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激活的视觉皮层中神经活动、葡萄糖和乳酸之间的神经代谢耦合。

Neurometabolic coupling between neural activity, glucose, and lactate in activated visual cortex.

作者信息

Li Baowang, Freeman Ralph D

机构信息

Group in Vision Science, School of Optometry, Helen Wills Neuroscience Institute, University of California, Berkeley, California, USA.

出版信息

J Neurochem. 2015 Nov;135(4):742-54. doi: 10.1111/jnc.13143. Epub 2015 May 29.

Abstract

Neural activity is closely coupled with energy metabolism but details of the association remain to be identified. One basic area involves the relationships between neural activity and the main supportive substrates of glucose and lactate. This is of fundamental significance for the interpretation of non-invasive neural imaging. Here, we use microelectrodes with high spatial and temporal resolution to determine simultaneous co-localized changes in glucose, lactate, and neural activity during visual activation of the cerebral cortex in the cat. Tissue glucose and lactate concentration levels are measured with electrochemical microelectrodes while neural spiking activity and local field potentials are sampled by a microelectrode. These measurements are performed simultaneously while neurons are activated by visual stimuli of different contrast levels, orientations, and sizes. We find immediate decreases in tissue glucose concentration and simultaneous increases in lactate during neural activation. Both glucose and lactate signals return to their baseline levels instantly as neurons cease firing. No sustained changes or initial dips in glucose or lactate signals are elicited by visual stimulation. However, co-localized measurements of cerebral blood flow and neural activity demonstrate a clear delay in the cerebral blood flow signal such that it does not correlate temporally with the neural response. These results provide direct real-time evidence regarding the coupling between co-localized energy metabolism and neural activity during physiological stimulation. They are also relevant to a current question regarding the role of lactate in energy metabolism in the brain during neural activation. Dynamic changes in energy metabolites can be measured directly with high spatial and temporal resolution by use of enzyme-based microelectrodes. Here, to examine neuro-metabolic coupling during brain activation, we use combined microelectrodes to simultaneously measure extracellular glucose, lactate, and neural responses in the primary visual cortex to visual stimulation. We demonstrate rapid decreases in glucose and increases in lactate during neural activation. Changes in glucose and lactate signals are transient and closely coupled with neuronal firing.

摘要

神经活动与能量代谢紧密相关,但这种关联的细节仍有待确定。一个基本领域涉及神经活动与葡萄糖和乳酸这两种主要支持底物之间的关系。这对于解释无创神经成像具有根本意义。在此,我们使用具有高空间和时间分辨率的微电极来确定猫大脑皮层视觉激活期间葡萄糖、乳酸和神经活动的同时共定位变化。组织葡萄糖和乳酸浓度水平用电化学微电极测量,而神经放电活动和局部场电位则由微电极采样。这些测量在神经元被不同对比度水平、方向和大小的视觉刺激激活时同时进行。我们发现神经激活期间组织葡萄糖浓度立即下降,同时乳酸增加。随着神经元停止放电,葡萄糖和乳酸信号都立即恢复到基线水平。视觉刺激不会引起葡萄糖或乳酸信号的持续变化或初始下降。然而,脑血流量与神经活动的共定位测量显示脑血流量信号有明显延迟,以至于它在时间上与神经反应不相关。这些结果提供了关于生理刺激期间共定位能量代谢与神经活动之间耦合的直接实时证据。它们也与当前关于乳酸在神经激活期间大脑能量代谢中的作用的问题相关。通过使用基于酶的微电极,可以以高空间和时间分辨率直接测量能量代谢物的动态变化。在此,为了研究大脑激活期间的神经代谢耦合,我们使用组合微电极同时测量初级视觉皮层对视觉刺激的细胞外葡萄糖、乳酸和神经反应。我们证明神经激活期间葡萄糖迅速减少,乳酸增加。葡萄糖和乳酸信号的变化是短暂的,并且与神经元放电紧密相关。

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Brain lactate metabolism: the discoveries and the controversies.脑乳酸代谢:发现与争议。
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In vivo evidence for lactate as a neuronal energy source.在体证据表明乳酸是神经元的能量来源。
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