首页> 外文期刊>International Journal of Pharmaceutics >Characterization of two blood-brain barrier mimicking cell lines: distribution of lectin-binding sites and perspectives for drug delivery.
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Characterization of two blood-brain barrier mimicking cell lines: distribution of lectin-binding sites and perspectives for drug delivery.

机译:两种模仿细胞系的血脑屏障的特征:凝集素结合位点的分布和药物递送的前景。

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In the present study plant lectins with distinct sugar specificities were applied to two blood-brain barrier (BBB) mimicking cell lines, namely human ECV304 and porcine brain microvascular endothelial cells PBMEC/C1-2 in order to elucidate their glycosylation pattern and to evaluate the lectin-cell interaction for lectin-mediated targeting. The bioadhesive properties of fluorescein-labeled lectins were investigated with monolayers as well as single cells using fluorimetry and flow cytometry, followed by confirmation of the specificity of binding. For PBMEC/C1-2 layers highest binding capacity was found for wheat germ agglutinin (WGA), followed by Dolichus biflorus agglutinin (DBA) whereas single cell experiments revealed a predominance of DBA only. Analyzing ECV304 monolayers and single cells, WGA yielded the strongest interaction without any changes during cultivation. The binding capacities of the other lectins increased significantly during differentiation. As similar results to primary cells and brain sections were observed, both cell lines seem to be suitable as models for lectin-interaction studies. Thus, an additional focus was set on the mechanisms involved in uptake and intracellular fate of selected lectins. Cytoinvasion studies were performed with WGA for human ECV304 cells and WGA as well as DBA for PBMEC/C1-2 cells. For both lectins, the association rate to the cells was dependent on temperature which indicated cellular uptake.
机译:在本研究中,将具有独特糖特异性的植物凝集素应用于两种血脑屏障(BBB)模拟细胞系,即人ECV304和猪脑微血管内皮细胞PBMEC / C1-2,以阐明其糖基化模式并评估其凝集素-细胞相互作用用于凝集素介导的靶向。使用荧光法和流式细胞术,通过单层和单细胞研究了荧光素标记的凝集素的生物粘附特性,然后确认了结合的特异性。对于PBMEC / C1-2层,发现对小麦胚芽凝集素(WGA)的结合能力最高,其次是双斑杜鹃(Dolichus biflorus)凝集素(DBA),而单细胞实验显示只有DBA占优势。分析ECV304单层细胞和单细胞,WGA产生了最强的相互作用,在培养过程中没有任何变化。在分化过程中,其他凝集素的结合能力显着提高。由于观察到与原代细胞和脑切片相似的结果,两种细胞系似乎都适合作为凝集素相互作用研究的模型。因此,将另外的重点放在与所选凝集素的摄取和细胞内命运有关的机制上。使用WGA对人ECV304细胞和WGA以及DBA对PBMEC / C1-2细胞进行细胞浸润研究。对于两种凝集素,与细胞的结合率取决于指示细胞摄取的温度。

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