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Updated: Apr 26, 2026

Author Spotlight: Multimodal Imaging Strategies for Optimizing Drug Delivery and Early Detection in Glioblastoma Treatment
Published on: March 1, 2024
Multimodal imaging of gliomas in the context of evolving cellular and molecular therapies
Olivier Keunen1, Torfinn Taxt2, Renate Grüner3
1NorLux Neuro-Oncology Laboratory, Department of Oncology, Centre de Recherche Public de la Santé, Luxembourg, Luxembourg; Translational Cancer Research, Department of Biomedicine, University of Bergen, Norway.
Abstract:
The vast majority of malignant gliomas relapse after surgery and standard radio-chemotherapy. Novel molecular and cellular therapies are thus being developed, targeting specific aspects of tumor growth. While histopathology remains the gold standard for tumor classification, neuroimaging has over the years taken a central role in the diagnosis and treatment follow up of brain tumors. It is used to detect and localize lesions, define the target area for biopsies, plan surgical and radiation interventions and assess tumor progression and treatment outcome. In recent years the application of novel drugs including anti-angiogenic agents that affect the tumor vasculature, has drastically modulated the outcome of brain tumor imaging. To properly evaluate the effects of emerging experimental therapies and successfully support treatment decisions, neuroimaging will have to evolve. Multi-modal imaging systems with existing and new contrast agents, molecular tracers, technological advances and advanced data analysis can all contribute to the establishment of disease relevant biomarkers that will improve disease management and patient care. In this review, we address the challenges of glioma imaging in the context of novel molecular and cellular therapies, and take a prospective look at emerging experimental and pre-clinical imaging techniques that bear the promise of meeting these challenges.
Insights
Malignant gliomas often relapse, necessitating new therapies. Advanced neuroimaging is crucial for evaluating novel treatments and improving brain tumor management.
Area of Science:
- Neuro-oncology
- Medical Imaging
Background:
- Malignant gliomas frequently relapse post-treatment.
- Histopathology is standard, but neuroimaging is vital for diagnosis and monitoring.
- Novel therapies, including anti-angiogenic drugs, impact imaging interpretation.
Purpose of the Study:
- To review challenges in glioma imaging with novel therapies.
- To explore emerging imaging techniques for improved disease management.
Main Methods:
- Review of current literature on glioma imaging and therapy.
- Prospective analysis of experimental and pre-clinical imaging techniques.
Main Results:
- Neuroimaging plays a key role in detecting, localizing, and monitoring brain tumors.
- Evolving imaging techniques are needed to assess novel therapies.
- Multi-modal imaging and advanced analysis can yield disease biomarkers.
Conclusions:
- Neuroimaging must adapt to evaluate new molecular and cellular therapies for gliomas.
- Emerging imaging technologies promise to enhance disease management and patient care.

