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Development of background-free tame fluorescent probes for intracellular live cell imaging

机译:用于细胞内活细胞成像的无背景驯服荧光探针的开发

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Fluorescence labelling of an intracellular biomolecule in native living cells is a powerful strategy to achieve in-depth understanding of the biomolecule’s roles and functions. Besides being nontoxic and specific, desirable labelling probes should be highly cell permeable without nonspecific interactions with other cellular components to warrant high signal-to-noise ratio. While it is critical, rational design for such probes is tricky. Here we report the first predictive model for cell permeable background-free probe development through optimized lipophilicity, water solubility and charged van der Waals surface area. The model was developed by utilizing high-throughput screening in combination with cheminformatics. We demonstrate its reliability by developing CO-1 and AzG-1, a cyclooctyne- and azide-containing BODIPY probe, respectively, which specifically label intracellular target organelles and engineered proteins with minimum background. The results provide an efficient strategy for development of background-free probes, referred to as ‘tame’ probes, and novel tools for live cell intracellular imaging.
机译:天然活细胞中细胞内生物分子的荧光标记是一种深入了解生物分子的作用和功能的有效策略。除了无毒和特异性外,理想的标记探针还应具有高度的细胞渗透性,且与其他细胞成分无非特异性相互作用,以保证高信噪比。尽管很关键,但对此类探头进行合理的设计却很棘手。在这里,我们通过优化的亲脂性,水溶性和带电范德华表面积报告了细胞可渗透性无背景探针发展的第一个预测模型。该模型是通过将高通量筛选与化学信息学结合使用而开发的。我们通过开发CO-1和AzG-1(一种含环辛炔和叠氮化物的BODIPY探针)来证明其可靠性,该探针以最小的背景特异性标记细胞内靶细胞器和工程蛋白。结果为开发无背景探针(称为“ tame”探针)和用于活细胞细胞内成像的新型工具提供了有效的策略。

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