Gandhi Gautam K, Cruz Nancy F, Ball Kelly K, Dienel Gerald A
Department of Physiology and Biophysics, University of Arkansas for Medical Sciences, Little Rock, Arkansas 72205, USA.
J Neurochem. 2009 Oct;111(2):522-36. doi: 10.1111/j.1471-4159.2009.06333.x. Epub 2009 Aug 13.
Brain is a highly-oxidative organ, but during activation, glycolytic flux is preferentially up-regulated even though oxygen supply is adequate. The biochemical and cellular basis of metabolic changes during brain activation and the fate of lactate produced within brain are important, unresolved issues central to understanding brain function, brain images, and spectroscopic data. Because in vivo brain imaging studies reveal rapid efflux of labeled glucose metabolites during activation, lactate trafficking among astrocytes and between astrocytes and neurons was examined after devising specific, real-time, sensitive enzymatic fluorescent assays to measure lactate and glucose levels in single cells in adult rat brain slices. Astrocytes have a 2- to 4-fold faster and higher capacity for lactate uptake from extracellular fluid and for lactate dispersal via the astrocytic syncytium compared to neuronal lactate uptake from extracellular fluid or shuttling of lactate to neurons from neighboring astrocytes. Astrocytes can also supply glucose to neurons as well as glucose can be taken up by neurons from extracellular fluid. Astrocytic networks can provide neuronal fuel and quickly remove lactate from activated glycolytic domains, and the lactate can be dispersed widely throughout the syncytium to endfeet along the vasculature for release to blood or other brain regions via perivascular fluid flow.
大脑是一个高氧化器官,但在激活过程中,即使氧气供应充足,糖酵解通量也会优先上调。大脑激活过程中代谢变化的生化和细胞基础以及大脑内产生的乳酸的去向是理解大脑功能、脑图像和光谱数据的核心重要且未解决的问题。由于体内脑成像研究显示激活过程中标记的葡萄糖代谢物快速流出,在设计了特定的、实时的、灵敏的酶荧光测定法以测量成年大鼠脑切片中单个细胞内的乳酸和葡萄糖水平后,研究了星形胶质细胞之间以及星形胶质细胞与神经元之间的乳酸转运。与神经元从细胞外液摄取乳酸或相邻星形胶质细胞向神经元输送乳酸相比,星形胶质细胞从细胞外液摄取乳酸以及通过星形胶质细胞合胞体分散乳酸的速度快2至4倍,能力也更高。星形胶质细胞还可以向神经元供应葡萄糖,并且葡萄糖也可以被神经元从细胞外液摄取。星形胶质细胞网络可以为神经元提供燃料,并迅速从激活的糖酵解区域清除乳酸,乳酸可以广泛分散到整个合胞体,直至沿着脉管系统的终足,通过血管周围液流释放到血液或其他脑区。