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多细胞球体人脑血脑屏障模型的开发、特性描述及潜在应用,该模型整合了三种条件永生化细胞系。

Development, Characterization and Potential Applications of a Multicellular Spheroidal Human Blood-Brain Barrier Model Integrating Three Conditionally Immortalized Cell Lines.

机构信息

Laboratory of DDS Design and Drug Disposition, Graduate School of Pharmaceutical Sciences, Chiba University.

Laboratory of Clinical Pharmacy & Experimental Therapeutics, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences.

出版信息

Biol Pharm Bull. 2021 Jul 1;44(7):984-991. doi: 10.1248/bpb.b21-00218. Epub 2021 Apr 24.

Abstract

In vitro blood-brain barrier (BBB) models are essential research tools for use in developing brain-targeted drugs and understanding the physiological and pathophysiological functions of the BBB. To develop BBB models with better functionalities, three-dimensional (3D) culture methods have gained significant attention as a promising approach. In this study, we report on the development of a human conditionally immortalized cell-based multicellular spheroidal BBB (hiMCS-BBB) model. After being seeded into non-attachment culture wells, HASTR/ci35 (astrocytes) and HBPC/ci37 cells (brain pericytes) self-assemble to form a spheroid core that is then covered with an outer monolayer of HBMEC/ci18 cells (brain microvascular endothelial cells). The results of immunocytochemistry showed the protein expression of several cellular junction and BBB-enriched transporter genes in HBMEC/ci18 cells of the spheroid model. The permeability assays showed that the hiMCS-BBB model exhibited barrier functions against the penetration of dextran (5 and 70 kDa) and rhodamine123 (a P-glycoprotein substrate) into the core. On the other hand, facilitation of 2-(N-[7-nitrobenz-2-oxa-1,3-diazol-4-yl]amino)-2-deoxyglucose (2-NBDG; a fluorescent glucose analog) uptake was observed in the hiMCS-BBB model. Furthermore, tumor necrosis factor-alpha treatment elicited an inflammatory response in HBMEC/ci18 cells, thereby suggesting that BBB inflammation can be recapitulated in the hiMCS-BBB model. To summarize, we have developed an hiMCS-BBB model that possesses fundamental BBB properties, which can be expected to provide a useful and highly accessible experimental platform for accelerating various BBB studies.

摘要

体外血脑屏障 (BBB) 模型是开发针对脑部的药物和了解 BBB 的生理和病理生理功能的重要研究工具。为了开发具有更好功能的 BBB 模型,三维 (3D) 培养方法作为一种很有前途的方法引起了广泛关注。在这项研究中,我们报告了一种基于人条件永生化细胞的多细胞球体 BBB (hiMCS-BBB) 模型的开发。HASTR/ci35(星形胶质细胞)和 HBPC/ci37 细胞(脑周细胞)在接种到无附着培养孔后会自动组装成球体核心,然后再用 HBMEC/ci18 细胞(脑微血管内皮细胞)的单层覆盖球体。免疫细胞化学的结果显示,球体模型中的 HBMEC/ci18 细胞表达了几种细胞连接和 BBB 丰富的转运体基因的蛋白质。渗透实验表明,hiMCS-BBB 模型对 5 和 70 kDa 葡聚糖以及 rhodamine123(P-糖蛋白底物)进入核心的渗透具有屏障功能。另一方面,在 hiMCS-BBB 模型中观察到 2-(N-[7-硝基苯并-2-氧代-1,3-二唑-4-基]氨基)-2-脱氧葡萄糖 (2-NBDG;荧光葡萄糖类似物) 的摄取得到促进。此外,肿瘤坏死因子-α处理在 HBMEC/ci18 细胞中引发了炎症反应,这表明 BBB 炎症可以在 hiMCS-BBB 模型中重现。总之,我们已经开发出一种具有基本 BBB 特性的 hiMCS-BBB 模型,预计它将为加速各种 BBB 研究提供一个有用且易于使用的实验平台。

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