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Updated: Mar 1, 2026

Quantitative Immunohistochemistry of the Cellular Microenvironment in Patient Glioblastoma Resections
Published on: July 31, 2017
The interplay between metabolic remodeling and immune regulation in glioblastoma
Pravin Kesarwani1, Shiva Kant1, Antony Prabhu1
1Radiation Oncology, Beaumont Health, Royal Oak, Michigan.
Abstract:
The fields of tumor metabolism and immune oncology have both independently received considerable attention over the last several years. The majority of research in tumor metabolism has largely focused on the Warburg effect and its resulting biologic consequences, including energy and macromolecule production. However, recent investigations have identified elegant, multifaceted strategies by which alterations in tumor metabolism can also contribute to a potent tolerogenic immune environment. One of the most notable is increased tryptophan metabolism through activation of indoleamine 2,3-dioxygenase 1 (IDO1) and tryptophan 2,3-dioxygenase (TDO). However, this pathway represents one of numerous metabolic pathways that may modulate the immune system. For example, metabolites associated with aerobic glycolysis, adenosine, arginine, and prostaglandin metabolism have all been implicated in cancer-mediated immune tolerance and represent attractive therapeutic targets. In this review, we will provide an overview of the emerging interface between these 2 timely areas of cancer research and provide an overview of strategies currently being tested to target these next-generation metabolic immune checkpoints.
Insights
Cancer cells reprogram metabolism to evade immune responses. Targeting metabolic pathways like tryptophan metabolism offers new strategies for cancer immunotherapy by overcoming immune tolerance.
Area of Science:
- Oncology
- Immunology
- Metabolism
Background:
- Tumor metabolism research traditionally focused on the Warburg effect.
- Emerging evidence links tumor metabolism to immune tolerance.
- Key enzymes like indoleamine 2,3-dioxygenase 1 (IDO1) and tryptophan 2,3-dioxygenase (TDO) are involved.
Purpose of the Study:
- To review the intersection of tumor metabolism and immune oncology.
- To highlight metabolic pathways that promote immune tolerance.
- To discuss therapeutic strategies targeting metabolic immune checkpoints.
Main Methods:
- Literature review of tumor metabolism and immune oncology.
- Analysis of metabolic pathways influencing the tumor microenvironment.
- Overview of current therapeutic strategies targeting metabolic checkpoints.
Main Results:
- Alterations in tumor metabolism create a tolerogenic immune environment.
- Tryptophan metabolism via IDO1 and TDO is a significant mechanism.
- Other metabolites (adenosine, arginine, prostaglandins) also modulate immune responses.
Conclusions:
- The interplay between tumor metabolism and immune evasion is complex.
- Targeting metabolic pathways represents a promising avenue for cancer immunotherapy.
- Next-generation therapies aim to disrupt these metabolic immune checkpoints.
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