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Fluorescence-Encoded Gold Nanoparticles: Library Design and Modulation of Cellular Uptake into Dendritic CellsFluorescence-Encoded Gold Nanoparticles: Library Design and Modulation of Cellular Uptake into Dendritic Cells

机译:荧光编码的金纳米颗粒:树突状细胞的细胞摄取的库设计和调制荧光编码的金纳米颗粒:树突状细胞的细胞摄取的库设计和调制。

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摘要

In order to harness the unique properties of nanoparticles for novel clinical applications and to modulate their uptake into specific immune cells we designed a new library of homo- and hetero-functional fluorescence-encoded gold nanoparticles (Au-NPs) using different poly (vinyl alcohol) and poly (ethylene glycol)-based polymers for particle coating and stabilization. The encoded particles were fully characterized by UV-Vis and fluorescence spectroscopy,zeta potential and dynamic light scattering. The uptake by human monocyte derived dendritic cells in vitro was studied by confocal laser scanning microscopy and quantified by fluorescence-activated cell sorting and inductively coupled plasma atomic emission spectroscopy. We show how the chemical modification of particle surfaces,for instance by attaching fluorescent dyes,can conceal fundamental particle properties and modulate cellular uptake. In order to mask the influence of fluorescent dyes on cellular uptake while still exploiting its fluorescence for detection,we have created hetero-functionalized Au-NPs,which again show typical particle dependent cellular interactions. Our study clearly prove that the thorough characterization of nanoparticles at each modification step in the engineering process is absolutely essential and that it can be necessary to make substantial adjustments of the particles in order to obtain reliable cellular uptake data,which truly reflects particle properties.
机译:为了利用纳米粒子的独特特性,将其用于新的临床应用并调节其对特定免疫细胞的吸收,我们设计了一个新的均质和异功能荧光编码金纳米粒子(Au-NPs)库,使用不同的聚乙烯醇)和基于聚(乙二醇)的聚合物进行颗粒涂层和稳定化。通过UV-Vis和荧光光谱,ζ电位和动态光散射充分表征了编码的颗粒。通过共聚焦激光扫描显微镜研究了人单核细胞衍生的树突状细胞的体外摄取,并通过荧光激活细胞分选和电感耦合等离子体原子发射光谱法对其进行了定量。我们展示了如何对粒子表面进行化学修饰(例如通过附着荧光染料)来掩盖基本的粒子特性并调节细胞摄取。为了掩盖荧光染料对细胞摄取的影响,同时仍然利用其荧光进行检测,我们创建了异功能化的Au-NP,它们再次显示出典型的颗粒依赖性细胞相互作用。我们的研究清楚地证明,在工程过程的每个修饰步骤中,对纳米颗粒进行彻底的表征是绝对必要的,并且有必要对颗粒进行实质性调整,以获得可靠的细胞摄取数据,从而真实反映颗粒的性质。

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