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人类视觉皮层中神经刺激与N-乙酰天门冬氨酸代谢之间的动态关系:NAA在视觉刺激过程中作为分子水泵发挥作用的证据。

Dynamic relationship between neurostimulation and N-acetylaspartate metabolism in the human visual cortex: evidence that NAA functions as a molecular water pump during visual stimulation.

作者信息

Baslow Morris H, Hrabe Jan, Guilfoyle David N

机构信息

Center for Neurochemistry, Nathan S. Kline Institute for Psychiatric Research, 140 Old Orangeburg Road, Orangeburg, NY 10962, USA.

出版信息

J Mol Neurosci. 2007;32(3):235-45. doi: 10.1007/s12031-007-0049-9.

Abstract

N-acetyl-l-aspartic acid (NAA), an amino acid synthesized and stored primarily in neurons in the brain, has been proposed to be a molecular water pump (MWP) whose function is to rapidly remove water from neurons against a water gradient. In this communication, we describe the results of a functional (1)H proton magnetic resonance spectroscopy (fMRS) study, and provide evidence that in the human visual cortex, over a 10-min period of visual stimulation, there are stimulation-induced graded changes in the NAA MRS signal from that of a preceding 10-min baseline period with a decline in the NAA signal of 13.1% by the end of the 10-min stimulation period. Upon cessation of visual stimulation, the NAA signal gradually increases during a 10-min recovery period and once again approaches the baseline level. Because the NAA MRS signal reflects the NAA concentration, these changes indicate rapid focal changes in its concentration, and transient changes in its intercompartmental metabolism. These include its rates of synthesis and efflux from neurons and its hydrolysis by oligodendrocytes. During stimulation, the apparent rate of NAA efflux and hydrolysis increased 14.2 times, from 0.55 to 7.8 micromol g(-1) h(-1). During recovery, the apparent rate of synthesis increased 13.3 times, from 0.55 to 7.3 micromol g(-1) h(-1). The decline in the NAA signal during stimulation suggests that a rapid increase in the rate of NAA-obligated water release to extracellular fluid (ECF) is the initial and seminal event in response to neurostimulation. It is concluded that the NAA metabolic cycle in the visual cortex is intimately linked to rates of neuronal signaling, and that the functional cycle of NAA is associated with its release to ECF, thus supporting the hypothesis that an important function of the NAA metabolic cycle is that of an efflux MWP.

摘要

N-乙酰-L-天冬氨酸(NAA)是一种主要在大脑神经元中合成和储存的氨基酸,有人提出它是一种分子水泵(MWP),其功能是逆着水梯度快速从神经元中去除水分。在本通讯中,我们描述了一项功能型(1)H质子磁共振波谱(fMRS)研究的结果,并提供证据表明,在人类视觉皮层中,在10分钟的视觉刺激期间,NAA磁共振波谱信号相对于之前10分钟的基线期存在刺激诱导的分级变化,在10分钟刺激期结束时,NAA信号下降了13.1%。视觉刺激停止后,NAA信号在10分钟的恢复期逐渐增加,并再次接近基线水平。由于NAA磁共振波谱信号反映了NAA浓度,这些变化表明其浓度的快速局部变化以及其细胞间代谢的瞬时变化。这些变化包括其从神经元的合成和流出速率以及少突胶质细胞对其的水解。在刺激期间,NAA流出和水解的表观速率增加了14.2倍,从0.55微摩尔每克每小时增加到7.8微摩尔每克每小时。在恢复期间,合成的表观速率增加了13.3倍,从0.55微摩尔每克每小时增加到7.3微摩尔每克每小时。刺激期间NAA信号的下降表明,NAA结合水释放到细胞外液(ECF)的速率迅速增加是对神经刺激的初始和关键事件。得出的结论是,视觉皮层中的NAA代谢循环与神经元信号传导速率密切相关,并且NAA的功能循环与其释放到ECF有关,从而支持了NAA代谢循环的一个重要功能是作为流出MWP的假设。

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