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苯硝唑对 HepG2 细胞生物转化系统和 ABC 转运蛋白的调节:涉及孕烷 X 受体。

Regulation of biotransformation systems and ABC transporters by benznidazole in HepG2 cells: involvement of pregnane X-receptor.

机构信息

Institute of Experimental Physiology, School of Biochemical and Pharmaceutical Sciences, Rosario, Argentina.

出版信息

PLoS Negl Trop Dis. 2012;6(12):e1951. doi: 10.1371/journal.pntd.0001951. Epub 2012 Dec 13.

Abstract

BACKGROUND

Benznidazole (BZL) is the only antichagasic drug available in most endemic countries. Its effect on the expression and activity of drug-metabolizing and transporter proteins has not been studied yet.

METHODOLOGY/PRINCIPAL FINDINGS: Expression and activity of P-glycoprotein (P-gp), Multidrug resistance-associated protein 2 (MRP2), Cytochrome P450 3A4 (CYP3A4), and Glutathione S-transferase (GST) were evaluated in HepG2 cells after treatment with BZL. Expression was estimated by immunoblotting and real time PCR. P-gp and MRP2 activities were estimated using model substrates rhodamine 123 and dinitrophenyl-S-glutathione (DNP-SG), respectively. CYP3A4 and GST activities were evaluated through their abilities to convert proluciferin into luciferin and 1-chloro-2,4-dinitrobenzene into DNP-SG, respectively. BZL (200 µM) increased the expression (protein and mRNA) of P-gp, MRP2, CYP3A4, and GSTπ class. A concomitant enhancement of activity was observed for all these proteins, except for CYP3A4, which exhibited a decreased activity. To elucidate if pregnane X receptor (PXR) mediates BZL response, its expression was knocked down with a specific siRNA. In this condition, the effect of BZL on P-gp, MRP2, CYP3A4, and GSTπ protein up-regulation was completely abolished. Consistent with this, BZL was able to activate PXR, as detected by reporter gene assay. Additional studies, using transporter inhibitors and P-gp-knock down cells, demonstrated that P-gp is involved in BZL extrusion. Pre-treatment of HepG2 cells with BZL increased its own efflux, as a consequence of P-gp up-regulation.

CONCLUSIONS/SIGNIFICANCE: Modifications in the activity of biotransformation and transport systems by BZL may alter the pharmacokinetics and efficiency of drugs that are substrates of these systems, including BZL itself.

摘要

背景

贝那唑(BZL)是大多数流行国家唯一可用的抗恰加斯病药物。尚未研究其对药物代谢和转运蛋白表达和活性的影响。

方法/主要发现:用 BZL 处理 HepG2 细胞后,评估了 P-糖蛋白(P-gp)、多药耐药相关蛋白 2(MRP2)、细胞色素 P450 3A4(CYP3A4)和谷胱甘肽 S-转移酶(GST)的表达和活性。通过免疫印迹和实时 PCR 估计表达。使用模型底物罗丹明 123 和二硝基苯-S-谷胱甘肽(DNP-SG)分别估计 P-gp 和 MRP2 的活性。通过将前荧光素转化为荧光素和 1-氯-2,4-二硝基苯转化为 DNP-SG 来评估 CYP3A4 和 GST 的活性。BZL(200µM)增加了 P-gp、MRP2、CYP3A4 和 GSTπ 类的表达(蛋白和 mRNA)。观察到所有这些蛋白质的活性都同时增强,除了 CYP3A4 的活性降低。为了阐明 P 受体(PXR)是否介导 BZL 反应,用特异性 siRNA 敲低其表达。在这种情况下,BZL 对 P-gp、MRP2、CYP3A4 和 GSTπ 蛋白上调的影响完全被消除。与此一致,BZL 能够激活 PXR,如报告基因测定所检测到的。使用转运蛋白抑制剂和 P-gp 敲低细胞的进一步研究表明,P-gp 参与了 BZL 的外排。BZL 预处理 HepG2 细胞增加了其自身的外排,这是由于 P-gp 的上调。

结论/意义:BZL 对生物转化和转运系统活性的改变可能改变这些系统底物(包括 BZL 本身)的药代动力学和效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c1e/3521711/b3951f23ebcc/pntd.0001951.g001.jpg

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