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建立内皮血脑屏障模型:一种生产大鼠血脑屏障和血脊髓屏障体外模型的方法。

Modelling the endothelial blood-CNS barriers: a method for the production of robust in vitro models of the rat blood-brain barrier and blood-spinal cord barrier.

机构信息

MedImmune Ltd, Granta Park, Cambridgeshire CB21 6HG, UK.

出版信息

BMC Neurosci. 2013 Jun 18;14:59. doi: 10.1186/1471-2202-14-59.

Abstract

BACKGROUND

Modelling the blood-CNS barriers of the brain and spinal cord in vitro continues to provide a considerable challenge for research studying the passage of large and small molecules in and out of the central nervous system, both within the context of basic biology and for pharmaceutical drug discovery. Although there has been considerable success over the previous two decades in establishing useful in vitro primary endothelial cell cultures from the blood-CNS barriers, no model fully mimics the high electrical resistance, low paracellular permeability and selective influx/efflux characteristics of the in vivo situation. Furthermore, such primary-derived cultures are typically labour-intensive and generate low yields of cells, limiting scope for experimental work. We thus aimed to establish protocols for the high yield isolation and culture of endothelial cells from both rat brain and spinal cord. Our aim was to optimise in vitro conditions for inducing phenotypic characteristics in these cells that were reminiscent of the in vivo situation, such that they developed into tight endothelial barriers suitable for performing investigative biology and permeability studies.

METHODS

Brain and spinal cord tissue was taken from the same rats and used to specifically isolate endothelial cells to reconstitute as in vitro blood-CNS barrier models. Isolated endothelial cells were cultured to expand the cellular yield and then passaged onto cell culture inserts for further investigation. Cell culture conditions were optimised using commercially available reagents and the resulting barrier-forming endothelial monolayers were characterised by functional permeability experiments and in vitro phenotyping by immunocytochemistry and western blotting.

RESULTS

Using a combination of modified handling techniques and cell culture conditions, we have established and optimised a protocol for the in vitro culture of brain and, for the first time in rat, spinal cord endothelial cells. High yields of both CNS endothelial cell types can be obtained, and these can be passaged onto large numbers of cell culture inserts for in vitro permeability studies. The passaged brain and spinal cord endothelial cells are pure and express endothelial markers, tight junction proteins and intracellular transport machinery. Further, both models exhibit tight, functional barrier characteristics that are discriminating against large and small molecules in permeability assays and show functional expression of the pharmaceutically important P-gp efflux transporter.

CONCLUSIONS

Our techniques allow the provision of high yields of robust sister cultures of endothelial cells that accurately model the blood-CNS barriers in vitro. These models are ideally suited for use in studying the biology of the blood-brain barrier and blood-spinal cord barrier in vitro and for pre-clinical drug discovery.

摘要

背景

体外模拟血脑和血脊髓屏障仍然是研究中枢神经系统内外大、小分子进出的一个重大挑战,这既涉及基础生物学,也涉及药物发现。尽管在过去的二十年中,人们在建立有用的血脑和血脊髓屏障体外原代内皮细胞培养方面取得了相当大的成功,但没有任何模型能完全模拟体内情况下的高电阻、低旁通透性和选择性内流/外流特性。此外,这种原代衍生的培养物通常劳动强度大,细胞产量低,限制了实验工作的范围。因此,我们旨在建立从大鼠脑和脊髓中高效分离和培养内皮细胞的方案。我们的目标是优化这些细胞的体外条件,诱导出类似于体内情况的表型特征,使它们形成紧密的内皮屏障,适合进行探索性生物学和通透性研究。

方法

从同一只大鼠中取出脑组织和脊髓组织,专门用于分离内皮细胞,以重建体外血脑和血脊髓屏障模型。分离的内皮细胞被培养以扩大细胞产量,然后传代到细胞培养插入物中进行进一步研究。使用市售的试剂优化细胞培养条件,通过功能性渗透实验和免疫细胞化学和 Western blot 体外表型分析来鉴定形成屏障的内皮单层。

结果

使用改良的处理技术和细胞培养条件相结合,我们已经建立并优化了一种体外培养大鼠脑和脊髓内皮细胞的方案。可以获得高产量的两种中枢神经系统内皮细胞类型,并且可以将其传代到大量的细胞培养插入物中进行体外渗透研究。传代的脑和脊髓内皮细胞是纯的,表达内皮标记物、紧密连接蛋白和细胞内转运机制。此外,这两种模型都表现出紧密的、功能性的屏障特征,在渗透实验中对大、小分子具有区分性,并显示出具有重要药学意义的 P-糖蛋白外排转运体的功能表达。

结论

我们的技术提供了高产量的稳健姊妹内皮细胞培养物,能够在体外准确模拟血脑和血脊髓屏障。这些模型非常适合用于研究体外血脑屏障和血脊髓屏障的生物学特性,以及用于临床前药物发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d54d/3694476/a6060aa5edb7/1471-2202-14-59-1.jpg

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