Despite the numerous investigations on resistance mechanisms, drug resistance in cancer therapies still limits favorable outcomes in cancer patients. The complexities of the inherent characteristics of tumors, such as tumor heterogeneity and the complicated interaction within the tumor microenvironment, still hinder efforts to overcome drug resistance in cancer cells, requiring innovative approaches. In this review, we describe recent studies offering evidence for the essential roles of amino acid metabolism in driving drug resistance in cancer cells. Amino acids support cancer cells in counteracting therapies by maintaining redox homeostasis, sustaining biosynthetic processes, regulating epigenetic modification, and providing metabolic int...
Amino acids are indispensable for the growth of cancer cells. This includes essential amino acids, t...
Cancer cells require both energy and material to survive and duplicate in a competitive environment....
Objective: Profound metabolic alterations characterize cancer development and, beyond glucose addict...
Despite the numerous investigations on resistance mechanisms, drug resistance in cancer therapies st...
Far beyond simply being 11 of the 20 amino acids needed for protein synthesis, non-essential amino a...
Energy production is the main task of the cancer cell metabolism because the costs of duplicating ar...
T cells are the key players in eliminating malignant tumors. Adoptive transfer of tumor antigen-spec...
Tumor cells use amino acids to rewire metabolic pathways to meet increased demands for energy, reduc...
© 2020 Elsevier Inc. Metabolic pathways must be adapted to support cell processes required for trans...
A fine balance in reactive oxygen species (ROS) production and removal is of utmost importance for h...
Despite an increasing arsenal of anticancer therapies, many patients continue to have poor outcomes ...
Mutations in cancer reprogram amino acid metabolism to drive tumor growth, but the molecular mechani...
Mutations in cancer reprogram amino acid metabolism to drive tumor growth, but the molecular mechani...
T cell activation, differentiation and proliferation is dependent upon and intrinsically linked to a...
Amino acids can modulate cell metabolism and control cell fate by regulating cell survival and cell ...
Amino acids are indispensable for the growth of cancer cells. This includes essential amino acids, t...
Cancer cells require both energy and material to survive and duplicate in a competitive environment....
Objective: Profound metabolic alterations characterize cancer development and, beyond glucose addict...
Despite the numerous investigations on resistance mechanisms, drug resistance in cancer therapies st...
Far beyond simply being 11 of the 20 amino acids needed for protein synthesis, non-essential amino a...
Energy production is the main task of the cancer cell metabolism because the costs of duplicating ar...
T cells are the key players in eliminating malignant tumors. Adoptive transfer of tumor antigen-spec...
Tumor cells use amino acids to rewire metabolic pathways to meet increased demands for energy, reduc...
© 2020 Elsevier Inc. Metabolic pathways must be adapted to support cell processes required for trans...
A fine balance in reactive oxygen species (ROS) production and removal is of utmost importance for h...
Despite an increasing arsenal of anticancer therapies, many patients continue to have poor outcomes ...
Mutations in cancer reprogram amino acid metabolism to drive tumor growth, but the molecular mechani...
Mutations in cancer reprogram amino acid metabolism to drive tumor growth, but the molecular mechani...
T cell activation, differentiation and proliferation is dependent upon and intrinsically linked to a...
Amino acids can modulate cell metabolism and control cell fate by regulating cell survival and cell ...
Amino acids are indispensable for the growth of cancer cells. This includes essential amino acids, t...
Cancer cells require both energy and material to survive and duplicate in a competitive environment....
Objective: Profound metabolic alterations characterize cancer development and, beyond glucose addict...