neuro-Oncology & Mutagenesis Unit, IRCCS Ospedale Policlinico San Martino, Largo Rosanna Benzi 10, 16132 Genova, Italy.
Abstract:
While research on high-incidence tumors such as breast, prostate, and lung cancer has led to significant increases in patient survival in recent years, this has not been the case for low-incidence tumors such as high-grade gliomas, the most common and lethal brain tumors, for which the last significant therapeutic advance dates back to 2005. The high infiltration capacity of these tumors into normal brain tissue essential for both vegetative and relational life, the tumor microenvironment, with poor immunological activity, the multiple resistance mechanisms, and the unattractiveness of research investments due to the limited number of patients have made, and continue to make, the path to achieving significant improvements in the survival of patients with high-grade gliomas long and arduous. The objective of this article is to update the slow but continuous radiotherapeutic progress for adult and pediatric high-grade gliomas to the second half of 2023. We analyzed the progress of preclinical and clinical research on both adult and pediatric high-grade gliomas, with a particular focus on improvements in radiotherapy. Interactions between non-radiant new therapies and radiotherapy were also covered. A literature search was conducted in PubMed using the terms ("glioma* and radio*") and the time limit of 1 July 2023 to 31 December 2023. The inclusion and exclusion criteria for the review were relevance to advances in radiotherapy for high-grade gliomas in adults and children. Treating patients with advanced disease progression only, using "historical" data as controls, as well as repurposing drugs developed for purposes completely different from their intended use, were the major (but not the only) methods to assess risk of bias in the included studies. The effect measures used in the synthesis or presentation of the results were tabulated and/or displayed in figures. A total of 100 relevant references were reviewed. Advances in preclinical studies and in clinical radiotherapy treatment planning, innovative fractionation, use of radioisotopes/radiopharmaceuticals, radiosensitization procedures, and radiation-induced damage were focused on. While this analysis may be limited by the relatively short publication period, high-grade glioma research remains impacted, especially at the clinical level, by potential issues with trial design, such as treating patients with advanced disease progression, using "historical" data as controls, and repurposing drugs developed for completely different purposes than intended. Addressing these aspects of high-grade glioma research could improve its efficacy, which often remains low despite the associated costs.
Insights
Advances in radiotherapy for high-grade gliomas, including adult and pediatric cases, show slow but continuous progress. Research focuses on preclinical and clinical improvements, but trial design issues persist, impacting efficacy.
Area of Science:
- Neuro-oncology
- Radiation Oncology
- Medical Physics
Background:
- High-grade gliomas (HGGs) are aggressive brain tumors with poor prognoses.
- Unlike high-incidence cancers, HGGs have seen limited therapeutic advances since 2005.
- Challenges include tumor infiltration, immune-resistant microenvironment, and research investment barriers.
Purpose of the Study:
- To provide an updated review of radiotherapeutic progress for adult and pediatric high-grade gliomas.
- To analyze advancements in preclinical and clinical radiotherapy research up to the second half of 2023.
- To explore the interplay between novel non-radiant therapies and radiotherapy.
Main Methods:
- Literature search in PubMed for "glioma* and radio*" from July 1 to December 31, 2023.
- Inclusion criteria focused on radiotherapy advances for adult and pediatric HGGs.
- Risk of bias assessed via patient selection and drug repurposing; results synthesized via tables and figures.
Main Results:
- Reviewed 100 relevant references focusing on radiotherapy advancements.
- Key areas include preclinical/clinical treatment planning, novel fractionation, radioisotopes, radiosensitization, and radiation damage.
- Progress in radiotherapy is noted, but clinical translation faces hurdles.
Conclusions:
- Radiotherapy for high-grade gliomas shows incremental progress, particularly in treatment planning and novel techniques.
- Clinical trial design issues, such as patient selection and control groups, hinder efficacy.
- Addressing these design flaws is crucial for improving outcomes in high-grade glioma treatment.
More Related Videos
09:00Author Spotlight: Validation of SICOLE-R for Assessing Cognitive and Reading Skills in Spanish-Speaking Children and Its Role in Personalized Education
Published on: August 16, 2024
07:39Co-culture of Glutamatergic Neurons and Pediatric High-Grade Glioma Cells Into Microfluidic Devices to Assess Electrical Interactions
Published on: November 17, 2021
Related Concept Videos
Review and Preview
Percentiles are a type of fractile that partition data into...
Review and Preview
Graded Potential
Graded potentials fall into two categories: depolarizing and hyperpolarizing. Depolarizing graded potentials typically occur when sodium (Na+) or...
Random and Systematic Errors
Types of Aggregate Grading
Well-graded aggregates include a complete range of necessary size fractions that fit together to create a dense matrix with minimal voids, represented by a smooth, continuous gradation curve. This type of grading ensures good...
Systematic Sampling Method
Systematic sampling is one of the simplest methods...