Metabolic Cooperation and Competition in the Tumor Microenvironment: Implications for Therapy

Метаболическое сотрудничество и конкуренция в микросреде опухоли: последствия для терапии
Seema Gupta, Bilikere S. Dwarakanath, Amrita Roy
2017-04-11

cancer-associated fibroblastsmetabolic cooperation and competitionmetabolic reprogrammingtumor microenvironmenttumor-infiltrating T cells
The tumor microenvironment (TME) is an ensemble of non-tumor cells comprising fibroblasts, cells of the immune system, and endothelial cells, besides various soluble secretory factors from all cellular components (including tumor cells). The TME forms a pro-tumorigenic cocoon around the tumor cells where reprogramming of the metabolism occurs in tumor and non-tumor cells that underlies the nature of interactions as well as competitions ensuring steady supply of nutrients and anapleoretic molecules for the tumor cells that fuels its growth even under hypoxic conditions. This metabolic reprogramming also plays a significant role in suppressing the immune attack on the tumor cells and in resistance to therapies. Thus, the metabolic cooperation and competition among the different TME components besides the inherent alterations in the tumor cells arising out of genetic as well as epigenetic changes supports growth, metastasis, and therapeutic resistance. This review focuses on the metabolic remodeling achieved through an active cooperation and competition among the three principal components of the TME-the tumor cells, the T cells, and the cancer-associated fibroblasts while discussing about the current strategies that target metabolism of TME components. Further, we will also consider the probable therapeutic opportunities targeting the various metabolic pathways as well as the signaling molecules/transcription factors regulating them for the development of novel treatment strategies for cancer.
1
Metabolic cooperation and competition among tumor cells, T cells, and cancer-associated fibroblasts drive growth, metastasis, and therapeutic resistance.
2
Metabolic interactions in the TME suppress anti-tumor immune responses and contribute to therapy resistance.
3
Metabolic reprogramming in both tumor and non-tumor TME cells ensures nutrient and anaplerotic supply to tumors, enabling growth under hypoxia.
4
Targeting metabolic pathways and their regulatory signaling molecules/transcription factors in TME components presents actionable therapeutic opportunities.
5
The tumor microenvironment (TME) contains non-tumor cells and secreted factors that create a pro-tumorigenic niche supporting tumor growth.

Tumor microenvironment (TME) comprising tumor cells, T cells, and cancer-associated fibroblasts

Metabolic cooperation and competition among TME components (tumor cells, T cells, cancer-associated fibroblasts) and their roles in metabolic reprogramming, immune suppression, therapy resistance, and therapeutic targeting of metabolic pathways and regulatory signals

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2017-04-11
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Authors
Seema Gupta
Bilikere S. Dwarakanath
Amrita Roy
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