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OATP 转运体家族和苯溴马隆敏感外排转运体在长春新碱肝细胞处置中的作用。

Role of the OATP Transporter Family and a Benzbromarone-SensitiveEfflux Transporter in the Hepatocellular Disposition of Vincristine.

机构信息

Drug Delivery and Disposition, Department of Pharmaceutical and Pharmacological Sciences, KU Leuven, O&N2, Herestraat 49 - box 921, 3000, Leuven, Belgium.

Non-Clinical Development, UCB Pharma S.A., B-1420, Braine l'Alleud, Belgium.

出版信息

Pharm Res. 2017 Nov;34(11):2336-2348. doi: 10.1007/s11095-017-2241-0. Epub 2017 Aug 21.

Abstract

PURPOSE

Vincristine is known to interfere with OATP-mediated uptake of other compounds, hinting that vincristine itself could be a substrate of OATP transporters. The present study therefore aimed to investigate the role of OATP transporters in the hepatocellular disposition of vincristine.

METHODS

Vincristine uptake was studied in suspended rat and human hepatocytes as well as OATP-transfected Chinese hamster ovary (CHO) cells in the absence and presence of OATP transporter inhibitors. Membrane vesicles containing MDR1 or MRP1/2/3 were used to directly assess the role of these efflux transporters in vincristine disposition.

RESULTS

Uptake in suspended rat hepatocytes was temperature-dependent and could be inhibited by a range of OATP inhibitors. Furthermore, the MRP-inhibitor benzbromarone, but none of the tested MDR1 inhibitors, reduced vincristine efflux in rat and human suspended hepatocytes. OATP1B1-, OATP1B3- and OATP2B1- transfected CHO cells showed significantly increased vincristine uptake as compared to wild-type cells. Moreover, uptake in OATP-transfected CHO cells was reduced by OATP inhibitors. However, uptake studies in suspended human hepatocytes showed that only 10% of the total vincristine uptake process could be attributed to OATP-mediated transport. Studies with transporter-expressing membrane vesicles confirmed vincristine as an MDR1 substrate, while MRP1/2/3-mediated transport of vincristine could not be observed with this model system.

CONCLUSIONS

Our findings show the involvement of OATP transporters in the disposition of vincristine in rat and human hepatocytes. However, in both species, hepatic uptake is overshadowed by a benzbromarone-sensitive efflux mechanism, possibly MRP3.

摘要

目的

长春新碱已知会干扰 OATP 介导的其他化合物摄取,这暗示长春新碱本身可能是 OATP 转运体的底物。因此,本研究旨在研究 OATP 转运体在长春新碱肝细胞处置中的作用。

方法

在悬浮大鼠和人肝细胞以及 OATP 转染的中国仓鼠卵巢(CHO)细胞中研究长春新碱摄取,在不存在和存在 OATP 转运体抑制剂的情况下进行。使用含有 MDR1 或 MRP1/2/3 的膜囊泡直接评估这些外排转运体在长春新碱处置中的作用。

结果

悬浮大鼠肝细胞摄取与温度有关,可被一系列 OATP 抑制剂抑制。此外,MRP 抑制剂苯溴马隆,但并非所有测试的 MDR1 抑制剂,均可降低大鼠和人悬浮肝细胞中长春新碱的外排。与野生型细胞相比,OATP1B1、OATP1B3 和 OATP2B1 转染的 CHO 细胞显示出明显增加的长春新碱摄取。此外,OATP 抑制剂可降低 OATP 转染的 CHO 细胞摄取。然而,悬浮人肝细胞摄取研究表明,长春新碱摄取过程的仅有 10%可归因于 OATP 介导的转运。用表达转运体的膜囊泡进行的研究证实长春新碱是 MDR1 的底物,而该模型系统未观察到 MRP1/2/3 介导的长春新碱转运。

结论

我们的研究结果表明 OATP 转运体参与了大鼠和人肝细胞中长春新碱的处置。然而,在这两种物种中,肝摄取都被苯溴马隆敏感的外排机制所掩盖,可能是 MRP3。

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