首页> 外文期刊>European journal of pharmaceutical sciences >In vitro porcine blood-brain barrier model for permeability studies: pCEL-X software pfCfLUX method for aqueous boundary layer correction and detailed data analysis
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In vitro porcine blood-brain barrier model for permeability studies: pCEL-X software pfCfLUX method for aqueous boundary layer correction and detailed data analysis

机译:用于渗透性研究的体外猪血脑屏障模型:用于水边界层校正和详细数据分析的pCEL-X软件pfCfLUX方法

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In vitro blood-brain barrier (BBB) models from primary brain endotheiial cells can closely resemble the in vivo BBB, offering valuable models to assay BBB functions and to screen potential central nervous system drugs. We have recently developed an in vitro BBB model using primary porcine brain endotheiial cells. The model shows expression of tight junction proteins and high transendothelial electrical resistance, evidence for a restrictive paracellular pathway. Validation studies using small drug-like compounds demonstrated functional uptake and efflux transporters, showing the suitability of the model to assay drug permeability. However, one limitation of in vitro model permeability measurement is the presence of the aqueous boundary layer (ABL) resulting from inefficient stirring during the permeability assay. The ABL can be a rate-limiting step in permeation, particularly for lipophilic compounds, causing underestimation of the permeability. If the ABL effect is ignored, the permeability measured in vitro will not reflect the permeability in vivo. To address the issue, we explored the combination of in vitro permeability measurement using our porcine model with the pi^LUX method in pCEL-X software to correct for the ABL effect and allow a detailed analysis of in vitro (transendothelial) permeability data, Papp. Published Papp using porcine models generated by our group and other groups are also analyzed. From the Papp, intrinsic transcellular permeability (Po) is derived by simultaneous refinement using a weighted nonlinear regression, taking into account permeability through the ABL, paracellular permeability and filter restrictions on permeation. The in vitro Po derived for 22 compounds (35 measurements) showed good correlation with Po derived from in situ brain perfusion data (r2 = 0.61). The analysis also gave evidence for carrier-mediated uptake of naloxone, propranolol and vinblastine. The combination of the in vitro porcine model and the software analysis provides a useful tool to better predict BBB permeability in vivo and gain better mechanistic information about BBB permeation.
机译:原发性脑内皮细胞的体外血脑屏障(BBB)模型与体内BBB非常相似,为测定BBB功能和筛选潜在的中枢神经系统药物提供了有价值的模型。我们最近开发了使用原代猪脑内皮细胞的体外BBB模型。该模型显示紧密连接蛋白的表达和高跨内皮电阻,这是限制性细胞旁通路的证据。使用小分子药物样化合物进行的验证研究证明了功能吸收和外排转运蛋白,表明该模型适合测定药物的渗透性。但是,体外模型渗透性测量的一个局限性是在渗透性测定过程中搅拌效率低下导致的水边界层(ABL)的存在。 ABL可能是渗透的限速步骤,特别是对于亲脂性化合物,这会导致渗透率低估。如果忽略了ABL效应,则体外测得的通透性将不能反映体内的通透性。为了解决这个问题,我们探索了使用猪模型的体外渗透率测量与pCEL-X软件中的pi ^ LUX方法的结合,以纠正ABL效应,并允许详细分析体外(跨内皮)渗透率数据Papp 。还使用我们小组和其他小组生成的猪模型分析了已发布的Papp。从Papp中,考虑到ABL的通透性,旁细胞的通透性和过滤器对通透性的限制,可以通过加权非线性回归同时精炼来获得固有的跨细胞通透性(Po)。 22种化合物的体外Po值(35个测量值)与原位脑灌注数据得出的Po值具有良好的相关性(r2 = 0.61)。分析还提供了载体介导的纳洛酮,普萘洛尔和长春碱的摄取证据。体外猪模型和软件分析的结合提供了一个有用的工具,可以更好地预测体内BBB的渗透性并获得有关BBB渗透的更好的机械信息。

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