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首页> 外文期刊>NeuroImage >Halogenated volatile anesthetics alter brain metabolism as revealed by proton magnetic resonance spectroscopy of mice in vivo.
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Halogenated volatile anesthetics alter brain metabolism as revealed by proton magnetic resonance spectroscopy of mice in vivo.

机译:如小鼠体内质子磁共振波谱所揭示的,卤代挥发性麻醉剂改变了大脑的代谢。

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Halogenated volatile anesthetics (HVA) are widely used in medicine and research but their effects on brain metabolism in intact organisms are still largely unknown. Here, localized proton magnetic resonance spectroscopy (MRS) of anesthetized mice was applied to evaluate HVA effects on cerebral metabolites in vivo. Experimental protocols combined different concentrations of isoflurane, halothane, sevoflurane, and desflurane with known modulators of adrenergic, GABAergic, and glutamatergic neurotransmission. As a most striking finding, brain lactate increased in individual mice from 1.0 ± 0.6 mM (awake state) to 6.2 ± 1.5 mM (1.75% isoflurane). In addition, relative to total creatine, there were significant isoflurane-induced increases of alanine by 111%, GABA by 20%, choline-containing compounds by 20%, and myo-inositol by 10% which were accompanied by significant decreases of glucose by 51% and phosphocreatine by 9%. The elevation of lactate was most pronounced in the striatum. The HVA effects correlated with the respective minimal alveolar concentrations and were mostly reversible within minutes. The observed alterations are best explained by an HVA-induced stimulation of adrenergic pathways in conjunction with an inhibition of the respiratory chain. Apart from casting new light on cerebral energy metabolism, the present results challenge brain studies of HVA-anesthetized animals.
机译:卤代挥发性麻醉剂(HVA)在医学和研究中被广泛使用,但是它们对完整生物体中脑代谢的影响仍然未知。在这里,麻醉小鼠的局部质子磁共振波谱(MRS)用于评估HVA对体内脑代谢产物的影响。实验方案将不同浓度的异氟烷,氟烷,七氟醚和地氟醚与已知的肾上腺素能,GABA能和谷氨酸能神经传递调节剂结合在一起。最惊人的发现是,每只小鼠的大脑乳酸从1.0±0.6 mM(清醒状态)增加到6.2±1.5 mM(1.75%异氟烷)。此外,相对于总肌酸,异氟烷诱导的丙氨酸显着增加111%,GABA增加20%,含胆碱的化合物增加20%,肌醇增加10%,同时葡萄糖显着降低。 51%和磷酸肌酸9%。纹状体中乳酸的升高最为明显。 HVA效应与各自的最低肺泡浓度相关,并且在数分钟内可逆。观察到的变化最好通过HVA诱导的肾上腺素途径刺激以及呼吸链抑制来解释。除了为脑能量代谢提供新思路外,目前的结果还挑战了HVA麻醉动物的脑研究。

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