Department of Neuroscience "Rita Levi Montalcini", University of Turin, 10124 Turin, Italy.
Neuroscience Institute Cavalieri Ottolenghi, 10143 Orbassano, Italy.
Int J Mol Sci. 2024 Aug 16;25(16):8922. doi: 10.3390/ijms25168922.
Astrocytes play a pivotal role in maintaining brain energy homeostasis, supporting neuronal function through glycolysis and lipid metabolism. This review explores the metabolic intricacies of astrocytes in both physiological and pathological conditions, highlighting their adaptive plasticity and diverse functions. Under normal conditions, astrocytes modulate synaptic activity, recycle neurotransmitters, and maintain the blood-brain barrier, ensuring a balanced energy supply and protection against oxidative stress. However, in response to central nervous system pathologies such as neurotrauma, stroke, infections, and neurodegenerative diseases like Alzheimer's and Huntington's disease, astrocytes undergo significant morphological, molecular, and metabolic changes. Reactive astrocytes upregulate glycolysis and fatty acid oxidation to meet increased energy demands, which can be protective in acute settings but may exacerbate chronic inflammation and disease progression. This review emphasizes the need for advanced molecular, genetic, and physiological tools to further understand astrocyte heterogeneity and their metabolic reprogramming in disease states.
星形胶质细胞在维持脑能量平衡中起着关键作用,通过糖酵解和脂质代谢为神经元功能提供支持。本综述探讨了星形胶质细胞在生理和病理条件下的代谢复杂性,强调了它们的适应性可塑性和多样化功能。在正常情况下,星形胶质细胞调节突触活动、回收神经递质和维持血脑屏障,以确保平衡的能量供应和抵御氧化应激。然而,在中枢神经系统疾病(如神经创伤、中风、感染和神经退行性疾病,如阿尔茨海默病和亨廷顿病)的情况下,星形胶质细胞会发生显著的形态、分子和代谢变化。反应性星形胶质细胞上调糖酵解和脂肪酸氧化以满足增加的能量需求,这在急性情况下可能具有保护作用,但可能会加剧慢性炎症和疾病进展。本综述强调需要先进的分子、遗传和生理工具来进一步了解星形胶质细胞的异质性及其在疾病状态下的代谢重编程。