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首页> 外文期刊>Archives of Toxicology >Using the lentiviral vector system to stably express chicken P-gp and BCRP in MDCK cells for screening the substrates and studying the interplay of both transporters
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Using the lentiviral vector system to stably express chicken P-gp and BCRP in MDCK cells for screening the substrates and studying the interplay of both transporters

机译:使用慢病毒载体系统在MDCK细胞中稳定地表达鸡P-GP和BCRP,用于筛选基材并研究两个运输扣的相互作用

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Transporters P-glycoprotein (P-gp) and breast cancer resistance protein (BCRP) are known to influence the pharmacokinetics and toxicity of substrate drugs. However, no detailed information is as yet available about functional activity and substrate spectra of chicken P-gp and BCRP. In this study, BCRP single and BCRP/P-gp double-transfected MDCK cell lines (named MDCK-chAbcg2 and MDCK-chAbcg2/Abcb1, respectively) were generated using lentiviral vector system to develop reliable systems for screening the substrates for these two transporters and study the interplay between them. The constructed cell lines significantly expressed functional exogenous proteins and expression persisted for at least 50 generations with no decrease. Enrofloxacin, ciprofloxacin, tilmicosin, sulfadiazine, ampicillin and clindamycin were classified as the substrates of chicken P-gp according to the rules suggested by FDA, as their net efflux ratios were greater than two. Similarly, enrofloxacin, ciprofloxacin, tilmicosin, florfenicol, ampicillin and clindamycin were classified as the substrates of BCRP. Among these drugs, enrofloxacin, ciprofloxacin, tilmicosin, ampicillin, and clindamycin were the cosubstrates of P-gp and BCRP, however, chicken BCRP and P-gp exhibit different affinities to the shared substrates at different concentrations by blocking either one or both transport with specific inhibitors in the coexpression system. It was also found that ceftiofur, amoxicillin and doxycycline were not substrates of either chicken BCRP or the substrates of chicken P-gp. These constructed cell models provide useful systems for high-throughput screening of the potential substrates of chicken BCRP and P-gp as well as the drug-drug interaction mediated via chicken BCRP and P-gp.
机译:已知转运物P-糖蛋白(P-GP)和乳腺癌抗性蛋白(BCRP)影响底物药物的药代动力学和毒性。然而,没有详细信息尚未获得鸡P-GP和BCRP的功能活性和底物。在该研究中,使用慢病毒载体系统产生BCRP单和BCRP / P-GP双转染的MDCK细胞系(分别为MDCK-CHABCG2和MDCK-CHABCG2 / ABCB1,以开发可靠的系统,用于筛选这两个运输器的基板并研究它们之间的相互作用。构建的细胞系显着表达了功能性外源蛋白,表达持续至少50代,没有减少。瑞氧氟沙星,环丙沙星,Tilmicosin,磺胺嘧啶,氨苄青霉素和克林霉素根据FDA建议的规则归类为鸡P-GP的底物,因为它们的净流出比率大于两个。类似地,瑞氧氟沙星,环丙沙星,Tilmicosin,氟苯丙烯酯,氨苄青霉素和克林霉素被归类为BCRP的基材。在这些药物中,苯甲烷酰辛,环丙沙星,蒂米霉素,氨苄青霉素和克林霉素是P-GP和BCRP的辅助素,然而,通过阻塞一种或两种运输,鸡BCRP和P-GP在不同浓度下对共用基底具有不同的亲和力在共表达系统中的特异性抑制剂。还发现头孢噻呋,阿莫西林和十二胞环素不是鸡BCRP或鸡P-GP基材的基材。这些构建的细胞模型为鸡BCRP和P-GP的潜在基材以及通过鸡BCRP和P-GP介导的药物 - 药物相互作用提供了用于高通量筛选的有用系统。

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