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Lanthanide-based luminescent assays for ligand-receptor interactions

机译:基于镧系元素的配体-受体相互作用的发光测定

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The evaluation of receptor ligand interactions is important in the field of drug discovery and development. Currently these interactions are typically measured with cumbersome (low throughput) radiolabels. Higher throughput screens are available such as fluorescent measurements of G-protein coupled receptor-induced Ca2+ increases or fluorescence anisotropy, yet these have limited applicability and/or low signal to noise. Hence, there is a need to develop more widely applicable and more sensitive labels that can be used to monitor ligand-receptor interactions. Lanthanides provide an attractive alternative to the traditional labels used for monitoring ligand-receptor interactions. The incorporation of lanthanide labels into traditional assays used to assess receptor-ligand interactions can make these assays more affordable, less time consuming and amenable to automation. Lanthanides can be coupled to ligands and provide strong luminescent signals that can be detected using time-resolved fluorescence (TRF) methods. This approach takes advantage of the long fluorescence lifetime of the lanthanide and can detect less than one attomole of europium in a multiwell plate sample. This short review provides a basic introduction into lanthanides and TRIF and describes some of the recent assays which have utilized lanthanides as labels to assess ligand-receptor interactions. (c) 2005 Elsevier Inc. All rights reserved.
机译:受体配体相互作用的评估在药物发现和开发领域中很重要。目前,通常使用繁琐(低通量)的放射性标记来测量这些相互作用。可以使用更高的通量筛选,例如G蛋白偶联受体诱导的Ca2 +增加的荧光测量或荧光各向异性,但这些方法的适用性有限和/或信噪比低。因此,需要开发可用于监测配体-受体相互作用的更广泛适用和更敏感的标记。镧系元素是用于监测配体-受体相互作用的传统标记的一种有吸引力的替代方法。将镧系元素标记物掺入用于评估受体-配体相互作用的传统测定法中可使这些测定法更实惠,更耗时且易于自动化。镧系元素可以与配体偶联,并提供强发光信号,可以使用时间分辨荧光(TRF)方法检测到。这种方法利用了镧系元素的长荧光寿命,可以检测多孔板样品中less的原子数少于一个。这篇简短的综述提供了镧系元素和TRIF的基本介绍,并介绍了一些最近的测定方法,这些方法利用镧系元素作为标记来评估配体-受体相互作用。 (c)2005 Elsevier Inc.保留所有权利。

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