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New approaches for the reliable in vitro assessment of binding affinity based on high-resolution real-time data acquisition of radioligand-receptor binding kinetics

机译:基于高分辨率的放射性配体-受体结合动力学实时数据采集,可靠地体外评估结合亲和力的新方法

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摘要

Resolving the kinetic mechanisms of biomolecular interactions have become increasingly important in early-phase drug development. Since traditional in vitro methods belong to dose-dependent assessments, binding kinetics is usually overlooked. The present study aimed at the establishment of two novel experimental approaches for the assessment of binding affinity of both, radiolabelled and non-labelled compounds targeting the A3R, based on high-resolution real-time data acquisition of radioligand-receptor binding kinetics. A novel time-resolved competition assay was developed and applied to determine the Ki of eight different A3R antagonists, using CHO-K1 cells stably expressing the hA3R. In addition, a new kinetic real-time cell-binding approach was established to quantify the rate constants k on and k off, as well as the dedicated K d of the A3R agonist [125I]-AB-MECA. Furthermore, lipophilicity measurements were conducted to control influences due to physicochemical properties of the used compounds. Two novel real-time cell-binding approaches were successfully developed and established. Both experimental procedures were found to visualize the kinetic binding characteristics with high spatial and temporal resolution, resulting in reliable affinity values, which are in good agreement with values previously reported with traditional methods. Taking into account the lipophilicity of the A3R antagonists, no influences on the experimental performance and the resulting affinity were investigated. Both kinetic binding approaches comprise tracer administration and subsequent binding to living cells, expressing the dedicated target protein. Therefore, the experiments resemble better the true in vivo physiological conditions and provide important markers of cellular feedback and biological response.
机译:在早期药物开发中,解决生物分子相互作用的动力学机制变得越来越重要。由于传统的体外方法属于剂量依赖性评估,因此通常会忽略结合动力学。本研究旨在建立两种新颖的实验方法,用于基于放射性配体-受体结合动力学的高分辨率实时数据采集,评估靶向A3R的放射性标记和非标记化合物的结合亲和力。利用稳定表达hA3R的CHO-K1细胞,开发了一种新颖的时间分辨竞争测定法,并将其用于确定八个不同的A3R拮抗剂的Ki。此外,建立了一种新的动力学实时细胞结合方法来量化速率常数k on和k off,以及A3R激动剂[125I] -AB-MECA的专用K d。此外,进行亲脂性测量以控制由于所用化合物的物理化学性质而产生的影响。成功开发并建立了两种新颖的实时细胞结合方法。发现这两个实验程序都以高时空分辨率可视化了动力学结合特征,从而产生了可靠的亲和力值,这与以前用传统方法报道的值非常吻合。考虑到A3R拮抗剂的亲脂性,未研究对实验性能和所得亲和力的影响。两种动力学结合方法都包括示踪剂施用和随后与活细胞的结合,以表达专用靶蛋白。因此,实验更好地类似于真实的体内生理条件,并提供了细胞反馈和生物学反应的重要标志。

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