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首页> 外文期刊>Journal of pharmaceutical sciences. >Comparison of blood-brain barrier permeability assays: in situ brain perfusion, MDR1-MDCKII and PAMPA-BBB.
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Comparison of blood-brain barrier permeability assays: in situ brain perfusion, MDR1-MDCKII and PAMPA-BBB.

机译:血脑屏障通透性检测方法的比较:原位脑灌注,MDR1-MDCKII和PAMPA-BBB。

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Permeability data from MDR1-MDCKII and PAMPA-BBB assays were compared to data from in situ brain perfusion to evaluate the accuracy of in vitro assays in predicting in vivo blood-brain barrier (BBB) permeability. PAMPA-BBB significantly correlated to in situ brain perfusion, however, MDR1-MDCKII had no correlation with in situ brain perfusion. PAMPA-BBB also significantly correlated with MDR1-MDCKII. The differential correlation of PAMPA-BBB and MDR1-MDCKII to in situ brain perfusion appears to be mainly due to the difference in membrane characteristics rather than binding to brain tissue. The MDR1-MDCKII cell membrane has lower ratios of: phospholipid to cholesterol, unsaturated to saturated acyl chains, and phosphatidyl-choline (PC) to sphingomyelin (SM) than brain endothelial cells, making it a poor passive permeability model for BBB. The BBB is more hydrophobic, rigid, and less fluidic than MDR1-MDCKII cell membrane. PAMPA-BBB more closely matches the BBB membrane in these characteristics and is a more accurate passive diffusion permeability model for BBB than MDR1-MDCKII. PAMPA-BBB is high throughput, low cost and has good prediction of in vivo BBB permeability, and therefore, it is a valuable tool in drug discovery to screen compounds for the rate of brain penetration.
机译:将来自MDR1-MDCKII和PAMPA-BBB分析的渗透性数据与来自原位脑灌注的数据进行比较,以评估体外分析在预测体内血脑屏障(BBB)渗透性方面的准确性。 PAMPA-BBB与原位脑灌注显着相关,但是,MDR1-MDCKII与原位脑灌注无相关性。 PAMPA-BBB也与MDR1-MDCKII显着相关。 PAMPA-BBB和MDR1-MDCKII与原位脑灌注的相关性差异似乎主要归因于膜特性的差异,而不是与脑组织的结合。与脑内皮细胞相比,MDR1-MDCKII细胞膜具有以下比率:磷脂与胆固醇,不饱和与饱和酰基链,磷脂酰胆碱(PC)与鞘磷脂(SM)的比率较低,这使其成为BBB的被动渗透模型较差。与MDR1-MDCKII细胞膜相比,BBB具有更好的疏水性,刚性和流动性。 PAMPA-BBB在这些特性上与BBB膜更紧密匹配,并且是比MDR1-MDCKII更准确的BBB被动扩散渗透模型。 PAMPA-BBB具有高通量,低成本且对体内BBB渗透性具有良好的预测能力,因此,它是药物发现中筛选脑渗透率化合物的有价值的工具。

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