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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Chloramphenicol decreases brain glucose utilization and modifies the sleep-wake cycle architecture in rats.
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Chloramphenicol decreases brain glucose utilization and modifies the sleep-wake cycle architecture in rats.

机译:氯霉素可降低脑葡萄糖的利用并改变大鼠的睡眠-觉醒周期结构。

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Abstract We studied the effects of chloramphenicol on brain glucose utilization and sleep-wake cycles in rat. After slightly anaesthetized animals were injected with [(18)F]fluoro-2-deoxy-d-glucose, we acquired time-concentration curves from three radiosensitive beta microprobes inserted into the right and left frontal cortices and the cerebellum, and applied a three-compartment model to calculate the cerebral metabolic rates for glucose. The sleep-wake cycle architecture was analysed in anaesthetic-free rats by recording electroencephalographic and electromyographic signals. Although chloramphenicol is a well-established inhibitor of oxidative phosphorylation, no compensatory increase in glucose utilization was detected in frontal cortex. Instead, chloramphenicol induced a significant 23% decrease in the regional cerebral metabolic rate for glucose. Such a metabolic response indicates a potential mismatch between energy supply and neuronal activity induced by chloramphenicol administration. Regarding sleep-wake states, chloramphenicol treatment was followed by a 64% increase in waking, a 20% decrease in slow-wave sleep, and a marked 59% loss in paradoxical sleep. Spectral analysis of the electroencephalogram indicates that chloramphenicol induces long-lasting modifications of delta-band power during slow-wave sleep.
机译:摘要我们研究了氯霉素对大鼠脑葡萄糖利用和睡眠-觉醒周期的影响。在给麻醉后的动物注射[(18)F]氟-2-脱氧-d-葡萄糖后,我们从插入到左右额叶皮层和小脑的三个放射敏感性β微探针获得了时间-浓度曲线,并应用了三个室模型来计算葡萄糖的脑代谢率。通过记录脑电图和肌电图信号,在无麻醉的大鼠中分析睡眠-觉醒周期结构。尽管氯霉素是一种公认​​的氧化磷酸化抑制剂,但额叶皮层中未发现葡萄糖利用的补偿性增加。相反,氯霉素导致葡萄糖的局部脑代谢率显着降低23%。这样的代谢反应表明能量供应和由氯霉素引起的神经元活动之间的潜在失配。关于睡眠-清醒状态,氯霉素治疗后醒来增加64%,慢波睡眠减少20%,反常睡眠明显减少59%。脑电图的频谱分析表明,氯霉素在慢波睡眠过程中会引起三角带能量的持久变化。

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