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Manipulating Metabolic Alterations and their Consequences to Unleash the Potential of Antitumor Immunotherapy
Xuanyu Zhu1,2, Longfei Zhu1,2, Yan Wu1,2
1The Fourth Affiliated Hospital, Jiangsu University, Zhenjiang, Jiangsu, China.
Abstract:
Cellular metabolic reprogramming driven by oncogenic mutations is considered as a hallmark in the development of malignant cells, and has been a focus over the past decade. A common theme emerging from these metabolic alterations is that tumor cells can acquire necessary nutrients from a nutrient-limited microenvironment and utilize them to sustain growth and unrestrained cellular division. However, this significant metabolic flexibility and the hostile microenvironment caused by the insufficient vascular exchange, depletion of nutrients, hypoxia, and accumulation of waste products, can inhibit the metabolism and immune activity of tumor-infiltrating lymphocytes and impose barriers to effective antitumor immunotherapies. In this perspective, we review the classical alterations in tumorigenesis- associated metabolic reprogramming and examine the functional contribution of these aberrant metabolisms to the establishment and maintenance of an immunosuppressive microenvironment. Furthermore, we explore the possible approaches to targeting on these metabolic pathways to achieve antitumor immunotherapy, as well as some hypothetical or ongoing combination therapeutic strategies that could, to a certain extent, biologically rationalize and broaden the utility of immune checkpoint inhibitors. Ultimately, we elucidate some dietary modifications that can limit tumor-specific nutritional requirements and maximize the cytotoxicity of other antineoplastic drugs.
Insights
Cancer cells reprogram metabolism to thrive in nutrient-poor environments. This metabolic flexibility fuels tumor growth but suppresses anti-tumor immunity, hindering immunotherapy effectiveness.
Area of Science:
- Oncology
- Cancer Metabolism
- Immunology
Background:
- Cellular metabolic reprogramming is a hallmark of cancer, enabling tumor cells to acquire nutrients in hostile microenvironments for growth.
- Tumor-associated metabolic alterations create an immunosuppressive microenvironment by inhibiting anti-tumor immune cells, posing challenges for immunotherapy.
Approach:
- This review examines classical metabolic reprogramming in tumorigenesis.
- It analyzes the role of aberrant metabolism in establishing an immunosuppressive tumor microenvironment.
- The review explores therapeutic strategies targeting metabolic pathways for enhanced immunotherapy.
Key Points:
- Tumor cells exhibit metabolic flexibility to survive nutrient scarcity.
- Metabolic reprogramming contributes to immune evasion and immunotherapy resistance.
- Targeting cancer metabolism offers novel therapeutic avenues.
Conclusions:
- Strategies modulating tumor metabolism can overcome immune suppression.
- Combination therapies, including dietary interventions, may enhance immunotherapy efficacy.
- Targeting metabolic pathways holds promise for improving cancer treatment outcomes.
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