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通过微透析测量处理对大脑不同区域细胞外谷氨酸和其他氨基酸水平的影响。

Effects of handling on extracellular levels of glutamate and other amino acids in various areas of the brain measured by microdialysis.

作者信息

Timmerman W, Cisci G, Nap A, de Vries J B, Westerink B H

机构信息

Department of Medicinal Chemistry, Ant. Deusinglaan 1, 9713 AV, Groningen, Netherlands.

出版信息

Brain Res. 1999 Jul 3;833(2):150-60. doi: 10.1016/s0006-8993(99)01538-3.

Abstract

Upon a physiological and pharmacological challenge, the responsiveness of extracellular glutamate levels in the prefrontal cortex, ventral tegmental area and locus coeruleus were studied using microdialysis. A 10-min handling period was used as a mild stressful stimulus. In all three brain areas, handling induced an immediate and short-lasting increase in glutamate levels, but the responses were highly variable. Only in the ventral tegmental area and the locus coeruleus, but not in the prefrontal cortex, the increases were significantly different from basal values. In rats with relatively low basal glutamate levels, both in the ventral tegmental area and locus coeruleus, handling had a more pronounced effect on glutamate levels than in rats with high basal levels, although in some rats with relatively low basal levels of glutamate, handling had hardly any effect. Potassium stimulation also induced variable responses in all three brain areas. Again, relatively low basal glutamate levels were more responsive to the stimulation than higher basal values, although there appeared to be a lower limit. These data suggest that relatively high basal levels contain sources of glutamate that mask the neuronal pool of glutamate and are therefore less responsive to physiological or pharmacological stimulation. However, this interpretation was questioned by the findings that basal levels and handling-induced increases in glutamate levels were found to be (partly) TTX-independent. As carrier-mediated release as a possible non-exocytotic release mechanism has only been described in vivo under pathological conditions, it seems plausible to ascribe TTX-independent glutamate increases to aspecific, non-neuronal processes. This interpretation was further supported by the observation that in all three brain areas, other amino acids, i.e., aspartate, taurine, glutamine, serine, alanine and glycine also increased upon handling in a very similar way as glutamate did. Thus, these results question a direct correlation between stimulated extracellular glutamate levels induced by handling and measured by microdialysis and glutamatergic neurotransmission.

摘要

在生理和药理学刺激下,使用微透析技术研究了前额叶皮质、腹侧被盖区和蓝斑中细胞外谷氨酸水平的反应性。将10分钟的处理期用作轻度应激刺激。在所有三个脑区中,处理均引起谷氨酸水平立即且短暂的升高,但反应高度可变。仅在腹侧被盖区和蓝斑中,而非前额叶皮质中,谷氨酸水平的升高与基础值有显著差异。在腹侧被盖区和蓝斑中基础谷氨酸水平相对较低的大鼠中,处理对谷氨酸水平的影响比基础水平高的大鼠更为显著,尽管在一些基础谷氨酸水平相对较低的大鼠中,处理几乎没有任何影响。钾刺激在所有三个脑区中也诱导了可变的反应。同样,相对较低的基础谷氨酸水平对刺激的反应性高于较高的基础值,尽管似乎存在下限。这些数据表明,相对较高的基础水平包含掩盖谷氨酸神经元池的谷氨酸来源,因此对生理或药理学刺激的反应性较低。然而,这一解释受到了以下发现的质疑:基础水平和处理诱导的谷氨酸水平升高被发现(部分)与河豚毒素(TTX)无关。由于载体介导的释放作为一种可能的非胞吐释放机制仅在病理条件下在体内被描述过,将与TTX无关的谷氨酸增加归因于非特异性的非神经元过程似乎是合理的。在所有三个脑区中,其他氨基酸,即天冬氨酸、牛磺酸、谷氨酰胺、丝氨酸、丙氨酸和甘氨酸在处理时也以与谷氨酸非常相似的方式增加,这一观察结果进一步支持了这一解释。因此,这些结果质疑了通过微透析测量的处理诱导的细胞外谷氨酸水平升高与谷氨酸能神经传递之间的直接相关性。

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