Physiology Department, Faculty of Medicine, National Autonomous University of Mexico (Universidad Nacional Autónoma de México, UNAM), 04510, Mexico City, Mexico.
Graduate Program in Biological Sciences, UNAM, 04510, Mexico City, Mexico.
Amino Acids. 2021 Oct;53(10):1597-1607. doi: 10.1007/s00726-021-03070-z. Epub 2021 Aug 30.
Amino acid neurotransmitters are responsible for many physiological and pathological processes, and their cerebral concentrations respond to external influences such as the light-dark cycle and to the synthesis, release, and recapture rhythms and form part of the biochemical relationships derived from excitatory-inhibitory (E/I), glutamine-glutamate sum (GLX), glutamatergic processing (glutamine-glutamate ratio) and excitotoxic indexes. The changes in these variables during a 24-h period (1 day) are important because they allow organisms to adapt to external stimuli and form part of physiological processes. Under pathological conditions, the damage produced by acute events may depend on diurnal variations. Therefore, it is important to analyze the extracellular levels of amino acids as well as the above-mentioned indexes over a 24-h period. We focused on determining the cerebrospinal fluid levels of different amino acid neurotransmitters, and the E/I, GLX, glutamatergic processing and excitotoxic indexes, determined by microdialysis over a 24-h cycle. Our results showed significant changes during the 24-h light/dark cycle. Specifically, we found increments in the levels of glutamate (325%), GABA (550%), glutamine (300%), glycine (194%), alanine (304%) and the GLX index (263%) throughout the day, and the maximum levels of glutamate, glutamine, glycine, and alanine were obtained during the last period of the light period. In conclusion, the concentration of some amino acid neurotransmitters and the GLX index show variations depending on the light-dark cycle.
氨基酸神经递质负责许多生理和病理过程,其脑浓度对外界影响(如光-暗周期)、合成、释放和再摄取节律作出反应,并构成兴奋性抑制(E/I)、谷氨酰胺-谷氨酸总和(GLX)、谷氨酸处理(谷氨酰胺-谷氨酸比)和兴奋性毒性指数等生化关系的一部分。这些变量在 24 小时(1 天)期间的变化很重要,因为它们使生物体能够适应外部刺激,并构成生理过程的一部分。在病理条件下,急性事件产生的损害可能取决于昼夜变化。因此,分析氨基酸的细胞外水平以及上述指标在 24 小时期间的变化非常重要。我们专注于通过微透析在 24 小时周期内确定不同氨基酸神经递质以及 E/I、GLX、谷氨酸处理和兴奋性毒性指数的脑脊液水平。我们的结果显示在 24 小时光/暗周期内发生了显著变化。具体来说,我们发现谷氨酸(325%)、GABA(550%)、谷氨酰胺(300%)、甘氨酸(194%)和丙氨酸(304%)的水平全天增加,并且谷氨酸、谷氨酰胺、甘氨酸和丙氨酸的最高水平在光期的最后阶段获得。总之,一些氨基酸神经递质和 GLX 指数的浓度根据光-暗周期而变化。