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血脑屏障破坏的荧光成像。

Fluorescence imaging of blood-brain barrier disruption.

作者信息

Hawkins Brian T, Egleton Richard D

机构信息

Department of Medical Pharmacology, The University of Arizona College of Medicine, Box 245050, 1501 N. Campbell Avenue, Tucson, AZ 85724-5050, USA.

出版信息

J Neurosci Methods. 2006 Mar 15;151(2):262-7. doi: 10.1016/j.jneumeth.2005.08.006. Epub 2005 Sep 21.

Abstract

Pathological alterations of the blood-brain barrier (BBB) can be topographically heterogeneous. The goal of this study was to develop a method to assess rapidly the magnitude and spatial distribution of permeability changes. Rats were perfused via the common carotid arteries with Ringer's solution containing sodium fluorescein (NF) and Evans Blue albumin (EB). Global NF uptake was determined by fluorimetry and EB uptake was determined by absorbance spectroscopy. NF uptake was linear in control animals and at a rate comparable to sucrose, whereas uptake of EB was negligible. Infusion of 1.6 M mannitol immediately prior to perfusion significantly increased uptake of NF while EB uptake was unchanged. BBB disruption was confirmed by confocal microscopy of fresh-frozen sections. In control animals, NF and EB staining were limited to the edges of slices and to the circumventricular organs. In mannitol-treated animals, heavy NF staining was observed throughout the brain, and EB staining was localized around some microvessels. In animals given a approximately 500 microl air embolus prior to perfusion, a discrete area of NF and EB staining could be observed near the ventral midline, while the rest of the brain remained unaltered. We find that brain perfusion with NF/EB enables a rapid, reliable, and highly sensitive assessment of global BBB permeability and microscopic visualization of discrete BBB disruptions.

摘要

血脑屏障(BBB)的病理改变在地形学上可能是异质性的。本研究的目的是开发一种方法,以快速评估通透性变化的程度和空间分布。通过颈总动脉向大鼠灌注含有荧光素钠(NF)和伊文思蓝白蛋白(EB)的林格氏液。通过荧光测定法测定总体NF摄取量,通过吸收光谱法测定EB摄取量。在对照动物中,NF摄取呈线性,速率与蔗糖相当,而EB摄取可忽略不计。在灌注前立即输注1.6 M甘露醇可显著增加NF摄取量,而EB摄取量不变。通过新鲜冷冻切片的共聚焦显微镜检查证实了血脑屏障的破坏。在对照动物中,NF和EB染色仅限于切片边缘和室周器官。在甘露醇处理的动物中,整个大脑均观察到强烈的NF染色,EB染色定位于一些微血管周围。在灌注前给予约500微升空气栓子的动物中,在腹侧中线附近可观察到离散的NF和EB染色区域,而大脑其余部分保持不变。我们发现,用NF/EB进行脑灌注能够快速、可靠且高度灵敏地评估整体血脑屏障通透性,并对离散的血脑屏障破坏进行微观可视化。

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