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Contribution of equilibrative nucleoside transporter(s) to intestinal basolateral and apical transports of anticancer trifluridine

机译:平衡核苷转运蛋白对抗癌基因尿苷的肠道外立方和顶端输送的贡献

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摘要

Trifluridine (FTD) exhibits anticancer activities after its oral administration despite its hydrophilic nature. It was previously reported that concentrative nucleoside transporter (CNT) 1 mediates the apical uptake of FTD in human small intestinal epithelial cells (HIECs). In the present study, FTD was also identified as a substrate for equilibrative nucleoside transporter (ENT) 1 and ENT2 in transporter gene-transfected cells. An immunocytochemical analysis revealed that ENT1 was expressed at the basolateral and apical membranes of HIECs. Cellular accumulation increased in the presence of S-(4-nitrobenzyl)-6-thioinosine (NBMPR), an ENT selective inhibitor. Cytotoxicity in HIEC monolayers at low FTD concentrations was increased by NBMPR, and this may have been due to inhibition of the ENT-mediated basolateral transport of FTD by NBMPR. These results suggest that ENTs reduce the intestinal cytotoxicity of FTD by facilitating its basolateral efflux. On the other hand, the intracellular accumulation and cytotoxicity of FTD in HIECs were decreased at higher concentrations of FTD by NBMPR, and this may have been due to the NBMPR inhibition of the apical uptake of FTD, which has been suggested to be mediated by CNTs and ENTs. In conclusion, ENTs were responsible for intestinal transepithelial permeation by mediating the basolateral efflux of FTD after its uptake by CNT1 from the apical side, resulting in decreases in its intracellular accumulation and intestinal toxicity in humans. Equilibrative nucleoside transporters may also partially contribute to the low-affinity uptake of FTD across the apical membrane along with high-affinity CNT1.
机译:尽管其亲水性质,Trifluridine(FTD)在口服给药后表现出抗癌活性。先前报道,浓缩核苷转运蛋白(CNT)1介导人类小肠上皮细胞(HIEC)中FTD的顶端摄取。在本研究中,FTD也被鉴定为用于平衡核苷转运蛋白(ENT)1和转运物基因转染细胞中的ENT2的底物。免疫细胞化学分析表明,Ent1在Hiecs的基底外侧和顶端膜中表达。在S-(4-硝基苄基)-6-甲基喹啉(NBMPR)的存在下,细胞累积增加,ENT选择性抑制剂。 NBMPR增加了低FTD浓度下HIEC单层的细胞毒性,这可能是由于NBMPR抑制FTD的嵌入的FTD基底外分离。这些结果表明,易于通过促进其基石外渗来减少FTD的肠细胞毒性。另一方面,在NBMPR的较高浓度的FTD中,HIECS中FTD的细胞内积累和细胞毒性降低,这可能是由于NBMPR对FTD的顶端摄取的抑制,这已经提出了由CNT介导的和ents。总之,由于CNT1从顶端侧的CNT1介导FTD的基底外离线Efflux,因此归因于肠道培养渗透,导致人类细胞内积累和肠道毒性的降低。平衡核苷转运蛋白还可部分有助于在顶端膜上与高亲和力CNT1相处的低亲和力摄取到FTD。

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