Age-related and function-dependent regional alterations of free L- and D-aspartate in postembryonic chick brain.

Q3 Biochemistry, Genetics and Molecular Biology
Gergely Zachar, Tamás Jakó, István Vincze, Zsolt Wagner, Tamás Tábi, Eszter Bálint, Szilvia Mezey, Éva Szökő, András Csillag
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引用次数: 5

Abstract

D-aspartate (D-Asp) modulates adult neural plasticity and embryonic brain development by promoting cell proliferation, survival and differentiation. Here, developmental changes of the excitatory amino acids (EAAs) L-Glu, L-Asp and D-Asp were determined during the first postembryonic days, a time window for early learning, in selected brain regions of domestic chickens after chiral separation and capillary electrophoresis. Extracellular concentration (ECC) of EAAs was measured in microdialysis samples from freely moving chicks. ECC of D-Asp (but not L-EAAs) decreased during the first week of age, with no considerable regional or learning-related variation. ECC of L-Asp and L-Glu (but not of D-Asp) were elevated in the mSt/Ac in response to a rewarding stimulus, suggesting importance of Asp-Glu co-release in synaptic plasticity of basal ganglia. Potassium-evoked release of D-Asp, with a protracted transient, was also demonstrated. D-Asp constitutes greater percentage of total aspartate in the extracellular space than in whole tissue extracts, thus the bulk of D-Asp detected in tissue appears in the extracellular space. Conversely, only a fraction of tissue L-EAAs can be detected in extracellular space. The lack of changes in tissue D-Asp following avoidance learning indicates a tonic, rather than phasic, mechanism in the neuromodulatory action of this amino acid.

胚后鸡脑游离L-和d -天冬氨酸的年龄相关和功能依赖的区域改变。
d -天冬氨酸(D-Asp)通过促进细胞增殖、存活和分化调节成体神经可塑性和胚胎脑发育。本研究通过手性分离和毛细管电泳,测定了家鸡在胚胎后第一天(早期学习的时间窗口)脑区兴奋性氨基酸(EAAs) L-Glu、L-Asp和D-Asp的发育变化。测定了自由活动雏鸡微透析样品中eaa的细胞外浓度(ECC)。D-Asp的ECC(而非L-EAAs)在第1周龄时下降,没有明显的区域差异或与学习相关的差异。在mSt/Ac中,L-Asp和L-Glu(而非D-Asp)的ECC在奖赏刺激下升高,提示Asp-Glu共释放在基底节区突触可塑性中的重要性。钾诱导的D-Asp释放,具有长时间的短暂性,也被证明。D-Asp在细胞外空间中占总天冬氨酸的比例高于整个组织提取物,因此在组织中检测到的大部分D-Asp出现在细胞外空间。相反,只有一小部分组织l - eaa可以在细胞外空间检测到。组织D-Asp在回避学习后缺乏变化表明这种氨基酸的神经调节作用是一种强直性机制,而不是阶段性机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Biologica Hungarica
Acta Biologica Hungarica 生物-生物学
CiteScore
1.40
自引率
0.00%
发文量
0
审稿时长
3 months
期刊介绍: Acta Biologica Hungarica provides a forum for original research works in the field of experimental biology. It covers cytology, functional morphology, embriology, genetics, endocrinology, cellular physiology, plant physiology, neurobiology, ethology and environmental biology with emphasis on toxicology. Publishes book reviews and advertisements.
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