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去极化期间海马切片中的能量代谢与葡萄糖代谢:31P和13C核磁共振研究

Energetics and glucose metabolism in hippocampal slices during depolarization: 31P and 13C NMR studies.

作者信息

Ting Y L, Degani H

机构信息

Chemical Physics Department, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Brain Res. 1993 Apr 30;610(1):16-23. doi: 10.1016/0006-8993(93)91211-a.

Abstract

Alterations in the energy state and glucose metabolism of hippocampal slices exposed to high extracellular K+ ([K+]o) were monitored using 31P and 13C NMR spectroscopy. Slices were perfused (37 degrees C) continuously within the NMR spectrometer and tissue viability and metabolic activity were maintained for at least 18 h. 31P spectra showed that upon exposure to 40 mM [K+]o, there was a rapid compromise in tissue energetics where, by 15 min of exposure, the ratio of phosphocreatine and of nucleoside triphosphates to inorganic phosphate (extra- and intracellular) decreased 30-50% relative to pre-exposure values. This was accompanied by a pH decrease of approximately 0.3 units in both the intra and extracellular environments. A lower but stable energy state was reached at approximately 15 min of exposure and full recovery was observed by 30 min following the removal of high [K+]o. Utilizing 13C NMR in the presence of [1-13C]glucose, an immediate and dramatic acceleration in tissue glycolysis was observed when slices were exposed to 40 mM [K+]o: the rates of both [1-13C]glucose consumption and [3-13C] acetate synthesis increased by approximately 20 fold. By 60 min following the removal of high-[K+]o, pre-exposure rates of tissue glycolysis were restored. The results indicated that the rapid and dramatic induction of energy production via glycolysis probably accounts for the ability of hippocampal slices to maintain viability and recuperate from brief but intense depolarizing conditions which are reminiscent of seizure states in vivo.

摘要

使用31P和13C核磁共振波谱监测暴露于高细胞外钾离子浓度([K+]o)的海马切片的能量状态和葡萄糖代谢变化。切片在核磁共振波谱仪内持续灌注(37摄氏度),组织活力和代谢活性维持至少18小时。31P波谱显示,暴露于40 mM [K+]o时,组织能量学迅速受损,暴露15分钟时,磷酸肌酸以及核苷三磷酸与无机磷酸盐(细胞外和细胞内)的比率相对于暴露前值降低30 - 50%。这伴随着细胞内和细胞外环境中pH值下降约0.3个单位。暴露约15分钟时达到较低但稳定的能量状态,去除高[K+]o后30分钟观察到完全恢复。在存在[1-13C]葡萄糖的情况下利用13C核磁共振波谱,当切片暴露于40 mM [K+]o时,观察到组织糖酵解立即且显著加速:[1-13C]葡萄糖消耗率和[3-13C]乙酸盐合成率均增加约20倍。去除高[K+]o后60分钟,组织糖酵解的暴露前速率得以恢复。结果表明,通过糖酵解快速且显著地诱导能量产生可能解释了海马切片维持活力以及从短暂但强烈的去极化状态(类似于体内癫痫发作状态)恢复的能力。

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