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全身麻醉抑制“脑淋巴系统”的活性。

General Anesthesia Inhibits the Activity of the "Glymphatic System".

机构信息

Normandie Univ, UNICAEN, INSERM, INSERM UMR-S U1237, "Physiopathology and Imaging of Neurological Disorders" PhIND, 14000 Caen, France.

CHU Caen, Department of Anesthesiology and Critical Care Medicine, CHU Caen Côte de Nacre, 14000 Caen, France.

出版信息

Theranostics. 2018 Jan 1;8(3):710-722. doi: 10.7150/thno.19154. eCollection 2018.

Abstract

According to the "glymphatic system" hypothesis, brain waste clearance is mediated by a continuous replacement of the interstitial milieu by a bulk flow of cerebrospinal fluid (CSF). Previous reports suggested that this cerebral CSF circulation is only active during general anesthesia or sleep, an effect mediated by the dilatation of the extracellular space. Given the controversies regarding the plausibility of this phenomenon and the limitations of currently available methods to image the glymphatic system, we developed original whole-brain imaging methods to investigate the effects of general anesthesia on the brain CSF circulation. We used magnetic resonance imaging (MRI) and near-infrared fluorescence imaging (NIRF) after injection of a paramagnetic contrast agent or a fluorescent dye in the cisterna magna, in order to investigate the impact of general anesthesia (isoflurane, ketamine or ketamine/xylazine) on the intracranial CSF circulation in mice. imaging allowed us to image CSF flow in awake and anesthetized mice and confirmed the existence of a brain-wide CSF circulation. Contrary to what was initially thought, we demonstrated that the parenchymal CSF circulation is mainly active during wakefulness and significantly impaired during general anesthesia. This effect was especially significant when high doses of anesthetic agent were used (3% isoflurane). These results were consistent across the different anesthesia regimens and imaging modalities. Moreover, we failed to detect a significant change in the brain extracellular water volume using diffusion weighted imaging in awake and anesthetized mice. The parenchymal diffusion of small molecular weight compounds from the CSF is active during wakefulness. General anesthesia has a negative impact on the intracranial CSF circulation, especially when using a high dose of anesthetic agent.

摘要

根据“脑淋巴系统”假说,脑内废物的清除是通过脑脊髓液(CSF)的大量流动不断置换间质液来介导的。先前的报告表明,这种大脑 CSF 循环仅在全身麻醉或睡眠期间活跃,这是由细胞外空间扩张介导的。鉴于人们对这种现象的合理性存在争议,以及目前用于成像脑淋巴系统的方法存在局限性,我们开发了原始的全脑成像方法来研究全身麻醉对脑 CSF 循环的影响。我们在向脑池内注射顺磁对比剂或荧光染料后,使用磁共振成像(MRI)和近红外荧光成像(NIRF),以研究全身麻醉(异氟烷、氯胺酮或氯胺酮/甲苯噻嗪)对小鼠颅内 CSF 循环的影响。成像使我们能够在清醒和麻醉的小鼠中观察 CSF 流动,并证实存在广泛的脑 CSF 循环。与最初的想法相反,我们证明实质 CSF 循环主要在觉醒时活跃,并在全身麻醉时显著受损。当使用高剂量麻醉剂(3%异氟烷)时,这种效果尤其显著。这些结果在不同的麻醉方案和成像方式中是一致的。此外,我们在清醒和麻醉的小鼠中使用扩散加权成像未能检测到脑细胞外水容积的显著变化。小分子化合物从 CSF 向脑实质的扩散在觉醒时是活跃的。全身麻醉对颅内 CSF 循环有负面影响,尤其是在使用高剂量麻醉剂时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c68/5771087/c6bf3289ecc8/thnov08p0710g001.jpg

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