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通过在海马组织中基因编码的 FRET 纳米传感器揭示星形胶质细胞能量代谢与突触活动的紧密偶联。

Tight coupling of astrocyte energy metabolism to synaptic activity revealed by genetically encoded FRET nanosensors in hippocampal tissue.

机构信息

1 Abteilung für Allgemeine Zoologie, FB Biologie, University of Kaiserslautern, Germany.

2 Centro de Estudios Científicos (CECs), Valdivia, Chile.

出版信息

J Cereb Blood Flow Metab. 2019 Mar;39(3):513-523. doi: 10.1177/0271678X17737012. Epub 2017 Oct 30.

Abstract

The potassium ion, K, a neuronal signal that is released during excitatory synaptic activity, produces acute activation of glucose consumption in cultured astrocytes, a phenomenon mediated by the sodium bicarbonate cotransporter NBCe1 ( SLC4A4). We have explored here the relevance of this mechanism in brain tissue by imaging the effect of neuronal activity on pH, glucose, pyruvate and lactate dynamics in hippocampal astrocytes using BCECF and FRET nanosensors. Electrical stimulation of Schaffer collaterals produced fast activation of glucose consumption in astrocytes with a parallel increase in intracellular pyruvate and biphasic changes in lactate . These responses were blocked by TTX and were absent in tissue slices prepared from NBCe1-KO mice. Direct depolarization of astrocytes with elevated extracellular K or Ba mimicked the metabolic effects of electrical stimulation. We conclude that the glycolytic pathway of astrocytes in situ is acutely sensitive to neuronal activity, and that extracellular K and the NBCe1 cotransporter are involved in metabolic crosstalk between neurons and astrocytes. Glycolytic activation of astrocytes in response to neuronal K helps to provide an adequate supply of lactate, a metabolite that is released by astrocytes and which acts as neuronal fuel and an intercellular signal.

摘要

钾离子(K)是一种在兴奋性突触活动期间释放的神经元信号,可在培养的星形胶质细胞中产生急性葡萄糖消耗激活,这种现象由钠碳酸氢盐共转运蛋白 NBCe1(SLC4A4)介导。我们通过使用 BCECF 和 FRET 纳米传感器在海马星形胶质细胞中成像神经元活动对 pH、葡萄糖、丙酮酸和乳酸动力学的影响,探索了该机制在脑组织中的相关性。Schaffer 侧支的电刺激在星形胶质细胞中快速激活葡萄糖消耗,同时细胞内丙酮酸增加,并出现双相变化。这些反应被 TTX 阻断,并且在 NBCe1-KO 小鼠制备的组织切片中不存在。用升高的细胞外 K 或 Ba 直接去极化星形胶质细胞模拟了电刺激的代谢效应。我们得出结论,原位星形胶质细胞的糖酵解途径对神经元活动高度敏感,细胞外 K 和 NBCe1 共转运蛋白参与神经元和星形胶质细胞之间的代谢串扰。星形胶质细胞对神经元 K 的糖酵解激活有助于提供足够的乳酸供应,星形胶质细胞释放的代谢物作为神经元燃料和细胞间信号。

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