Merck Research Laboratories, North Wales, Pennsylvania 19454, USA.
ACS Chem Biol. 2011 Dec 16;6(12):1391-8. doi: 10.1021/cb2003225. Epub 2011 Oct 19.
Combination therapies that enhance efficacy or permit reduced dosages to be administered have seen great success in a variety of therapeutic applications. More fundamentally, the discovery of epistatic pathway interactions not only informs pharmacologic intervention but can be used to better understand the underlying biological system. There is, however, no systematic and efficient method to identify interacting activities as candidates for combination therapy and, in particular, to identify those with synergistic activities. We devised a pooled, self-deconvoluting screening paradigm for the efficient comprehensive interrogation of all pairs of compounds in 1000-compound libraries. We demonstrate the power of the method to recover established synergistic interactions between compounds. We then applied this approach to a cell-based screen for anti-inflammatory activities using an assay for lipopolysaccharide/interferon-induced acute phase response of a monocytic cell line. The described method, which is >20 times as efficient as a naïve approach, was used to test all pairs of 1027 bioactive compounds for interleukin-6 suppression, yielding 11 pairs of compounds that show synergy. These 11 pairs all represent the same two activities: β-adrenergic receptor agonists and phosphodiesterase-4 inhibitors. These activities both act through cyclic AMP elevation and are known to be anti-inflammatory alone and to synergize in combination. Thus we show proof of concept for a robust, efficient technique for the identification of synergistic combinations. Such a tool can enable qualitatively new scales of pharmacological research and chemical genetics.
联合疗法可以提高疗效或减少给药剂量,在各种治疗应用中取得了巨大成功。更根本的是,发现上位通路相互作用不仅为药物干预提供了信息,而且可以用来更好地理解潜在的生物系统。然而,目前还没有系统而有效的方法来识别具有协同作用的相互作用活性作为联合治疗的候选物,特别是识别那些具有协同作用的候选物。我们设计了一种汇集的、自解卷积筛选范式,用于高效全面地检测 1000 化合物库中所有化合物对的相互作用活性。我们证明了该方法能够恢复已建立的化合物之间的协同相互作用。然后,我们将这种方法应用于基于细胞的抗炎活性筛选,使用单核细胞系中脂多糖/干扰素诱导的急性期反应测定法。所描述的方法比盲目方法效率高>20 倍,用于测试 1027 种生物活性化合物对白细胞介素-6 抑制的所有对,产生了 11 对显示协同作用的化合物。这 11 对都代表相同的两种活性:β-肾上腺素能受体激动剂和磷酸二酯酶-4 抑制剂。这两种活性都通过环 AMP 升高起作用,单独具有抗炎作用,并且在组合中具有协同作用。因此,我们证明了一种用于识别协同组合的强大、高效技术的概念验证。这种工具可以实现药理学研究和化学遗传学的新规模。