GlaxoSmithKline, Medicines Research Centre, Stevenage, United Kingdom.
Prog Mol Biol Transl Sci. 2013;115:123-42. doi: 10.1016/B978-0-12-394587-7.00003-8.
Label-free is a broad term used to describe a number of cutting-edge biosensor technologies that have attracted considerable attention in the area of drug discovery for seven-transmembrane G protein-coupled receptors (GPCRs). Label-free biosensors resolve receptor-mediated responses noninvasively in real time and living cells and do so with high textural information and broad signaling-pathway coverage. They should facilitate studies of the receptor's integrated signal transduction biology intractable to classical assays with single pathway focus. Label-free occupies a privilege niche with respect to mechanistic studies in human native cells-healthy or disease-relevant-and the probing of context-dependent pharmacology in relation to whole biological system efficacy. It is expected that implementation of label-free approaches into the drug discovery process will improve clinical predictability of drug candidates at early stages of discovery research by their exquisite capability to sense whole cellular responses akin to tissue bioassays. Here, we present an overview of promises and challenges this rapidly evolving technology offers to drug screening and we also discuss the prospect of advancing drug discovery.
无标记技术是一个广义术语,用于描述许多前沿的生物传感器技术,这些技术在七跨膜 G 蛋白偶联受体 (GPCR) 的药物发现领域引起了相当大的关注。无标记生物传感器可以实时、非侵入性地解析受体介导的反应,并且具有高纹理信息和广泛的信号通路覆盖范围。它们应该有助于研究受体的综合信号转导生物学,这些生物学对于具有单一途径焦点的经典测定方法来说是难以处理的。无标记技术在针对人类天然细胞(健康或疾病相关)的机制研究以及与整体生物系统功效相关的上下文相关药理学研究方面占据着特殊的优势。预计将无标记方法应用于药物发现过程中,将通过其敏锐地感知类似于组织生物测定的整体细胞反应的能力,提高候选药物在发现研究早期阶段的临床预测性。在这里,我们概述了这项快速发展的技术在药物筛选方面带来的承诺和挑战,我们还讨论了推进药物发现的前景。