Vinegoni Claudio, Fumene Feruglio Paolo, Brand Christian, Lee Sungon, Nibbs Antoinette E, Stapleton Shawn, Shah Sunil, Gryczynski Ignacy, Reiner Thomas, Mazitschek Ralph, Weissleder Ralph
Center for System Biology, Massachusetts General Hospital and Harvard Medical School, Boston, Massachusetts, USA.
Department of Neurosciences, Biomedicine, and Movement Sciences, University of Verona, Verona, Italy.
Nat Protoc. 2017 Jul;12(7):1472-1497. doi: 10.1038/nprot.2017.043. Epub 2017 Jun 29.
The ability to directly image and quantify drug-target engagement and drug distribution with subcellular resolution in live cells and whole organisms is a prerequisite to establishing accurate models of the kinetics and dynamics of drug action. Such methods would thus have far-reaching applications in drug development and molecular pharmacology. We recently presented one such technique based on fluorescence anisotropy, a spectroscopic method based on polarization light analysis and capable of measuring the binding interaction between molecules. Our technique allows the direct characterization of target engagement of fluorescently labeled drugs, using fluorophores with a fluorescence lifetime larger than the rotational correlation of the bound complex. Here we describe an optimized protocol for simultaneous dual-channel two-photon fluorescence anisotropy microscopy acquisition to perform drug-target measurements. We also provide the necessary software to implement stream processing to visualize images and to calculate quantitative parameters. The assembly and characterization part of the protocol can be implemented in 1 d. Sample preparation, characterization and imaging of drug binding can be completed in 2 d. Although currently adapted to an Olympus FV1000MPE microscope, the protocol can be extended to other commercial or custom-built microscopes.
在活细胞和整个生物体中以亚细胞分辨率直接成像和量化药物-靶点结合及药物分布的能力,是建立准确的药物作用动力学和动态模型的先决条件。因此,此类方法在药物开发和分子药理学中将有深远的应用。我们最近提出了一种基于荧光各向异性的技术,这是一种基于偏振光分析的光谱方法,能够测量分子间的结合相互作用。我们的技术允许使用荧光寿命大于结合复合物旋转相关性的荧光团,直接表征荧光标记药物的靶点结合情况。在这里,我们描述了一种用于同时双通道双光子荧光各向异性显微镜采集以进行药物-靶点测量的优化方案。我们还提供了必要的软件来实现流处理,以可视化图像并计算定量参数。该方案的组装和表征部分可在1天内完成。药物结合的样品制备、表征和成像可在2天内完成。尽管目前该方案适用于奥林巴斯FV1000MPE显微镜,但也可扩展到其他商业或定制显微镜。