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一种新型99mTc-羰基配合物作为MDR1 P-糖蛋白转运活性功能探针的表征

Characterization of a novel 99mTc-carbonyl complex as a functional probe of MDR1 P-glycoprotein transport activity.

作者信息

Dyszlewski Mary, Blake Helen M, Dahlheimer Julie L, Pica Christina M, Piwnica-Worms David

机构信息

Washington University School of Medicine, St. Louis, MO, USA.

出版信息

Mol Imaging. 2002 Jan-Mar;1(1):24-35. doi: 10.1162/15353500200200002.

Abstract

Multidrug resistance (MDR) mediated by overexpression of MDR1 P-glycoprotein (Pgp) is one of the best characterized barriers to chemotherapy in cancer patients. Furthermore, the protective function of Pgp-mediated efflux of xenobiotics in various organs has a profound effect on the bioavailability of drugs in general. Thus, there is an expanding requirement to noninvasively interrogate Pgp transport activity in vivo. We herein report the Pgp recognition properties of a novel 99mTc(I)-tricarbonyl complex, [99mTc(CO)3(MIBI)3]+ (Tc-CO-MIBI). Tc-CO-MIBI showed 60-fold higher accumulation in drug-sensitive KB 3-1 cells compared to colchicine-selected drug-resistant KB 8-5 cells. In KB 8-5 cells, tracer enhancement was observed with the potent MDR modulator LY335979 (EC50 = 62 nM). Similar behavior was observed using drug-sensitive MCF-7 breast adenocarcinoma cells and MCF-7/MDR1 stable transfectants, confirming that Tc-CO-MIBI is specifically excluded by overexpression of MDR1 Pgp. By comparison, net accumulation in control H69 lung tumor cells was 9-fold higher than in MDR-associated protein (MRP1)-expressing H69AR cells, indicating only modest transport by MRP1. Biodistribution analysis following tail vein injection of Tc-CO-MIBI showed delayed liver clearance as well as enhanced brain uptake and retention in mdr1a/1b(-/-) gene deleted mice versus wild-type mice, directly demonstrating that Tc-CO-MIBI is a functional probe of Pgp transport activity in vivo.

摘要

由多药耐药基因1(MDR1)P-糖蛋白(Pgp)过表达介导的多药耐药(MDR)是癌症患者化疗中最典型的障碍之一。此外,Pgp介导的外源性物质在各器官中的流出所具有的保护功能,总体上对药物的生物利用度有深远影响。因此,对体内Pgp转运活性进行非侵入性检测的需求日益增加。我们在此报告一种新型99mTc(I)-三羰基配合物[99mTc(CO)3(MIBI)3]+(Tc-CO-MIBI)的Pgp识别特性。与秋水仙碱筛选的耐药KB 8-5细胞相比,Tc-CO-MIBI在药物敏感的KB 3-1细胞中的蓄积高出60倍。在KB 8-5细胞中,使用强效MDR调节剂LY335979(半数有效浓度=62 nM)可观察到示踪剂增强。在药物敏感的MCF-7乳腺腺癌细胞和MCF-7/MDR1稳定转染细胞中也观察到类似行为,证实MDR1 Pgp过表达可特异性排斥Tc-CO-MIBI。相比之下,对照H69肺肿瘤细胞中的净蓄积比表达多药耐药相关蛋白1(MRP1)的H69AR细胞高9倍,表明MRP1的转运作用较弱。尾静脉注射Tc-CO-MIBI后的生物分布分析显示,与野生型小鼠相比,mdr1a/1b(-/-)基因缺失小鼠的肝脏清除延迟,脑摄取和滞留增强,直接证明Tc-CO-MIBI是体内Pgp转运活性的功能性探针。

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