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Knocking Down Breast Cancer Resistance Protein (Bcrp) by Adenoviral Vector-Mediated RNA Interference (RNAi) in Sandwich-Cultured Rat Hepatocytes: A Novel Tool to Assess the Contribution of Bcrp to Drug Biliary Excretion

机译:通过夹心培养的大鼠肝细胞中腺病毒载体介导的RNA干扰(RNAi)敲低乳腺癌抗性蛋白(Bcrp):一种新的工具来评估Bcrp对药物性胆汁排泄的贡献。

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摘要

BCRP transports numerous drugs/derived metabolites and toxins, and exhibits overlapping substrate specificity with P-glycoprotein (P-gp) and multidrug resistance-associated protein 2 (MRP2). Assessing the contribution of BCRP to drug/metabolite biliary excretion in the intact hepatocytes remains a challenge. Current studies were designed to develop a novel in vitro tool to specifically assess the contribution of Bcrp to drug biliary excretion. Adenoviral vectors expressing short hairpin (sh) RNA targeting Bcrp (Ad-si01Bcrp) or a non-target control (Ad-siNT) were packaged and infected into sandwich-cultured rat hepatocytes (SCRH). Protein levels were detected by immunoblot. Biliary excretion index (BEI) and in vitro biliary clearance (Clbiliary) of nitrofurantoin (BCRP substrate) and digoxin (P-gp substrate) were compared among non-infected, Ad-siNT- and Ad-si01Bcrp-infected cells in SCRH. shRNA targeting Bcrp efficiently knocked down Bcrp in SCRH, while levels of other transport proteins (P-gp, Mrp2, Bsep, Mrp4 and Oatp1a1) were unaffected. In SCRH exhibiting Bcrp knockdown, cellular accumulation of nitrofurantoin was increased markedly and nitrofurantoin BEI and in vitro Clbiliary were decreased to 11% and 14% of control, respectively. Digoxin values were unaffected by knockdown of Bcrp. Results indicated that Bcrp contributed predominantly to nitrofurantoin biliary excretion, but played a negligible role in digoxin biliary excretion. In summary, Bcrp knockdown in SCRH is the first in vitro model utilizing intact hepatocytes to assess the contribution of Bcrp to the biliary excretion of drugs. This approach may be useful in predicting drug-drug interactions in biliary excretion and the consequence of impaired BCRP function on the hepatic exposure of drugs/derived metabolites.
机译:BCRP运输许多药物/衍生的代谢产物和毒素,并与P-糖蛋白(P-gp)和多药耐药相关蛋白2(MRP2)表现出重叠的底物特异性。评估BCRP对完整肝细胞中药物/代谢物胆汁排泄的贡献仍然是一个挑战。目前的研究旨在开发一种新型的体外工具,以专门评估Bcrp对药物胆汁排泄的贡献。将表达靶向Bcrp的短发夹(sh)RNA(Ad-si01Bcrp)或非目标对照(Ad-siNT)的腺病毒载体包装,并感染到夹心培养的大鼠肝细胞(SCRH)中。通过免疫印迹检测蛋白质水平。比较SCRH中未感染,Ad-siNT和Ad-si01Bcrp感染的细胞中硝基呋喃妥因(BCRP底物)和地高辛(P-gp底物)的胆汁排泄指数(BEI)和体外胆汁清除率(Clbiliary)。靶向Bcrp的shRNA可以有效地敲低SCRH中的Bcrp,而其他转运蛋白(P-gp,Mrp2,Bsep,Mrp4和Oatp1a1)的水平不受影响。在表现出Bcrp敲低的SCRH中,呋喃妥因的细胞蓄积显着增加,而呋喃妥因的BEI和体外胆管癌分别降低至对照组的11%和14%。地高辛值不受Bcrp敲低的影响。结果表明,Bcrp主要是造成呋喃妥因胆汁排泄的原因,但在地高辛胆汁排泄中的作用却微不足道。总之,SCRH中的Bcrp敲除是第一个利用完整肝细胞评估Bcrp对药物胆汁排泄的贡献的体外模型。该方法可用于预测胆汁排泄中的药物相互作用,以及BCRP功能受损对肝脏/药物/代谢产物的暴露的后果。

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