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Response to ‘comment on recent modeling studies of astrocyte–neuron metabolic interactions: much ado about nothing

机译:对关于星形胶质细胞-神经元代谢相互作用的最新模型研究的评论的回应:事不宜迟

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摘要

For many years, a tenet of cerebral metabolism held that glucose was the obligate energy substrate of the mammalian brain and that neuronal oxidative metabolism represented the majority of this glucose utilization. In 1994, Pellerin and Magistretti formulated the astrocyte–neuron lactate shuttle (ANLS) hypothesis, in which astrocytes, not neurons, metabolized glucose, with subsequent transport of the glycolytically derived lactate to fuel the energy needs of the neuron during neurotransmission. By considering the concentrations and kinetic characteristics of the nutrient transporter proteins, Simpson et al later supported the opposite view, in which lactate flows from neurons to astrocytes, thus leading to the neuron–astrocyte lactate shuttle (NALS). Most recently, a commentary was published in this journal attempting to discredit the NALS. This challenge has stimulated the present response in which we detail the inaccuracies of the commentary and further model several different possibilities. Although our simulations continue to support the predominance of neuronal glucose utilization during activation and neuronal to astrocytic lactate flow, the most important result is that, regardless of the direction of the flow, the overall contribution of lactate to cerebral glucose metabolism is found to be so small as to make this ongoing debate ‘much ado about nothing'.
机译:多年来,大脑代谢的原则认为,葡萄糖是哺乳动物大脑的专性能量底物,而神经元氧化代谢代表了大部分葡萄糖利用。 1994年,Pellerin和Magistretti提出了星形胶质细胞-乳酸神经元穿梭(ANLS)假说,其中星形胶质细胞(而非神经元)代谢葡萄糖,并随后通过糖酵解的乳酸盐运输为神经传递过程中的神经元提供能量。通过考虑营养转运蛋白的浓度和动力学特性,辛普森等人后来支持了相反的观点,即乳酸从神经元流向星形胶质细胞,从而导致神经元-星形胶质细胞的乳酸穿梭(NALS)。最近,该杂志发表了一篇评论,试图抹黑NALS。这一挑战激发了当前的回应,在回应中我们详细描述了评述的不准确性,并进一步模拟了几种不同的可能性。尽管我们的模拟继续支持激活期间神经元葡萄糖利用的主要优势以及神经元向星形细胞的乳酸流动,但最重要的结果是,无论流动的方向如何,乳酸对脑葡萄糖代谢的总体贡献均是如此。小到使正在进行的辩论“无事生非”。

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