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特发性颅内高压:静脉-淋巴连接。

Idiopathic intracranial hypertension: The veno glymphatic connections.

机构信息

From the Division of Neuroradiology (S.L., P.N., M.H., T.K., V.M.-P.), Department of Medical Imaging, Toronto Western Hospital, University Health Network, Canada; Division of Neuroradiology (S.L.), Groupe Hospitalier Pitié Salpêtrière-Université Paris Sorbonne, France; Division of Neurosurgery (I.R., M.H., V.M.-P.), Department of Surgery, Toronto Western Hospital, University Health Network, University of Toronto; and Krembil Neuroscience Center (I.R.), University Health Network, Toronto, Canada.

出版信息

Neurology. 2018 Sep 11;91(11):515-522. doi: 10.1212/WNL.0000000000006166.

Abstract

The recent discoveries of the glymphatic and lymphatic systems of the brain have helped advance our understanding of CSF physiology and may allow new insights in the understanding of idiopathic intracranial hypertension (IIH). The clinical and radiologic presentations of IIH appear to be related to congestion of the glymphatic system associated with an overflow of the lymphatic CSF outflow pathway. By revisiting the role of "vascular arachnoid granulations" in the brain, we hypothesize that an initial impairment of the transport of interstitial fluid from the glymphatic system to the venous blood of the dural sinuses may trigger the hydrodynamic cascade of IIH. Furthermore, we speculate that, similar to other water-exchange systems in the brain, a specific subtype of aquaporin is involved in this transport. This theory may eventually help to provide an underlying explanation for IIH and its associated conditions, since in most of them, the expression of several aquaporins is altered.

摘要

大脑中的糖质淋系统和淋巴系统的最新发现,有助于我们加深对 CSF 生理学的理解,并可能为特发性颅内高压(IIH)的理解提供新的见解。IIH 的临床和影像学表现似乎与糖质淋系统的充血有关,这与淋巴 CSF 流出途径的溢出有关。通过重新审视“蛛网膜血管颗粒”在大脑中的作用,我们假设糖质淋系统向硬脑膜窦静脉血中间质液转运的初始障碍可能引发 IIH 的流体动力学级联反应。此外,我们推测,类似于大脑中的其他水交换系统,一种特定类型的水通道蛋白参与了这种转运。该理论最终可能有助于为 IIH 及其相关疾病提供潜在的解释,因为在大多数情况下,几种水通道蛋白的表达都发生了改变。

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