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Virchow-Robin space and aquaporin-4: new insights on an old friend

机译:Virchow-Robin空间和aquaporin-4:对一个老朋友的新见解

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摘要

Recent studies have strongly indicated that the classic circulation model of cerebrospinal fluid (CSF) is no longer valid. The production of CSF is not only dependent on the choroid plexus but also on water flux in the peri-capillary (Virchow Robin) space. Historically, CSF flow through the Virchow Robin space is known as interstitial flow, the physiological significance of which is now fully understood. This article briefly reviews the modern concept of CSF physiology and the Virchow-Robin space, in particular its functionalities critical for central nervous system neural activities. Water influx into the Virchow Robin space and, hence, interstitial flow is regulated by aquaporin-4 (AQP-4) localized in the endfeet of astrocytes, connecting the intracellular cytosolic fluid space of astrocytes and the Virchow Robin space. Interstitial flow has a functionality equivalent to systemic lymphatics, on which clearance of β-amyloid is strongly dependent. Autoregulation of brain blood flow serves to maintain a constant inner capillary fluid pressure, allowing fluid pressure of the Virchow Robin space to regulate regional cerebral blood flow (rCBF) based on AQP-4 gating. Excess heat produced by neural activities is effectively removed from the area of activation by increased rCBF by closing AQP-4 channels. This neural flow coupling (NFC) is likely mediated by heat generated proton channels.
机译:最近的研究强烈表明,经典的脑脊液循环模型(CSF)不再有效。脑脊液的产生不仅取决于脉络丛,而且取决于毛细血管周围(Virchow Robin)空间中的水通量。从历史上看,流经维尔康罗宾空间的CSF流被称为间隙流,其生理意义现已得到充分理解。本文简要回顾了CSF生理学和Virchow-Robin空间的现代概念,特别是其对中枢神经系统神经活动至关重要的功能。水流入Virchow Robin空间,因此,间质液流受星形胶质细胞末端足中的aquaporin-4(AQP-4)调节,连接星形胶质细胞的胞内胞液液空间和Virchow Robin空间。间隙血流具有与全身淋巴管系统相同的功能,β-淀粉样蛋白的清除依赖于系统淋巴管系统。脑血流量的自动调节可保持恒定的内部毛细血管流体压力,从而允许Virchow Robin空间的流体压力基于AQP-4门控来调节局部脑血流量(rCBF)。通过关闭AQP-4通道,增加rCBF可以有效地将神经活动产生的多余热量从激活区域中清除。这种神经流耦合(NFC)可能是由热量产生的质子通道介导的。

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