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利用表面等离子体共振作为监测P-糖蛋白外排的新方法。

Utilizing surface plasmon resonance as a novel method for monitoring P-glycoprotein efflux.

作者信息

Nguyen Phuong H, Cui Shuolin, Kozarich Amanda M, Rautio Alex, Roberts Arthur G, Xiong May P

机构信息

Department of Pharmaceutical and Biomedical Sciences, University of Georgia, Athens, GA, United States.

出版信息

Front Biophys. 2024;2. doi: 10.3389/frbis.2024.1367511. Epub 2024 Mar 8.

Abstract

P-glycoprotein (Pgp) is known for its dichotomous roles as both a safeguarding efflux transporter against xenobiotics and as a catalyst for multidrug resistance. Given the susceptibility of numerous therapeutic compounds to Pgp-mediated resistance, compliance with Food and Drug Administration (FDA) guidelines mandates an in-depth transport assay during drug development. This study introduces an innovative transport assay that aligns with these regulatory imperatives but also addresses limitations in the currently established techniques. Using Pgp-reconstituted liposomes and employing surface plasmon resonance (SPR), this study developed a distinct method of measuring the relative transport rates of Pgp substrates in a controlled microenvironment. The Pgp substrates selected for this study-quinidine, methadone, and desipramine-resulted in transport ratios that corroborate with trends previously observed. To assess the kinetics of Pgp-mediated transport, the results were analyzed by fitting the data to both currently proposed Pgp substrate translocation models-the vacuum cleaner and flippase models. While the resulting kinetic analysis in this study lends support predominantly to the vacuum cleaner model, this study most notably developed a novel method of assessing Pgp-mediated transport rates and real-time kinetics using surface plasmon resonance.

摘要

P-糖蛋白(Pgp)具有双重作用,既是抵御外源性物质的保护性外排转运蛋白,又是多药耐药性的催化剂。鉴于众多治疗性化合物对Pgp介导的耐药性敏感,遵循美国食品药品监督管理局(FDA)的指导方针要求在药物研发过程中进行深入的转运测定。本研究引入了一种创新的转运测定方法,该方法既符合这些监管要求,又解决了现有技术中的局限性。本研究使用重组Pgp脂质体并采用表面等离子体共振(SPR),开发了一种在可控微环境中测量Pgp底物相对转运速率的独特方法。本研究选择的Pgp底物——奎尼丁、美沙酮和地昔帕明——产生的转运比率与先前观察到的趋势相符。为了评估Pgp介导的转运动力学,通过将数据拟合到目前提出的两种Pgp底物转运模型——真空吸尘器模型和翻转酶模型——来分析结果。虽然本研究所得的动力学分析主要支持真空吸尘器模型,但本研究最显著的成果是开发了一种使用表面等离子体共振评估Pgp介导的转运速率和实时动力学的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b86/11027885/95fd4ea079d5/nihms-1983518-f0001.jpg

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