首页> 外文期刊>Advanced drug delivery reviews >A new in vitro model for blood-cerebrospinal fluid barrier transport studies: an immortalized choroid plexus epithelial cell line derived from the tsA58 SV40 large T-antigen gene transgenic rat.
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A new in vitro model for blood-cerebrospinal fluid barrier transport studies: an immortalized choroid plexus epithelial cell line derived from the tsA58 SV40 large T-antigen gene transgenic rat.

机译:血脑脊液屏障运输研究的新的体外模型:永生的脉络丛神经上皮细胞系,来自tsA58 SV40大T抗原基因转基因大鼠。

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The blood-cerebrospinal fluid barrier (BCSFB) plays a key role in the influx and efflux transport of drugs and endogenous substrates in the cerebrospinal fluid (CSF). To clarify the molecular mechanism of the BCSFB transport system, a new in vitro BCSFB model, i.e. an immortalized rat choroid plexus epithelial cell line (TR-CSFB), has been established from transgenic rats harboring a temperature-sensitive simian virus 40 large T-antigen gene. TR-CSFB cells grow well at 33 degrees C because of activation of the temperature-sensitive large T-antigen. These cells have a polygonal epithelial cell morphology and express typical choroid plexus epithelial cell markers, such as transthyretin (TTR) and Na(+), K(+)-ATPase, as well as the transporters, system A and ABCC1/mrp1. The localization of Na(+), K(+)-ATPase, and the transport direction of system A are polarized in TR-CSFB cells as is the case in vivo. TR-CSFB cells exhibit l-proline and l-glutamic acid uptake activities and may reflect the CSF-to-blood efflux transport functions involving these amino acids in vivo. Using TR-CSFB cells, we found for the first time that oatp3 is expressed at the BCSFB. TR-CSFB cells appear to be a useful in vitro model of the BCSFB for the study of drug transport, BCSFB transporters, and the regulation of BCSFB functions.
机译:血脑脊液屏障(BCSFB)在药物和脑脊液(CSF)的内源性底物的流入和流出运输中起关键作用。为了阐明BCSFB转运系统的分子机制,已经从具有温度敏感性猿猴病毒40个大T-的转基因大鼠中建立了一种新的体外BCSFB模型,即永生化大鼠脉络丛上皮细胞系(TR-CSFB)。抗原基因。由于对温度敏感的大T抗原的激活,TR-CSFB细胞在33摄氏度下生长良好。这些细胞具有多边形上皮细胞形态,并表达典型的脉络丛神经上皮细胞标记物,如运甲状腺素蛋白(TTR)和Na(+),K(+)-ATPase以及转运蛋白,系统A和ABCC1 / mrp1。 Na(+),K(+)-ATPase的定位以及系统A的运输方向在TR-CSFB细胞中是极化的,就像体内情况一样。 TR-CSFB细胞表现出脯氨酸和谷氨酸的摄取活性,并且可能反映了体内涉及这些氨基酸的CSF到血液的外排转运功能。使用TR-CSFB细胞,我们第一次发现oatp3在BCSFB上表达。 TR-CSFB细胞似乎是BCSFB的有用的体外模型,用于研究药物运输,BCSFB转运蛋白和BCSFB功能的调节。

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