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Critical parameters in the pegylation of gold nanoshells for biomedical applications: An in vitro macrophage study

机译:用于生物医学应用的金纳米型聚乙二醇的关键参数:体外巨噬细胞研究

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Pegylation of gold nanoshells provides an effective means to reduce their reticuloendothelial system (RES) clearance in body. In this study, we perform a parametric investigation on the factors that would affect the macrophage uptake of gold nanoshells with the aim to optimize their pegylation and minimize their macrophage uptake. We synthesized and pegylated the gold nanoshells using methoxy-poly(ethylene glycol)-thiol and employed an in vitro macrophage assay to examine the effect of surface density of poly(ethylene glycol) (PEG), chain length of the PEG, and size of the gold nanoshells on their macrophage uptake. We have shown that a saturated surface density would minimize macrophage uptake, which could be obtained by experimental titration-based Ellman's reagent. Our results suggest that the chain length of PEG and size of gold nanoshells influence the surface density of PEG. We have also shown that PEG with molecular weight of around 2000 Da and a size range larger than 186 nm would be appropriate for facilitating a high surface density. Our in vitro macrophage system thus provides a good model to accurately predict the RES response to different pegylation parameters.
机译:金纳米孔的聚乙二醇化提供了一种有效的手段,以减少体内的近奇上皮系统(RES)间隙。在这项研究中,我们对影响金纳米孔的巨噬细胞吸收的因素进行参数调查,其目的是优化它们的聚乙二醇化并最大限度地减少其巨噬细胞吸收。我们使用甲氧基聚(乙二醇) - 硫醇合成和聚乙二醇化金纳米二醇,并采用体外巨噬细胞测定来检查聚(乙二醇)(PEG),栓栓的链长的表面密度,以及尺寸的效果巨噬细胞吸收的金纳米蛋白。我们已经表明,饱和表面密度最小化巨噬细胞吸收,这可以通过基于实验滴定的Ellman的试剂获得。我们的研究结果表明,金纳米孔的链条和金纳米孔的尺寸影响了PEG的表面密度。我们还表明,具有分子量约为2000 DA和大于186nm的尺寸范围的PEG适合于促进高表面密度。因此,我们的体外巨噬细胞系统提供了良好的模型,以准确地预测res对不同的pegymation参数的响应。

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