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用于评估成年. 血脑屏障完整性的染料排除法协议的优化和技术考虑因素

Optimization and Technical Considerations for the Dye-Exclusion Protocol Used to Assess Blood-Brain Barrier Integrity in Adult .

机构信息

Program in Neuroscience and Behavior, Mount Holyoke College, South Hadley, MA 01075, USA.

出版信息

Int J Mol Sci. 2023 Jan 18;24(3):1886. doi: 10.3390/ijms24031886.

Abstract

The blood-brain barrier (BBB) is a multicellular construct that regulates the diffusion and transport of metabolites, ions, toxins, and inflammatory mediators into and out of the central nervous system (CNS). Its integrity is essential for proper brain physiology, and its breakdown has been shown to contribute to neurological dysfunction. The BBB in vertebrates exists primarily through the coordination between endothelial cells, pericytes, and astrocytes, while invertebrates, which lack a vascularized circulatory system, typically have a barrier composed of glial cells that separate the CNS from humoral fluids. Notably, the invertebrate barrier is molecularly and functionally analogous to the vertebrate BBB, and the fruit fly, , is increasingly recognized as a useful model system in which to investigate barrier function. The most widely used technique to assess barrier function in the fly is the dye-exclusion assay, which involves monitoring the infiltration of a fluorescent-coupled dextran into the brain. In this study, we explore analytical and technical considerations of this procedure that yield a more reliable assessment of barrier function, and we validate our findings using a traumatic injury model. Together, we have identified parameters that optimize the dye-exclusion assay and provide an alternative framework for future studies examining barrier function in .

摘要

血脑屏障(BBB)是一种多细胞结构,可调节代谢物、离子、毒素和炎症介质在中枢神经系统(CNS)内外的扩散和转运。其完整性对于正常的大脑生理功能至关重要,其破坏已被证明会导致神经功能障碍。脊椎动物的 BBB 主要通过内皮细胞、周细胞和星形胶质细胞之间的协调来维持,而没有血管化循环系统的无脊椎动物通常具有由神经胶质细胞组成的屏障,将 CNS 与体液分开。值得注意的是,无脊椎动物的屏障在分子和功能上与脊椎动物的 BBB 类似,果蝇 越来越被认为是研究屏障功能的有用模型系统。评估果蝇中屏障功能最广泛使用的技术是染料排除测定法,该测定法涉及监测荧光偶联葡聚糖渗入大脑的情况。在这项研究中,我们探讨了该程序的分析和技术考虑因素,这些因素可更可靠地评估屏障功能,并使用创伤性损伤模型验证了我们的发现。总之,我们已经确定了优化染料排除测定法的参数,并为未来研究 CNS 中的屏障功能提供了替代框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be40/9916281/8283a948523d/ijms-24-01886-g001.jpg

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