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异氟烷麻醉期间血脑屏障的开放

Opening of the blood-brain barrier during isoflurane anaesthesia.

作者信息

Tétrault Samuel, Chever Oana, Sik Attila, Amzica Florin

机构信息

Centre de recherche de l'Université Laval Robert-Giffard, Quebec, Canada.

出版信息

Eur J Neurosci. 2008 Oct;28(7):1330-41. doi: 10.1111/j.1460-9568.2008.06443.x.

Abstract

In order to produce its desired effect, anaesthesia acts upon neuronal elements by modifying membrane conductances and transmitter interactions. The effect of higher doses of isoflurane, widely used in clinical settings, on the permeability of the blood-brain barrier (BBB) is meanwhile ignored. In this study we investigated the integrity of the BBB during various levels of isoflurane anaesthesia (1% and 3%) in cats by monitoring the extravasation of Evans blue. Simultaneously we measured the electroencephalogram (EEG), with particular emphasis on its direct current (DC) component. High doses of anaesthetic (3%) broke down the BBB in the cortex and thalamus, while milder doses (1%) only opened the BBB in the thalamus. The fluorescent signal of Evans blue was visible over an extravascular length of 23 mum in the cortex and 25 mum in the thalamus, similar to the diffusion of the same dye when the BBB was disrupted with mannitol. The opening of the BBB was associated with (i) a positive DC shift in the EEG measured on the scalp and (ii) an evaluated increase in cerebral volume of 2-2.8%. The opening of the BBB by high doses of isoflurane brings into discussion hitherto unexplored effects of anaesthesia on the brain. The electrophysiological correlate provided by the DC component of the EEG constitutes a promising option for the assessment of the BBB integrity during human anaesthesia.

摘要

为了产生预期效果,麻醉通过改变膜电导和递质相互作用作用于神经元成分。与此同时,临床广泛使用的高剂量异氟烷对血脑屏障(BBB)通透性的影响却被忽视了。在本研究中,我们通过监测伊文思蓝的外渗情况,研究了猫在不同水平异氟烷麻醉(1%和3%)期间血脑屏障的完整性。同时,我们测量了脑电图(EEG),特别关注其直流(DC)成分。高剂量麻醉剂(3%)破坏了皮质和丘脑的血脑屏障,而较低剂量(1%)仅使丘脑的血脑屏障开放。伊文思蓝的荧光信号在皮质血管外23μm长度和丘脑血管外25μm长度可见,类似于用甘露醇破坏血脑屏障时同一染料的扩散情况。血脑屏障的开放与(i)头皮测量的脑电图中直流正向偏移以及(ii)评估的脑容量增加2 - 2.8%相关。高剂量异氟烷导致的血脑屏障开放引发了对麻醉对大脑迄今未被探索的影响的讨论。脑电图直流成分提供的电生理相关性为评估人类麻醉期间血脑屏障完整性提供了一个有前景的选择。

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