Yang Danying, Wang Xifeng, Zhang Lieliang, Fang Yang, Zheng Qingcui, Liu Xing, Yu Wen, Chen Shoulin, Ying Jun, Hua Fuzhou
Department of Anesthesiology, the Second Affiliated Hospital of Nanchang University, Nanchang, 330006, Jiangxi, China.
Key Laboratory of Anesthesiology of Jiangxi Province, 1# Minde Road, Nanchang, 330006, Jiangxi, People's Republic of China.
Cell Biosci. 2022 Jul 12;12(1):106. doi: 10.1186/s13578-022-00828-0.
The importance of neuroglia in maintaining normal brain function under physiological and pathological conditions has been supported by growing evidence in recent years. The most important issues regarding glial metabolism and function include the cooperation between glial populations and neurons, morphological and functional changes in pathological states, and the role in the onset and progression of neurodegenerative diseases. Although lipid accumulation and further lipid droplet production in neurodegenerative disease brain models have been observed for a long time, the dynamic development of brain lipid droplet research in recent years suggests its role in the development and progression of neurodegenerative diseases was previously underestimated. First recognized as organelles of lipid storage, lipid droplets (LDs) have emerged as an important organelle in metabolic diseases, inflammation, and host defense. Dynamic changes in lipid metabolism within neurons and glial cells resulting in lipid accumulation and lipid droplet formation are present in brain models of various neurodegenerative diseases, yet their role in the brain remains largely unexplored. This paper first reviews the metabolism and accumulation of several major lipids in the brain and discusses the regulation of lipid accumulation in different types of brain cells. We explore the potential role of intracellular lipid accumulation in the pathogenesis of neurodegeneration, starting from lipid metabolism and LDs biogenesis in glial cells, and discuss several pathological factors that promote lipid droplet formation, mainly focusing on oxidative stress, energy metabolism and glial cell-neuron coupling, which are closely related to the etiology and progression of neurodegenerative diseases. Finally, the directions and challenges of intracellular lipid metabolism in glial cells in neurodegeneration are discussed.
近年来,越来越多的证据支持了神经胶质细胞在生理和病理条件下维持正常脑功能的重要性。关于胶质细胞代谢和功能的最重要问题包括胶质细胞群体与神经元之间的协作、病理状态下的形态和功能变化,以及在神经退行性疾病发生和发展中的作用。尽管在神经退行性疾病脑模型中,脂质积累和进一步的脂滴产生已被观察到很长时间,但近年来脑脂滴研究的动态发展表明,其在神经退行性疾病发生和发展中的作用此前被低估了。脂滴(LDs)最初被认为是脂质储存的细胞器,现已成为代谢性疾病、炎症和宿主防御中的重要细胞器。在各种神经退行性疾病的脑模型中,神经元和胶质细胞内脂质代谢的动态变化导致脂质积累和脂滴形成,但其在脑中的作用仍 largely unexplored。本文首先综述了脑中几种主要脂质的代谢和积累,并讨论了不同类型脑细胞中脂质积累的调节。我们从胶质细胞中的脂质代谢和脂滴生物发生出发,探讨细胞内脂质积累在神经退行性变发病机制中的潜在作用,并讨论几种促进脂滴形成的病理因素,主要关注与神经退行性疾病病因和进展密切相关的氧化应激、能量代谢和胶质细胞 - 神经元耦合。最后,讨论了神经退行性变中胶质细胞内脂质代谢的方向和挑战。