4.6 Review

Astrocyte metabolism and signaling pathways in the CNS

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FRONTIERS IN NEUROSCIENCE
卷 17, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fnins.2023.1217451

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astrocyte; metabolism; neurological disorders; energy imbalance; neural circuit

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Astrocytes, comprising a large portion of cells in the central nervous system, play a crucial role in maintaining metabolic balance. Dysfunction in astrocyte metabolism has been identified as a major cause of neurological disorders including depression, Alzheimer's disease, and epilepsy. The metabolism of glucose, amino acids, and lipids in astrocytes has been implicated in the development of neurological diseases. This review provides an overview of the metabolic processes in astrocytes, focusing on glucose, fatty acid, and amino acid metabolism, and discusses their implications in neurological disorders.
Astrocytes comprise half of the cells in the central nervous system and play a critical role in maintaining metabolic homeostasis. Metabolic dysfunction in astrocytes has been indicated as the primary cause of neurological diseases, such as depression, Alzheimer's disease, and epilepsy. Although the metabolic functionalities of astrocytes are well known, their relationship to neurological disorders is poorly understood. The ways in which astrocytes regulate the metabolism of glucose, amino acids, and lipids have all been implicated in neurological diseases. Metabolism in astrocytes has also exhibited a significant influence on neuron functionality and the brain's neuro-network. In this review, we focused on metabolic processes present in astrocytes, most notably the glucose metabolic pathway, the fatty acid metabolic pathway, and the amino-acid metabolic pathway. For glucose metabolism, we focused on the glycolysis pathway, pentose-phosphate pathway, and oxidative phosphorylation pathway. In fatty acid metabolism, we followed fatty acid oxidation, ketone body metabolism, and sphingolipid metabolism. For amino acid metabolism, we summarized neurotransmitter metabolism and the serine and kynurenine metabolic pathways. This review will provide an overview of functional changes in astrocyte metabolism and provide an overall perspective of current treatment and therapy for neurological disorders.

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