Hayeshi Rose, Hilgendorf Constanze, Artursson Per, Augustijns Patrick, Brodin Birger, Dehertogh Pascale, Fisher Karen, Fossati Lina, Hovenkamp Egbert, Korjamo Timo, Masungi Chantal, Maubon Nathalie, Mols Raf, Müllertz Anette, Mönkkönen Jukka, O'Driscoll Caitriona, Oppers-Tiemissen H M, Ragnarsson Eva G E, Rooseboom Martijn, Ungell Anna-Lena
Discovery DMPK and Bioanalytical Chemistry, AstraZeneca R&D Mölndal, S-431 83 Mölndal, Sweden.
Eur J Pharm Sci. 2008 Dec 18;35(5):383-96. doi: 10.1016/j.ejps.2008.08.004. Epub 2008 Aug 19.
Caco-2 cells, widely used to study carrier mediated uptake and efflux mechanisms, are known to have different properties when cultured under different conditions. In this study, Caco-2 cells from 10 different laboratories were compared in terms of mRNA expression levels of 72 drug and nutrient transporters, and 17 other target genes, including drug metabolising enzymes, using real-time PCR. The rank order of the top five expressed genes was: HPT1>GLUT3>GLUT5>GST1A>OATP-B. Rank correlation showed that for most of the samples, the gene ranking was not significantly different. Functionality of transporters and the permeability of passive transport markers metoprolol (transcellular) and atenolol (paracellular) were also compared. MDR1 and PepT1 function was investigated using talinolol and Gly-Sar transport, respectively. Sulfobromophthalein (BSP) was used as a marker for MRP2 and OATP-B functionality. Atenolol permeability was more variable across laboratories than metoprolol permeability. Talinolol efflux was observed by all the laboratories, whereas only five laboratories observed significant apical uptake of Gly-Sar. Three laboratories observed significant efflux of BSP. MDR1 expression significantly correlated to the efflux ratio and net active efflux of talinolol. PepT1 mRNA levels showed significant correlation to the uptake ratio and net active uptake of Gly-Sar. MRP2 and OATP-B showed no correlation to BSP transport parameters. Heterogeneity in transporter activity may thus be due to differences in transporter expression as shown for PepT1 and MDR1 which in turn is determined by the culture conditions. Absolute expression of genes was variable indicating that small differences in culture conditions have a significant impact on gene expression, although the overall expression patterns were similar.
Caco-2细胞被广泛用于研究载体介导的摄取和外排机制,已知在不同条件下培养时具有不同特性。在本研究中,使用实时PCR比较了来自10个不同实验室的Caco-2细胞在72种药物和营养转运体以及17个其他靶基因(包括药物代谢酶)的mRNA表达水平。表达量最高的前五个基因的排名顺序为:HPT1>GLUT3>GLUT5>GST1A>OATP-B。秩相关分析表明,对于大多数样本,基因排名没有显著差异。还比较了转运体的功能以及被动转运标记物美托洛尔(跨细胞)和阿替洛尔(细胞旁)的通透性。分别使用他林洛尔和甘氨酰-L-丙氨酸转运研究了MDR1和PepT1的功能。磺溴酞钠(BSP)用作MRP2和OATP-B功能的标记物。各实验室间阿替洛尔的通透性比美托洛尔的通透性变化更大。所有实验室都观察到了他林洛尔的外排,而只有五个实验室观察到了甘氨酰-L-丙氨酸的显著顶端摄取。三个实验室观察到了BSP的显著外排。MDR1表达与他林洛尔的外排率和净主动外排显著相关。PepT1 mRNA水平与甘氨酰-L-丙氨酸的摄取率和净主动摄取显著相关。MRP2和OATP-B与BSP转运参数无相关性。因此,转运体活性的异质性可能是由于转运体表达的差异,如PepT1和MDR1所示,而这又由培养条件决定。基因的绝对表达是可变的,这表明培养条件的微小差异对基因表达有显著影响,尽管总体表达模式相似。