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Targeted Arginine Metabolism Therapy: A Dilemma in Glioma Treatment
Xiaoshuang Hou1, Sui Chen1, Po Zhang1
1Department of Neurosurgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Efforts in the treatment of glioma which is the most common primary malignant tumor of the central nervous system, have not shown satisfactory results despite a comprehensive treatment model that combines various treatment methods, including immunotherapy. Cellular metabolism is a determinant of the viability and function of cancer cells as well as immune cells, and the interplay of immune regulation and metabolic reprogramming in tumors has become an active area of research in recent years. From the perspective of metabolism and immunity in the glioma microenvironment, we elaborated on arginine metabolic reprogramming in glioma cells, which leads to a decrease in arginine levels in the tumor microenvironment. Reduced arginine availability significantly inhibits the proliferation, activation, and function of T cells, thereby promoting the establishment of an immunosuppressive microenvironment. Therefore, replenishment of arginine levels to enhance the anti-tumor activity of T cells is a promising strategy for the treatment of glioma. However, due to the lack of expression of argininosuccinate synthase, gliomas are unable to synthesize arginine; thus, they are highly dependent on the availability of arginine in the extracellular environment. This metabolic weakness of glioma has been utilized by researchers to develop arginine deprivation therapy, which 'starves' tumor cells by consuming large amounts of arginine in circulation. Although it has shown good results, this treatment modality that targets arginine metabolism in glioma is controversial. Exploiting a suitable strategy that can not only enhance the antitumor immune response, but also "starve" tumor cells by regulating arginine metabolism to cure glioma will be promising.
Insights
Glioma treatment struggles, but targeting arginine metabolism offers promise. Restoring arginine levels can boost T cell immunity and starve tumor cells, presenting a novel therapeutic strategy.
Area of Science:
- Neuro-oncology
- Cancer Immunology
- Tumor Metabolism
Background:
- Glioma treatment remains challenging despite comprehensive approaches.
- Tumor cell metabolism and immune cell function are intertwined, impacting the tumor microenvironment.
- Arginine metabolism reprogramming in glioma creates an immunosuppressive environment by depleting T cell-supporting arginine.
Purpose of the Study:
- To explore arginine metabolic reprogramming in glioma.
- To investigate the impact of arginine depletion on T cells within the glioma microenvironment.
- To evaluate strategies for enhancing anti-tumor immunity by modulating arginine metabolism.
Main Methods:
- Analysis of arginine metabolism in glioma cells.
- Assessment of T cell function in response to arginine availability.
- Review of arginine deprivation therapy and its implications.
Main Results:
- Glioma cells reprogram arginine metabolism, reducing extracellular arginine levels.
- Low arginine availability inhibits T cell proliferation, activation, and function, promoting immunosuppression.
- Gliomas' inability to synthesize arginine makes them vulnerable to arginine deprivation strategies.
Conclusions:
- Modulating arginine metabolism is a promising strategy for glioma treatment.
- Enhancing arginine levels can bolster anti-tumor T cell responses.
- Targeting glioma's metabolic vulnerability offers a dual approach: starving tumor cells and stimulating immunity.

