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Bright Fluorescent Nanotagsfrom Bottlebrush Polymers with DNA-Tipped Bristles

机译:明亮的荧光纳米标签DNA刷毛的Bottlebrush Polymers提供

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摘要

Bright signal outputs are needed for fluorescence detection of biomolecules at their native expression levels. Increasing the number of labels on a probe often results in crowding-induced self-quenching of chromophores, and maintaining the function of the targeting moiety (e.g., an antibody) is a concern. Here we demonstrate a simple method to accommodate thousands of fluorescent dye molecules on a single antibody probe while avoiding the negative effects of self-quenching. We use a bottlebrush polymer from which extend hundreds of duplex DNA strands that can accommodate hundreds of covalently attached and/or thousands of noncovalently intercalated fluorescent dyes. This polymer–DNA assembly sequesters the intercalated fluorophores against dissociation and can be tethered through DNA hybridization to an IgG antibody. The resulting fluorescent nanotag can detect protein targets in flow cytometry, confocal fluorescence microscopy, and dot blots with an exceptionally bright signal that compares favorably to commercially available antibodies labeled with organic dyes or quantum dots.
机译:在生物分子的天然表达水平进行荧光检测时,需要明亮的信号输出。探针上标记数量的增加通常会导致发色团的拥挤诱导的自我猝灭,因此关注维持靶向部分(例如抗体)的功能。在这里,我们展示了一种简单的方法,可以在单个抗体探针上容纳数千个荧光染料分子,同时避免自淬灭的负面影响。我们使用的洗瓶刷聚合物可延伸数百条双链DNA链,可容纳数百种共价连接和/或数千种非共价插入的荧光染料。这种聚合物-DNA组装螯合了插入的荧光团以防止解离,并且可以通过与IgG抗体的DNA杂交来束缚。所得的荧光纳米标签可以在流式细胞仪,共聚焦荧光显微镜和斑点印迹中检测蛋白质靶标,并具有异常明亮的信号,与用有机染料或量子点标记的市售抗体相比具有优势。

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