Hayden Melvin Ray
University of Missouri, School of Medicine, Columbia, Missouri, USA.
Histol Histopathol. 2024 Dec;39(12):1565-1586. doi: 10.14670/HH-18-792. Epub 2024 Jul 10.
Multiple injurious stimuli to the brain's endothelium results in brain endothelial cell activation and dysfunction (BECact/dys) with upregulation of inflammatory signaling cascades and a decrease in bioavailable nitric oxide respectively. These injurious stimuli initiate a brain injury and a response to injury wound healing genetically programed cascade of events, which result in cellular remodeling of the neurovascular unit and blood-brain barrier with increased inflammation and permeability. These remodeling changes also include the perivascular spaces that become dilated to form enlarged perivascular spaces (EPVS) that may be identified noninvasively by magnetic resonance imaging. These EPVS are associated with and considered to be a biomarker for cerebral small vessel disease (SVD) and a dysfunctional glymphatic system with impaired removal of neurotoxic waste, which ultimately results in neurodegeneration with impaired cognition and dementia. The penultimate section discusses the understudied role of venous cerebral circulation in relation to EPVS, SVD, and the vascular contribution to cognitive impairment (VCID). The focus of this review will be primarily on BEC that associates with and contributes to the development of EPVS, SVD, and impaired glymphatic system efflux. Importantly, BEC may be a key piece of the puzzle to unlock this complicated story of EPVS and SVD. Multiple transmission electron micrographs and illustrations will be utilized to depict anatomical ultrastructure and allow for the discussion of multiple functional molecular cascades.
对脑内皮细胞的多种损伤性刺激分别导致脑内皮细胞激活和功能障碍(BECact/dys),炎症信号级联上调和生物可利用一氧化氮减少。这些损伤性刺激引发脑损伤以及对损伤伤口愈合的基因编程级联反应,导致神经血管单元和血脑屏障的细胞重塑,炎症和通透性增加。这些重塑变化还包括血管周围间隙扩张形成扩大的血管周围间隙(EPVS),可通过磁共振成像进行无创识别。这些EPVS与脑小血管疾病(SVD)相关,并被认为是其生物标志物,以及与功能失调的类淋巴系统相关,神经毒性废物清除受损,最终导致认知功能受损和痴呆的神经退行性变。倒数第二部分讨论了脑静脉循环在EPVS、SVD以及血管对认知障碍(VCID)的影响方面研究较少的作用。本综述的重点将主要放在与EPVS、SVD和类淋巴系统流出受损的发展相关并起作用的脑内皮细胞上。重要的是,脑内皮细胞可能是解开这个关于EPVS和SVD复杂故事的关键一环。将使用多张透射电子显微镜照片和插图来描绘解剖超微结构,并讨论多个功能分子级联反应。