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Ischemia‐Induced Accumulation of Extracellular Amino Acids in Cerebral Cortex, White Matter, and Cerebrospinal Fluid

 

作者: Nobumitsu Shimada,   Rudolf Graf,   Gerd Rosner,   Wolf‐Dieter Heiss,  

 

期刊: Journal of Neurochemistry  (WILEY Available online 1993)
卷期: Volume 60, issue 1  

页码: 66-71

 

ISSN:0022-3042

 

年代: 1993

 

DOI:10.1111/j.1471-4159.1993.tb05823.x

 

出版商: Blackwell Publishing Ltd

 

关键词: Microdialysis;Amino acids;Potassium activity;Cerebral cortex;White matter;Ischemia

 

数据来源: WILEY

 

摘要:

Abstract:In a global model of brain ischemia, accumulation of amino acids was studied in the extracellular space of the auditory cortex and the internal capsule using microdialysis, and in CSF of halothane anesthetized cats. In both brain regions, blood flow determined by hydrogen clearance decreased below 10 ml/100 g/min after extracranial multiple‐vessel occlusion, and extracellular potassium activity (Ke) measured in the dialysate increased significantly. A delayed rise inKewas observed in CSF. In contrast, ischemic amino acid accumulation differed markedly between the two brain regions investigated. In cortex, transmitter amino acids glutamate, aspartate, and γ‐aminobutyric acid (GABA) rose almost immediately after onset of ischemia, and increased 30‐, 25‐, and 250‐fold, respectively, after 2 h of ischemia. The nontransmitter amino acids taurine, alanine, and serine increased 10‐, seven‐, and fourfold, respectively, whereas glutamine and essential amino acids (valine, phenylalanine, isoleucine, and leucine) increased only 1.5‐fold. In the internal capsule, increases in amino acids, if any, were delayed and much smaller than in cortex. The largest alteration was a fivefold elevation of GABA. In CSF, changes in amino acids were small and comparable to those in the internal capsule. Our results demonstrate that ischemia‐induced extracellular amino acid accumulation is a well localized phenomenon restricted to gray matter structures that possess release and reuptake systems for these substances. We assume that amino acids diffuse slowly into adjacent white matter struct

 

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