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L-蛋氨酸亚砜亚胺对谷氨酰胺合成酶抑制作用的区域差异:家兔脑内的微透析研究

Regional differences in glutamine synthetase inhibition by L-methionine sulfoximine: a microdialysis study in the rabbit brain.

作者信息

Böttcher T, Goiny M, Bering J, Domhof S, Nau R, Ungerstedt U

机构信息

Department of Physiology and Pharmacology, Karolinska Institute, Stockholm, Sweden.

出版信息

Exp Brain Res. 2003 May;150(2):194-200. doi: 10.1007/s00221-003-1401-0. Epub 2003 Mar 29.

Abstract

Elevated levels of glutamate, an endogenous excitatory amino acid, contribute to the development of neuronal injury in various cerebral diseases. Using a microdialysis approach, the response of extracellular levels of amino acids and metabolic parameters to glutamine synthetase inhibition by l-methionine sulfoximine was monitored simultaneously in the hippocampal formation and in the frontal cortex of the rabbit brain. In the hippocampal formation the decrease of glutamine levels during l-methionine sulfoximine treatment was more pronounced than in the frontal cortex, and was accompanied by a delayed decline of extracellular glutamate concentrations. Furthermore, l-methionine sulfoximine diminished the increase of lactate and pyruvate concentrations in the hippocampal formation, but not in the frontal cortex. Neither l-methionine sulfoximine treatment nor microdialysis probe insertion caused neuronal apoptosis, as measured by in situ tailing. An impaired function of hippocampal astrocyte glutamate uptake mechanisms or a higher functional capacity of the cortical glutamine synthetase may be possible explanations for the differences demonstrated. The present data are in accordance with regional differences in glutamine synthetase activation during bacterial meningitis and may explain, in part, the higher susceptibility of certain areas of the hippocampal formation (i.e., the dentate gyrus) to neuronal injury.

摘要

谷氨酸是一种内源性兴奋性氨基酸,其水平升高会导致多种脑部疾病中神经元损伤的发展。采用微透析方法,在兔脑海马结构和额叶皮质中同时监测了氨基酸细胞外水平和代谢参数对L-蛋氨酸亚砜胺抑制谷氨酰胺合成酶的反应。在海马结构中,L-蛋氨酸亚砜胺处理期间谷氨酰胺水平的降低比额叶皮质中更明显,并且伴随着细胞外谷氨酸浓度的延迟下降。此外,L-蛋氨酸亚砜胺减少了海马结构中乳酸和丙酮酸浓度的增加,但在额叶皮质中没有。通过原位末端标记法测量,L-蛋氨酸亚砜胺处理和微透析探针插入均未引起神经元凋亡。海马星形胶质细胞谷氨酸摄取机制功能受损或皮质谷氨酰胺合成酶的功能能力较高可能是所显示差异的可能解释。目前的数据与细菌性脑膜炎期间谷氨酰胺合成酶激活的区域差异一致,并且可能部分解释了海马结构某些区域(即齿状回)对神经元损伤的更高易感性。

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