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首页> 外文期刊>Angewandte Chemie >Nanobody-Conjugated Nanotubes for Targeted Near-Infrared In Vivo Imaging and Sensing
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Nanobody-Conjugated Nanotubes for Targeted Near-Infrared In Vivo Imaging and Sensing

机译:用于靶向近红外的纳米偶联纳米管,体内成像和传感

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摘要

Fluorescent nanomaterials such as single-walled carbon nanotubes (SWCNTs) have many advantages in terms of their photophysics, but it is difficult to target them to specific locations in living systems. In contrast, the green fluorescent protein (GFP) has been genetically fused to proteins in many cells and organisms. Therefore, GFP can be seen not only as a fluorophore but as a universal target/handle. Here, we report the conjugation of GFP-binding nanobodies to DNA-wrapped SWCNTs. This approach combines the targeting capabilities of GFP-binding nanobodies and the nonbleaching near-infrared fluorescence (850-1700 nm) of SWCNTs. These conjugates allow us to track single Kinesin-5-GFP motor proteins in developing embryos of Drosophila melanogaster. Additionally, they are sensitive to the neurotransmitter dopamine and can be used for targeted sensing of dopamine in the nm regime.
机译:荧光纳米材料如单壁碳纳米管(SWCNT)在其光学药物方面具有许多优点,但难以将它们瞄准活生生系统的特定位置。 相反,绿色荧光蛋白(GFP)已在许多细胞和生物中遗传融合给蛋白质。 因此,GFP不仅可以作为荧光团,而是作为通用目标/手柄。 在这里,我们报告GFP结合纳米级纳米型与DNA包装的SWCNTs的缀合。 该方法结合了GFP结合纳米型和非漂白近红外荧光(850-1700nm)的SWCNTs的靶向能力。 这些缀合物允许我们追踪单胰岛素-5-GFP电机蛋白在果蝇的胚胎胚胎中。 另外,它们对神经递质多巴胺敏感,可用于NM制度中的多巴胺的靶向感测。

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