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A Triple Culture Model of the Blood-Brain Barrier Using Porcine Brain Endothelial cells Astrocytes and Pericytes

机译:猪脑内皮细胞星形胶质细胞和周细胞的血脑屏障的三重培养模型

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摘要

In vitro blood-brain barrier (BBB) models based on primary brain endothelial cells (BECs) cultured as monoculture or in co-culture with primary astrocytes and pericytes are useful for studying many properties of the BBB. The BECs retain their expression of tight junction proteins and efflux transporters leading to high trans-endothelial electric resistance (TEER) and low passive paracellular permeability. The BECs, astrocytes and pericytes are often isolated from small rodents. Larger species as cows and pigs however, reveal a higher yield, are readily available and have a closer resemblance to humans, which make them favorable high-throughput sources for cellular isolation. The aim of the present study has been to determine if the preferable combination of purely porcine cells isolated from the 6 months old domestic pigs, i.e. porcine brain endothelial cells (PBECs) in co-culture with porcine astrocytes and pericytes, would compare with PBECs co-cultured with astrocytes and pericytes isolated from newborn rats with respect to TEER value and low passive permeability. The astrocytes and pericytes were grown both as contact and non-contact co-cultures as well as in triple culture to examine their effects on the PBECs for barrier formation as revealed by TEER, passive permeability, and expression patterns of tight junction proteins, efflux transporters and the transferrin receptor. This syngenic porcine in vitro BBB model is comparable to triple cultures using PBECs, rat astrocytes and rat pericytes with respect to TEER formation, low passive permeability, and expression of hallmark proteins signifying the brain endothelium (tight junction proteins claudin 5 and occludin, the efflux transporters P-glycoprotein (PgP) and breast cancer related protein (BCRP), and the transferrin receptor).
机译:基于原代培养或与原代星形胶质细胞和周细胞共培养的原代脑内皮细胞(BEC)的体外血脑屏障(BBB)模型可用于研究BBB的许多特性。 BEC保持其紧密连接蛋白和外排转运蛋白的表达,从而导致高跨内皮电阻(TEER)和低被动细胞旁通透性。 BEC,星形胶质细胞和周细胞通常从小啮齿动物中分离出来。但是,较大的物种(如牛和猪)显示出较高的产量,易于获得,并且与人类的相似性更高,这使其成为用于细胞分离的有利的高通量来源。本研究的目的是确定从6个月大的家猪中分离出的纯猪细胞(即与猪星形胶质细胞和周细胞共培养的猪脑内皮细胞(PBEC))的优选组合是否可以与PBECs比较-从TEER值和低被动通透性方面讲,从新生大鼠中分离出星形胶质细胞和周细胞进行培养。星形胶质细胞和周细胞均以接触和非接触共培养以及三联培养的形式生长,以检查它们对PBEC屏障形成的影响,如TEER,被动渗透性和紧密连接蛋白,外排转运蛋白的表达方式所揭示和运铁蛋白受体。这种同基因猪体外BBB模型在TEER形成,低被动通透性和标志性蛋白表达(表示紧密连接蛋白claudin 5和occludin,外排蛋白)的表达方面与使用PBEC,大鼠星形胶质细胞和大鼠周细胞的三重培养具有可比性转运蛋白P-糖蛋白(PgP)和乳腺癌相关蛋白(BCRP),以及转铁蛋白受体)。

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