体外血脑屏障完整性增强剂的鉴定与研究

Quoc-Viet Duong, Hisham Qosa, A. Depaula, C. Flick, Trista Lebeouf, K. Hamad, Youssef M. Mousa, J. Keller, A. Kaddoumi
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摘要

阿尔茨海默病(AD)以其标志性特征而闻名,例如tau过度磷酸化和β淀粉样蛋白(Aβ)沉积水平升高。脑血管功能障碍也是AD的一个重要特征,包括淀粉样血管病和Aβ通过血脑屏障(BBB)的清除受损。为了寻找可能增强或维持血脑屏障完整性和功能的潜在药物,我们使用我们实验室开发的高通量筛选(HTS)方法筛选Sigma Lopac®1280化合物库。在鉴定hit化合物的过程中,利用bEnd3细胞构建了体外血脑屏障模型单层。如果化合物能够通过减少路西法黄(LY)的渗透来增强单层的完整性,那么它们首先被确定为命中。接下来,对hit化合物对血脑屏障模型功能的影响进行二次筛选。利用同一细胞系,对Aβ的主要转运蛋白和紧密连接蛋白ZO1、Occludin和Claudin-5进行western blot分析。最后进行了Aβ转运研究,测定了hit化合物对Aβ跨膜转运的影响。HTS实验鉴定出3种独特的化合物可以降低LY渗透,表明增强了体外血脑屏障模型的完整性。Western blot分析显示,这些击中的化合物可以改变转运和紧密连接蛋白的表达,表明表型功能增加。此外,hit化合物在该模型中增强了Aβ在单层中的转运。总之,这些命中化合物是进一步在AD动物模型中进行体内研究的有力候选者。
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The Identification and Investigation of In-vitro Blood-Brain Barrier Integrity Enhancers
Alzheimer's disease (AD) is known for its hallmark features such as increased levels of tau hyperphosphorylation and amyloid-beta (Aβ) deposition. Cerebral vascular dysfunction constitutes an important feature of AD as well, which includes amyloid angiopathy and impaired clearance of Aβ across the blood-brain barrier (BBB). In the search for potential drugs that may enhance or maintain the BBB integrity and function, we screened the Sigma Lopac®1280 compound library using a high-throughput screening (HTS) assay developed in our laboratory.In the process of identifying a hit compound, an in-vitro BBB model monolayer utilizing bEnd3 cells was constructed. Compounds were first identified as hits if they were able to enhance the monolayer's integrity by decreasing Lucifer Yellow (LY) permeation. Next, hit compounds were secondary screened for their effect on BBB model function. Utilizing the same cell line, western blot analysis for major transport proteins of Aβ and the tight junction proteins ZO1, Occludin, and Claudin-5 was performed. Finally Aβ transport study was conducted to measure the effect of hit compounds on Aβ transport across the membrane.The HTS assay identified 3 unique compounds that decreased LY permeation, indicating enhancement of the in-vitro BBB model integrity. Western blot analysis showed these hit compounds to deferentially alter transport and tight junction protein expression indicating increased phenotypic function. In addition, hit compounds enhanced the Aβ transport across the monolayer in this model. In conclusion, these hit compounds are compelling candidates for further in vivo investigation in AD animal models.
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