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首页> 外文期刊>Angewandte Chemie >Protein-Sized Bright Fluorogenic Nanoparticles Based on Cross-Linked Calixarene Micelles with Cyanine Corona
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Protein-Sized Bright Fluorogenic Nanoparticles Based on Cross-Linked Calixarene Micelles with Cyanine Corona

机译:基于交联杯芳烃胶束与花菁电晕的蛋白质大小的明亮荧光纳米粒子。

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摘要

The key challenge in the field of fluorescent nanoparticles (NPs) for biological applications is to achieve superior brightness for sizes equivalent to single proteins (3-7nm). We propose a concept of shell-cross-linked fluorescent micelles, in which PEGylated cyanine 3 and 5 bis-azides form a covalently attached corona on micelles of amphiphilic calixarene bearing four alkyne groups. The fluorescence quantum yield of the obtained monodisperse NPs, with a size of 7nm, is a function of viscosity and reached up to 15% in glycerol. In the on-state they are circa 2-fold brighter than quantum dots (QD-585), which makes them the smallest PEGylated organic NPs of this high brightness. FRET between cyanine 3 and 5 cross-linkers at the surface of NPs suggests their integrity in physiological media, organic solvents, and living cells, in which the NPs rapidly internalize, showing excellent imaging contrast. Calixarene micelles with a cyanine corona constitute a new platform for the development of protein-sized ultrabright fluorescent NPs.
机译:用于生物应用的荧光纳米颗粒(NPs)领域的关键挑战是要实现与单个蛋白质(3-7nm)相当的尺寸,以实现卓越的亮度。我们提出了一种壳交联的荧光胶束的概念,其中聚乙二醇化的花青3和5双叠氮化物在带有四个炔基的两亲杯芳烃胶束上形成共价连接的电晕。所获得的单分散NP的荧光量子产率为7nm,是粘度的函数,在甘油中可达15%。在接通状态下,它们的亮度比量子点(QD-585)大约高2倍,这使它们成为这种高亮度下最小的PEG化有机NP。 NP表面的花青3和5交联剂之间的FRET表明它们在生理介质,有机溶剂和活细胞中的完整性,其中NP快速内化,显示出极好的成像对比度。带有花菁电晕的杯芳烃胶束构成了开发蛋白质大小的超亮荧光NP的新平台。

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