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Updated: Apr 12, 2026

Advancements in the Metabolic Profiling of Three-Dimensional Brain Tumor Spheroids for Drug Screening
Published on: September 5, 2025
The role of metabolic therapy in treating glioblastoma multiforme
Joseph C Maroon1, Thomas N Seyfried2, Joseph P Donohue1
1Department of Neurosurgery, University of Pittsburgh Medical Center, Suite 5C, 200 Lothrop St., Pittsburgh, PA, USA.
Abstract:
Glioblastoma multiforme (GBM) is an aggressive and nearly uniformly fatal malignancy of the central nervous system. Despite extensive research and clinical trials over the past 50 years, very little progress has been made to significantly alter its lethal prognosis. The current standard of care (SOC) includes maximal surgical resection, radiation therapy and chemotherapy and temozolomide (TMZ), including the selective use of glucocorticoids for symptom control. These same treatments, however, have the potential to create an environment that may actually facilitate tumor growth and survival. Research investigating the unique metabolic needs of tumor cells has led to the proposal of a new metabolic treatment for various cancers including GBMs that may enhance the effectiveness of the SOC. The goal of metabolic cancer therapy is to restrict GBM cells of glucose, their main energy substrate. By recognizing the underlying energy production requirements of cancer cells, newly proposed metabolic therapy is being used as an adjunct to standard GBM therapies. This review will discuss the calorie restricted ketogenic diet (CR-KD) as a promising potential adjunctive metabolic therapy for patients with GBMs. The effectiveness of the CR-KD is based on the "Warburg Effect" of cancer metabolism and the microenvironment of GBM tumors. We will review recent case reports, clinical studies, review articles, and animal model research using the CR-KD and explain the principles of the Warburg Effect as it relates to CR-KD and GBMs.
Insights
The calorie-restricted ketogenic diet (CR-KD) may enhance glioblastoma treatment by starving cancer cells of glucose. This metabolic therapy, based on the Warburg Effect, is a promising adjunct to standard glioblastoma care.
Area of Science:
- Neuro-oncology
- Metabolic therapy
- Cancer research
Background:
- Glioblastoma multiforme (GBM) is a fatal brain cancer with limited treatment progress.
- Standard care (maximal resection, radiation, chemotherapy, temozolomide) has not significantly improved survival.
- Standard treatments may inadvertently support tumor growth.
Purpose of the Study:
- To review the calorie-restricted ketogenic diet (CR-KD) as a potential adjunctive metabolic therapy for GBM.
- To explore the scientific basis of CR-KD for GBM, including the Warburg Effect and tumor microenvironment.
Main Methods:
- Review of case reports, clinical studies, and animal models involving CR-KD for GBM.
- Explanation of the Warburg Effect and its relevance to CR-KD and GBM metabolism.
Main Results:
- The Warburg Effect describes cancer cells' reliance on glucose for energy.
- CR-KD aims to restrict glucose availability, potentially inhibiting GBM cell growth.
- Emerging research suggests CR-KD may complement standard GBM therapies.
Conclusions:
- CR-KD presents a promising metabolic approach to target GBM's energy substrate.
- Further research is needed to establish CR-KD's efficacy and safety as an adjunct therapy for glioblastoma.

