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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Calu-3 cells grown under AIC and LCC conditions: implications for dipeptide uptake and transepithelial transport of substances.
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Calu-3 cells grown under AIC and LCC conditions: implications for dipeptide uptake and transepithelial transport of substances.

机译:在AIC和LCC条件下生长的Calu-3细胞:对二肽摄取和物质的上皮运输的影响。

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The aim of the present study was to investigate whether Calu-3 cell culture conditions influence drug and nutrient transport known to occur via carriers or transporters. Calu-3 cell layers, an in vitro model of the lung epithelium, were cultured using air interfaced culture (AIC) or liquid covered culture (LCC) on either polycarbonate or polyester as filter support material. We found that the development of the Calu-3 cell layer barrier function did not depend on the filter material but rather on the culture conditions as follows: (i) the apical uptake of Gly-Sar was significantly larger for cells grown in AIC compared to LCC, (ii) the TEER values for cells grown in LCC were approximately three times larger than for cells grown in AIC, (iii) the transepithelial transport in both AIC and LCC Calu-3 cells was polarized in the apical-basolateral direction of proline, glycine, alpha-methyl-d-glucoside, glipizide, taurocholic acid and estrone-3-sulfate, whereas inulin, mannitol and Gly-Sar showed no polarized transport. Etoposide showed polarized efflux (basolateral to apical transport) in AIC and LCC Calu-3 layers. These findings provide information about nutrient and drug transport in Calu-3 cells, and this may have implications for selecting culture conditions for transport studies in this in vitro model of the lung epithelium.
机译:本研究的目的是研究Calu-3细胞培养条件是否会影响已知通过载体或转运蛋白发生的药物和营养物质的转运。使用空气界面培养(AIC)或液体覆盖培养(LCC)在聚碳酸酯或聚酯作为过滤器支撑材料上培养Calu-3细胞层(肺上皮的体外模型)。我们发现,Calu-3细胞层屏障功能的发展并不取决于过滤材料,而是取决于如下的培养条件:(i)与在AIC中生长的细胞相比,Gly-Sar的根吸收显着大于LCC,(ii)在LCC中生长的细胞的TEER值大约是在AIC中生长的细胞的TEER值的三倍,(iii)在AIC和LCC中的上皮运输Calu-3细胞在脯氨酸的顶基-基底外侧方向极化,甘氨酸,α-甲基-d-葡萄糖苷,格列吡嗪,牛磺胆酸和雌酮-3-硫酸盐,而菊粉,甘露醇和Gly-Sar没有极化传输。依托泊苷在AIC和LCC Calu-3层中显示出极化流出(从基部到顶端的转运)。这些发现提供了有关Calu-3细胞中营养和药物转运的信息,这可能对在此肺上皮细胞体外模型中进行转运研究的培养条件的选择产生影响。

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