Evaluation of the Influence of Astrocytes on In Vitro Blood–Brain Barrier Models

血脑屏障 并行传输 体外 P-糖蛋白 路西法黄 星形胶质细胞 细胞培养 化学 磁导率 细胞生物学 紧密连接 生物 药理学 体内 生物化学 中枢神经系统 神经科学 缝隙连接 多重耐药 抗生素 细胞内 遗传学
作者
Adrián García-Salvador,Alazne Domínguez-Monedero,Paloma Gómez-Fernández,Amaia García‐Bilbao,Susana Carregal‐Romero,Joaquı́n Castilla,Felipe Goñi‐de‐Cerio
出处
期刊:Atla-alternatives To Laboratory Animals [SAGE Publishing]
卷期号:48 (4): 184-200 被引量:18
标识
DOI:10.1177/0261192920966954
摘要

In vitro blood–brain barrier (BBB) models are a useful tool to screen the permeability and toxicity of new drugs. Currently, many different in vitro BBB models coexist, but none stands out as being notably better than the rest. Therefore, there is still a need to evaluate the quality of BBB models under various conditions and assess their ability to mimic the in vivo situation. In this study, two brain endothelial cell lines (bEnd.3 and hCMEC/D3) and two epithelial-like cell lines (MDCKII and Caco-2) were selected for BBB modelling purposes. They were grown as monolayers of a single cell type, under the following conditions: in coculture with either primary or immortalised astrocytes; or in the presence of primary or immortalised astrocyte-derived conditioned media. A total of 20 different BBB models were established in this manner, in order to assess the effects of the astroglial components on the BBB phenotype in each case. To this end, six parameters were studied: the expression of selected tight junction proteins; the enzyme activities of alkaline phosphatase and of gamma glutamyl transpeptidase; the transendothelial/transepithelial electrical resistance (TEER); restriction in paracellular transport; and efflux transporter inhibition were each evaluated and correlated. The results showed that coculturing with either primary or immortalised astrocytes led to a general improvement in all parameters studied, evidencing the contribution of this cell type to effective BBB formation. Furthermore, the permeability coefficient ( P e ) of the tracer molecule, Lucifer Yellow, correlated with three of the six parameters studied. In addition, this study highlights the potential for the use of the Lucifer Yellow P e value as an indicator of barrier integrity in in vitro BBB models, which could be useful for screening the permeability of new drugs.
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