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Universal screening platform using three-dimensional small molecule microarray based on surface plasmon resonance imaging

机译:基于表面等离振子共振成像的三维小分子芯片通用筛选平台

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Although much progress has been made in the field of small molecule microarrays in the past decades, its potential has been limited by a lack of efficient methodology. Herein we report a potent methodology for drug screening on a three-dimensional (3D) surface using a carbene based photo-cross-linking reaction. The simultaneous display of a large number of small molecules on a single polymer chain in various orientations allows for the retention of their activity. The presented method was tested using high throughput surface plasmon resonance (SPRi) with the immunosuppressive drugs rapamycin and FK506. We showed that rapamycin and FK506 immobilized on the 3D surface, not the conventional 2D surface, bound to the FKBP with high affinity. Using FKBP-binding ligands and FKBP mutants with altered mutual binding affinities, we observed a strong correlation between the relative binding affinities determined by SPRi and those previously reported. In addition, other important parameters including blocking, washing, robustness and surface reproducibility were also validated. Some well known kinase inhibitors of p38a, JNK and EKR2 proteins were also used to extend the applications of the method. All together, these results suggested that the newly developed 3D small molecule microarray in conjunction with SPRi can be a powerful platform for high throughput drug screening.
机译:尽管在过去的几十年中在小分子微阵列领域取得了很大进展,但是由于缺乏有效的方法,其潜力受到了限制。本文中,我们报告了一种有效的方法,用于使用基于卡宾的光交联反应在三维(3D)表面上进行药物筛选。在单个聚合物链上以各种方向同时显示大量小分子可以保留其活性。使用高通量表面等离振子共振(SPRi)和免疫抑制药物雷帕霉素和FK506对所提出的方法进行了测试。我们显示雷帕霉素和FK506固定在3D表面而非常规2D表面上,并以高亲和力与FKBP结合。使用具有改变的相互结合亲和力的FKBP结合配体和FKBP突变体,我们观察到由SPRi测定的相对结合亲和力与先前报道的亲和力之间有很强的相关性。此外,还验证了其他重要参数,包括粘连,清洗,坚固性和表面再现性。一些众所周知的p38a,JNK和EKR2蛋白激酶抑制剂也用于扩展该方法的应用。总之,这些结果表明,新开发的3D小分子微阵列与SPRi结合可以成为用于高通量药物筛选的强大平台。

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