首页> 外文OA文献 >Scintillation proximity assay (SPA) as a new approach to determine a ligand's kinetic profile. A case in point for the adenosine A1 receptor.
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Scintillation proximity assay (SPA) as a new approach to determine a ligand's kinetic profile. A case in point for the adenosine A1 receptor.

机译:闪烁临近测定(SPA)作为确定配体动力学特征的新方法。腺苷A1受体就是一个例子。

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摘要

Scintillation proximity assay (SPA) is a radio-isotopic technology format used to measure a wide range of biological interactions, including drug-target binding affinity studies. The assay is homogeneous in nature, as it relies on a "mix and measure" format. It does not involve a filtration step to separate bound from free ligand as is the case in a traditional receptor-binding assay. For G protein-coupled receptors (GPCRs), it has been shown that optimal binding kinetics, next to a high affinity of a ligand, can result in more desirable pharmacological profiles. However, traditional techniques to assess kinetic parameters tend to be cumbersome and laborious. We thus aimed to evaluate whether SPA can be an alternative platform for real-time receptor-binding kinetic measurements on GPCRs. To do so, we first validated the SPA technology for equilibrium binding studies on a prototypic class A GPCR, the human adenosine A1 receptor (hA1R). Differently to classic kinetic studies, the SPA technology allowed us to study binding kinetic processes almost real time, which is impossible in the filtration assay. To demonstrate the reliability of this technology for kinetic purposes, we performed the so-called competition association experiments. The association and dissociation rate constants (k on and k off) of unlabeled hA1R ligands were reliably and quickly determined and agreed very well with the same parameters from a traditional filtration assay performed simultaneously. In conclusion, SPA is a very promising technique to determine the kinetic profile of the drug-target interaction. Its robustness and potential for high-throughput may render this technology a preferred choice for further kinetic studies.
机译:闪烁临近测定(SPA)是一种放射性同位素技术,用于测量广泛的生物学相互作用,包括药物-靶标结合亲和力研究。该测定法本质上是均质的,因为它依赖于“混合并测量”格式。如传统的受体结合测定法那样,它不涉及从游离配体分离结合的过滤步骤。对于G蛋白偶联受体(GPCR),已显示,除了配体的高亲和力之外,最佳结合动力学可导致更理想的药理学特征。然而,用于评估动力学参数的传统技术往往很麻烦且费力。因此,我们旨在评估SPA是否可以作为GPCR上实时受体结合动力学测量的替代平台。为此,我们首先验证了SPA技术用于原型A类GPCR人类腺苷A1受体(hA1R)的平衡结合研究。与经典动力学研究不同,SPA技术允许我们几乎实时地研究结合动力学过程,这在过滤分析中是不可能的。为了证明该技术在动力学方面的可靠性,我们进行了所谓的竞争关联实验。可靠,快速地确定了未标记hA1R配体的缔合和解离速率常数(k on和k off),并与同时进行的传统过滤测定法中的相同参数非常吻合。总之,SPA是确定药物-靶标相互作用的动力学特征的非常有前途的技术。它的耐用性和高通量潜力可能使该技术成为进一步动力学研究的首选。

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