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用于体外功能表征正变构调节剂诱导的表观激动剂效力向左位移的自动化高通量平台的设计。

Design of an automated enhanced-throughput platform for functional characterization of positive allosteric modulator-induced leftward shifts in apparent agonist potency in vitro.

作者信息

Hendricson Adam, Matchett Michele, Ferrante Meredith, Ferrante Chris, Hunnicutt Ed, Westphal Ryan, Kostich Walt, Huang Yanling, Masias Nelly, Hong Debra, Bertekap Rob, Burford Neil, Watson John, Alt Andrew, Myslik Jim, Zhang Litao, Knox Ron

机构信息

Bristol-Myers Squibb, Wallingford, CT 06494, USA.

出版信息

J Lab Autom. 2012 Apr;17(2):104-15. doi: 10.1177/2211068211435301. Epub 2012 Feb 1.

Abstract

Prosecution of positive allosteric modulator (PAM) targets demands a specialized assay toolset. Many GPCR or ion channel targets are adaptable to functional assays whereby PAM efficacy can be inferred from left or rightward shifts in the concentration-response curves of orthosteric agonist. The inherent emphasis on throughput and occasional paucity of radioligands for a diverse array of allosteric modulator targets yields a need for an enhanced throughput agonist potency shift assay. Here, we describe a process by which such an assay was automated with robust, reproducible in vitro pharmacology. In direct comparison with a manual CRC shift assay, the enhanced throughput automated platform described here delivered near identical rank orders (r(2) = 0.75) at ~4-fold throughput/assay iteration. Correspondingly, average cycle time/plate decreased from 104 to 72 minutes. We also observed reductions in assay interference associated with compounds exhibiting ago-allosterism, which we attribute to preread compound incubation periods which are more precisely time-constrained under automation control. By leveraging automated laboratory technology, we have achieved meaningful throughput with no sacrifice of precision. Rather than to be target-class specific, the present process was specifically designed to serve as a platform template for a variety of cell-based functional allosteric modulation assays.

摘要

对正变构调节剂(PAM)靶点的研究需要一套专门的检测工具。许多GPCR或离子通道靶点适用于功能检测,通过这种检测可以从正构激动剂浓度-反应曲线的左移或右移推断PAM的功效。由于对通量的固有强调以及针对各种变构调节剂靶点的放射性配体偶尔短缺,因此需要一种通量更高的激动剂效价位移检测方法。在此,我们描述了一种通过强大、可重复的体外药理学将此类检测自动化的过程。与手动CRC位移检测直接比较,此处描述的高通量自动化平台在每次检测迭代通量提高约4倍的情况下,提供了近乎相同的排名顺序(r(2) = 0.75)。相应地,平均每板周期时间从104分钟减少到72分钟。我们还观察到与表现出前变构现象的化合物相关的检测干扰减少,我们将其归因于预读化合物孵育期,在自动化控制下该孵育期的时间限制更为精确。通过利用自动化实验室技术,我们在不牺牲精度的情况下实现了有意义的通量提升。本方法并非针对特定靶点类别设计,而是专门设计为各种基于细胞的功能性变构调节检测的平台模板。

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