Brzica Hrvoje, Abdullahi Wazir, Reilly Bianca G, Ronaldson Patrick T
Department of Pharmacology, College of Medicine, University of Arizona, Tucson.
Department of Pharmacology, College of Medicine, University of Arizona, Tucson;
J Vis Exp. 2018 May 7(135):57698. doi: 10.3791/57698.
The blood-brain barrier (BBB) is a dynamic barrier tissue that responds to various pathophysiological and pharmacological stimuli. Such changes resulting from these stimuli can greatly modulate drug delivery to the brain and, by extension, cause considerable challenges in the treatment of central nervous system (CNS) diseases. Many BBB changes that affect pharmacotherapy, involve proteins that are localized and expressed at the level of endothelial cells. Indeed, such knowledge on BBB physiology in health and disease has sparked considerable interest in the study of these membrane proteins. From a basic science research standpoint, this implies a requirement for a simple but robust and reproducible method for isolation of microvessels from brain tissue harvested from experimental animals. In order to prepare membrane samples from freshly isolated microvessels, it is essential that sample preparations be enriched in endothelial cells but limited in the presence of other cell types of the neurovascular unit (i.e., astrocytes, microglia, neurons, pericytes). An added benefit is the ability to prepare samples from individual animals in order to capture the true variability of protein expression in an experimental population. In this manuscript, details regarding a method that is utilized for isolation of rat brain microvessels and preparation of membrane samples are provided. Microvessel enrichment, from samples derived, is achieved by using four centrifugation steps where dextran is included in the sample buffer. This protocol can easily be adapted by other laboratories for their own specific applications. Samples generated from this protocol have been shown to yield robust experimental data from protein analysis experiments that can greatly aid the understanding of BBB responses to physiological, pathophysiological, and pharmacological stimuli.
血脑屏障(BBB)是一种动态屏障组织,可对各种病理生理和药理刺激作出反应。这些刺激引起的此类变化可极大地调节药物向脑内的递送,进而在中枢神经系统(CNS)疾病的治疗中带来相当大的挑战。许多影响药物治疗的血脑屏障变化涉及在内皮细胞水平定位和表达的蛋白质。事实上,关于健康和疾病状态下血脑屏障生理学的此类知识引发了对这些膜蛋白研究的极大兴趣。从基础科学研究的角度来看,这意味着需要一种简单但稳健且可重复的方法,用于从实验动物收获的脑组织中分离微血管。为了从新鲜分离的微血管制备膜样品,至关重要的是样品制备要富含内皮细胞,但神经血管单元的其他细胞类型(即星形胶质细胞、小胶质细胞、神经元、周细胞)的存在要有限。另一个好处是能够从个体动物制备样品,以便捕捉实验群体中蛋白质表达的真实变异性。在本手稿中,提供了用于分离大鼠脑微血管和制备膜样品的方法的详细信息。通过使用四个离心步骤实现样品中微血管的富集,其中样品缓冲液中包含葡聚糖。该方案可轻松被其他实验室根据自身特定应用进行调整。从该方案生成的样品已被证明能从蛋白质分析实验中产生可靠的实验数据,这可极大地有助于理解血脑屏障对生理、病理生理和药理刺激的反应。