Ji Weiye, Tang Zhi, Chen Yibing, Wang Chuansen, Tan Changwu, Liao Junbo, Tong Lei, Xiao Gelei
Department of Neurosurgery, Hunan Cancer Hospital and the Affiliated Cancer Hospital of Xiangya School of Medicine, Central South University, Changsha, China.
Department of Neurosurgery, Xiangya Hospital, Central South University, Changsha, China.
Front Mol Neurosci. 2022 Jul 12;15:927479. doi: 10.3389/fnmol.2022.927479. eCollection 2022.
Cerebrospinal fluid (CSF), a colorless liquid that generally circulates from the lateral ventricles to the third and fourth ventricles, provides essential nutrients for brain homeostasis and growth factors during development. As evidenced by an increasing corpus of research, CSF serves a range of important functions. While it is considered that decreased CSF flow is associated to the development of hydrocephalus, it has recently been postulated that motile cilia, which line the apical surfaces of ependymal cells (ECs), play a role in stimulating CSF circulation by cilia beating. Ependymal cilia protrude from ECs, and their synchronous pulsing transports CSF from the lateral ventricle to the third and fourth ventricles, and then to the subarachnoid cavity for absorption. As a result, we postulated that malfunctioning ependymal cilia could disrupt normal CSF flow, raising the risk of hydrocephalus. This review aims to demonstrate the physiological functions of ependymal cilia, as well as how cilia immobility or disorientation causes problems. We also conclude conceivable ways of treatment of hydrocephalus currently for clinical application and provide theoretical support for regimen improvements by investigating the relationship between ependymal cilia and hydrocephalus development.
脑脊液(CSF)是一种无色液体,通常从侧脑室循环至第三和第四脑室,在发育过程中为脑内环境稳定提供必需营养物质及生长因子。越来越多的研究证据表明,脑脊液具有一系列重要功能。虽然人们认为脑脊液流动减少与脑积水的发生有关,但最近有人提出,室管膜细胞(ECs)顶端表面排列的运动性纤毛通过纤毛摆动在刺激脑脊液循环中发挥作用。室管膜纤毛从室管膜细胞伸出,其同步搏动将脑脊液从侧脑室输送至第三和第四脑室,然后输送至蛛网膜下腔进行吸收。因此,我们推测室管膜纤毛功能异常可能会扰乱正常的脑脊液流动,增加脑积水风险。本综述旨在阐述室管膜纤毛的生理功能,以及纤毛不动或方向异常如何引发问题。我们还总结了目前临床应用中可能的脑积水治疗方法,并通过研究室管膜纤毛与脑积水发生之间的关系,为治疗方案的改进提供理论支持。