a National Center for Advancing Translational Sciences , National Institutes of Health , Rockville , Maryland , USA.
Expert Opin Drug Discov. 2018 Nov;13(11):1005-1014. doi: 10.1080/17460441.2018.1534824. Epub 2018 Oct 15.
Drug plasma protein binding remains highly relevant to research and drug development, making the assessment and profiling of compound affinity to plasma proteins essential to drug discovery efforts. Although there are a number of fully-characterized methods, they lack the throughput to handle large numbers of compounds. As the evaluation of adsorption, distribution, metabolism, and excretion is addressed earlier in the drug development timeline, the need for higher-throughput methods has grown. Areas Covered: This review will highlight recent developments on methods for profiling drug plasma binding, with an emphasis on fluorescent probes and emerging high-throughput methodologies. Expert Opinion: There have been a number of high-throughput assays developed in recent years to meet the scaled up demands for compound profiling. Ultimately, the selection of assay technology relies on a number of factors, such as capabilities of the laboratory and the breadth and amount of data required. Fluorescent probe displacement assays are highly flexible and amenable to high-throughput screening, easily scaling up to handle large compound libraries. Recent developments in fluorescence technologies, such as homogenous time-resolved fluorescence and probes utilizing the aggregation-induced emission effect, have improved the sensitivity of these assays. Other technologies, such as microscale thermophoresis and quantitative structure-activity relationship modeling, are gaining popularity as alternative techniques for drug plasma protein binding characterization.
药物血浆蛋白结合仍然与研究和药物开发高度相关,因此评估和分析化合物与血浆蛋白的亲和力对于药物发现工作至关重要。尽管有许多经过充分表征的方法,但它们缺乏处理大量化合物的通量。由于在药物开发时间线上更早地评估了药物的吸附、分布、代谢和排泄,因此对高通量方法的需求不断增长。涵盖领域:本综述将重点介绍药物血浆结合分析方法的最新进展,特别强调荧光探针和新兴的高通量方法。专家意见:近年来已经开发了许多高通量测定法来满足化合物分析的扩大需求。最终,测定技术的选择取决于许多因素,例如实验室的能力以及所需数据的广度和数量。荧光探针置换测定法具有高度的灵活性和高通量筛选的适应性,很容易扩展以处理大型化合物库。荧光技术的最新进展,如均相时间分辨荧光和利用聚集诱导发射效应的探针,提高了这些测定法的灵敏度。其他技术,如微尺度热泳和定量构效关系建模,作为药物血浆蛋白结合特性的替代技术,正日益受到关注。