淋巴系统
神经科学
蛋白质稳态
脉络丛
背景(考古学)
疾病
医学
神经保护
淀粉样β
脑脊液
间隙
淀粉样蛋白(真菌学)
神经退行性变
神经学
认知功能衰退
脑淀粉样血管病
认知
间质液
机制(生物学)
转化研究
生物信息学
血脑屏障
炎症
血浆清除率
动物研究
人脑
作者
Michal Izrael,Orli Miriam Frenkel
摘要
Alzheimer’s disease (AD) has long been viewed primarily as a disorder of abnormal protein accumulation, yet mounting evidence suggests that impaired clearance mechanisms may be critical in driving disease progression. In this review, we propose the concept of the “cerebral clearance cascade” as an integrative framework, describing a dynamic and interconnected system comprising the choroid plexus (CP), cerebrospinal fluid (CSF), interstitial fluid (ISF) dynamics, the glymphatic network, and the blood–brain barrier (BBB). These elements maintain brain proteostasis by regulating the removal of metabolites, neurotoxic proteins, and inflammatory signals and secreting neuroprotective factors. We describe how dysfunction at each node of the cascade contributes to amyloid and tau accumulation, neuroinflammation, vascular pathology, and cognitive decline. While clearance failure has been implicated across several neurodegenerative disorders, here we specifically synthesize evidence in the context of AD and emphasize how disruption of interlinked clearance systems may underlie both the anatomical spread of pathology and clinical heterogeneity. Finally, we outline emerging therapeutic strategies aimed at restoring or enhancing clearance pathways, including plasma and CSF-based interventions, CP-targeted approaches, glymphatic modulation, and BBB-protective strategies. Positioning AD within this broader yet specific “cerebral clearance cascade” perspective deepens our mechanistic understanding and highlights new translational opportunities for disease-modifying therapies.
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