
Immunological tolerance is a fundamental tenant of immune homeostasis and overall health. Self-tolerance is a critical component of the immune system that allows for the recognition of self, resulting in hyporeactivity instead of immunogenicity. Dendritic cells are central to the establishment of dominant immune tolerance through the secretion of immunosuppressive cytokines and regulatory polarization of T cells. Cellular metabolism holds the key to determining DC immunogenic or tolerogenic cell fate. Recent studies have demonstrated that dendritic cell maturation leads to a shift toward a glycolytic metabolic state and preferred use of glucose as a carbon source. In contrast, tolerogenic dendritic cells favor oxidative phosphorylation and fatty acid oxidation. This dichotomous metabolic reprogramming of dendritic cells drives differential cellular function and plays a role in pathologies, such as autoimmune disease. Pharmacological alterations in metabolism have promising therapeutic potential.
570, dendritic cell, phase 1 clinical trial (topic), oxidative phosphorylation, 610, autoimmune disease, cell maturation, Review, Review Article, Oxidative Phosphorylation, cell metabolism, cytokine, Pathology, Immune Tolerance, dendritic cell vaccine, RB1-214, Animals, Humans, animal, human, innate immunity, cell fate, nonhuman, Fatty Acids, adaptive immunity, Dendritic Cells, glycolysis, priority journal, carbon source, physiology, cell function, fatty acid, immunological tolerance, metabolism, Glycolysis
570, dendritic cell, phase 1 clinical trial (topic), oxidative phosphorylation, 610, autoimmune disease, cell maturation, Review, Review Article, Oxidative Phosphorylation, cell metabolism, cytokine, Pathology, Immune Tolerance, dendritic cell vaccine, RB1-214, Animals, Humans, animal, human, innate immunity, cell fate, nonhuman, Fatty Acids, adaptive immunity, Dendritic Cells, glycolysis, priority journal, carbon source, physiology, cell function, fatty acid, immunological tolerance, metabolism, Glycolysis
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