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Peptide-coated semiconductor nanocrystals for biomedical applications

机译:用于生物医学的肽涂层半导体纳米晶体

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摘要

We have developed a new functionalization approach for semiconductor nanocrystals based on a single-step exchange of surface ligands with custom-designed peptides. This peptide-coating technique yield small, monodisperse and very stable water-soluble NCs that remain bright and photostable. We have used this approach on several types of core and core-shell NCs in the visible and near-infrared spectrum range and used fluorescence correlation spectroscopy for rapid assessment of the colloidal and photophysical properties of the resulting particles. This peptide coating strategy has several advantages: it yields probes that are immediately biocompatible; it is amenable to improvements of the different properties (solubilization, functionalization, etc) via rational design, parallel synthesis, or molecular evolution; it permits the combination of several functions on individual NCs. These functionalized NCs have been used for diverse biomedical applications. Two are discussed here: single-particle tracking of membrane receptor in live cells and combined fluorescence and PET imaging of targeted delivery in live animals.
机译:我们已经开发出一种基于表面配体与定制肽段的单步交换的半导体纳米晶体新的功能化方法。这种肽包衣技术可产生小的,单分散且非常稳定的水溶性NC,它们保持明亮和光稳定。我们已经在可见光和近红外光谱范围内的几种类型的核和核壳NC上使用了这种方法,并使用荧光相关光谱法对所得颗粒的胶体和光物理性质进行了快速评估。这种肽包被策略具有几个优点:它产生立即可生物相容的探针;通过合理的设计,平行合成或分子进化可以改善不同的性质(增溶,功能化等);它允许在单个NC上组合多种功能。这些功能化的NC已用于多种生物医学应用。这里讨论了两种:活细胞中膜受体的单粒子跟踪以及活体中靶向递送的荧光和PET成像相结合。

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