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Cerebrospinal fluid hypersecretion in pediatric hydrocephalus

机译:小儿脑积水的脑脊液分泌过多

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Hydrocephalus, despite its heterogeneous causes, is ultimately a disease of disordered CSF homeostasis that results in pathological expansion of the cerebral ventricles. Our current understanding of the pathophysiology of hydrocephalus is inadequate but evolving. Over this past century, the majority of hydrocephalus cases has been explained by functional or anatomical obstructions to bulk CSF flow. More recently, hydrodynamic models of hydrocephalus have emphasized the role of abnormal intracranial pulsations in disease pathogenesis. Here, the authors review the molecular mechanisms of CSF secretion by the choroid plexus epithelium, the most efficient and actively secreting epithelium in the human body, and provide experimental and clinical evidence for the role of increased CSF production in hydrocephalus. Although the choroid plexus epithelium might have only an indirect influence on the pathogenesis of many types of pediatric hydrocephalus, the ability to modify CSF secretion with drugs newer than acetazolamide or furosemide would be an invaluable component of future therapies to alleviate permanent shunt dependence. Investigation into the human genetics of developmental hydrocephalus and choroid plexus hyperplasia, and the molecular physiology of the ion channels and transporters responsible for CSF secretion, might yield novel targets that could be exploited for pharmacotherapeutic intervention.
机译:尽管脑积水的原因多种多样,但最终还是导致脑脊液稳态失调的疾病,导致脑室的病理性扩张。我们目前对脑积水的病理生理学了解不足,但仍在不断发展。在过去的一个世纪中,大多数脑积水病例是由于脑脊液大量流动的功能或解剖学原因引起的。最近,脑积水的流体力学模型强调了颅内异常搏动在疾病发病机理中的作用。在这里,作者回顾了脉络丛上皮分泌脑脊液的分子机制,脉络丛上皮是人体中最有效,最活跃的分泌上皮,并为脑积水增加中脑脊液产生的作用提供了实验和临床证据。尽管脉络丛上皮可能仅对多种类型的小儿脑积水的发病机制具有间接影响,但用比乙酰唑胺或呋塞米更新的药物改变脑脊液分泌的能力将是减轻永久性分流依赖的未来治疗的重要组成部分。对发育性脑积水和脉络丛神经增生的人类遗传学以及负责CSF分泌的离子通道和转运蛋白的分子生理学研究,可能会产生新的靶点,可用于药物治疗干预。

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