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通过可逆连接的奎宁同二聚体抑制P-糖蛋白介导的紫杉醇耐药性。

Inhibition of P-glycoprotein-mediated paclitaxel resistance by reversibly linked quinine homodimers.

作者信息

Pires Marcos M, Emmert Dana, Hrycyna Christine A, Chmielewski Jean

机构信息

Department of Chemistry and Purdue Cancer Center, Purdue University, West Lafayette, Indiana, USA.

出版信息

Mol Pharmacol. 2009 Jan;75(1):92-100. doi: 10.1124/mol.108.050492. Epub 2008 Oct 22.

Abstract

P-glycoprotein (P-gp), an ATP-dependent drug efflux pump, has been implicated in multidrug resistance of several cancers as a result of its overexpression. In this work, rationally designed second-generation P-gp inhibitors are disclosed, based on dimerized versions of the substrates quinine and quinidine. These dimeric agents include reversible tethers with a built-in clearance mechanism. The designed agents were potent inhibitors of rhodamine 123 efflux in cultured cancer cell lines that display high levels of P-gp expression at the cell surface and in transfected cells expressing P-gp. The quinine homodimer Q2, which was tethered by reversible ester bonds, was particularly potent (IC(50) approximately 1.7 microM). Further studies revealed that Q2 inhibited the efflux of a range of fluorescent substrates (rhodamine 123, doxorubicin, mitoxantrone, and BODIPY-FL-prazosin) from MCF-7/DX1 cells. The reversibility of the tether was confirmed in experiments showing that Q2 was readily hydrolyzed by esterases in vitro (t(1/2) approximately 20 h) while demonstrating high resistance to nonenzymatic hydrolysis in cell culture media (t(1/2) approximately 21 days). Specific inhibition of [(125)I]iodoarylazidoprazosin binding to P-gp by Q2 verified that the bivalent agent interacted specifically with the drug binding site(s) of P-gp. Q2 was also an inhibitor of verapamil-stimulated ATPase activity. In addition, low concentrations of Q2 stimulated basal P-gp ATPase levels. Finally, Q2 was shown to inhibit the transport of radiolabeled paclitaxel (Taxol) in MCF-7/DX1 cells, and it completely reversed the P-gp-mediated paclitaxel resistance phenotype.

摘要

P-糖蛋白(P-gp)是一种ATP依赖性药物外排泵,因其过表达而与多种癌症的多药耐药性有关。在这项研究中,基于底物奎宁和奎尼丁的二聚体形式,公开了合理设计的第二代P-gp抑制剂。这些二聚体试剂包括具有内置清除机制的可逆连接子。所设计的试剂是培养的癌细胞系中罗丹明123外排的有效抑制剂,这些细胞系在细胞表面显示高水平的P-gp表达,并且在表达P-gp的转染细胞中也有高表达。通过可逆酯键连接的奎宁同二聚体Q2特别有效(IC50约为1.7 microM)。进一步的研究表明,Q2抑制了一系列荧光底物(罗丹明123、阿霉素、米托蒽醌和BODIPY-FL-哌唑嗪)从MCF-7/DX1细胞中的外排。连接子的可逆性在实验中得到证实,实验表明Q2在体外很容易被酯酶水解(t1/2约为20小时),而在细胞培养基中对非酶水解具有高抗性(t1/2约为21天)。Q2对[125I]碘芳基叠氮哌唑嗪与P-gp结合的特异性抑制证实了二价试剂与P-gp的药物结合位点特异性相互作用。Q2也是维拉帕米刺激的ATP酶活性的抑制剂。此外,低浓度的Q2刺激基础P-gp ATP酶水平。最后,Q2被证明抑制MCF-7/DX1细胞中放射性标记紫杉醇(泰素)的转运,并且它完全逆转了P-gp介导的紫杉醇耐药表型。

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