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首页> 外文期刊>Journal of chemotherapy >Accumulation of azithromycin and roxithromycin in tracheal epithelial fetal cell lines expressing wild type or mutated cystic fibrosis transmembrane conductance regulator protein (CFTR).
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Accumulation of azithromycin and roxithromycin in tracheal epithelial fetal cell lines expressing wild type or mutated cystic fibrosis transmembrane conductance regulator protein (CFTR).

机译:阿奇霉素和罗红霉素在表达野生型或突变型囊性纤维化跨膜电导调节蛋白(CFTR)的气管上皮胎儿细胞系中的积累。

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摘要

Macrolides are accumulated in phagocytes, partially via an active transport system; the membrane carrier is not identified but many data indicate a link with the P-glycoprotein family which includes the Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) protein. We have used two epithelial cell lines which express either wild-type (N cells) or mutated (homozygous deltaF508) (F cells) CFTR to study the cellular accumulation of two macrolides (azithromycin and roxithromycin). Adherent cells were incubated with the radiolabeled drugs before extensive washings and counting. Azithromycin was better (about 2-fold) accumulated in F cells up to 60 min but then plateaued, whereas accumulation continued without saturation over 3 hours in N cells. Roxithromycin was also better (1.5-fold) accumulated in F cells at 15 and 30 min, but there were no differences at further incubation times. Macrolide efflux from loaded N and F cells, and the susceptibilities of the carrier systems (entry and efflux) to variouspharmacologic agents were similar to those previously observed with phagocytes. These data suggest that the macrolide carriers (for entry and efflux) are not strictly specific for phagocytes and that the CFTR protein plays a role in macrolide uptake.
机译:大环内酯类化合物部分地通过主动转运系统积聚在吞噬细胞中。膜载体尚未确定,但许多数据表明与P-糖蛋白家族有关,其中包括囊性纤维化跨膜电导调节剂(CFTR)蛋白。我们已使用两种表达野生型(N细胞)或突变型(纯合deltaF508)(F细胞)CFTR的上皮细胞系来研究两种大环内酯类药物(阿奇霉素和罗红霉素)的细胞蓄积。在广泛洗涤和计数之前,将贴壁细胞与放射性标记的药物一起孵育。在60分钟内,阿奇霉素在F细胞中的蓄积效果更好(约2倍),但随后趋于平稳,而在N细胞中的蓄积持续超过3小时而没有饱和。在15和30分钟时,罗红霉素在F细胞中的蓄积也更好(1.5倍),但是在进一步的孵育时间没有差异。来自装载的N和F细胞的大环内酯类药物外排,以及载体系统对各种药物的敏感性(进入和外排)与以前在吞噬细胞中观察到的相似。这些数据表明,大环内酯载体(用于进入和流出)并非严格针对吞噬细胞,而CFTR蛋白在大环内酯的摄取中发挥作用。

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