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A study of the diffusion dynamics and concentration distribution of gold nanospheres (GNSs) without fluorescent labeling inside live cells using fluorescence single particle spectroscopy

机译:扩散动力学的研究金团簇的浓度分布(GNSs)没有荧光标签内生活使用荧光单粒子的细胞光谱学

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Colloidal gold nanospheres (GNSs) have become important nanomaterials in biomedical applications due to their special optical properties, good chemical stability, and biocompatibility. However, measuring the diffusion coefficients or concentration distribution of GNSs within live cells accurately without any extra fluorescent labeling in situ has still not been resolved. In this work, a single particle method is developed to study the concentration distribution of folic acid-modified GNSs (FA-GNSs) internalized via folate receptors, and investigates their diffusion dynamics within live cells using single particle fluorescence correlation spectroscopy (FCS). We optimized the experimental conditions and verified the feasibility of 30 nm GNSs without extra fluorescence labeling being used for single particle detection inside live cells. Then, the FCS characterization strategy was used to measure the concentration and diffusion coefficient distributions of GNSs inside live cells and the obtained results were basically in agreement with those obtained by TEM. The results demonstrate that our strategy is characterized as an in situ, nondestructive, rapid and dynamic method for the assay of live cells, and it may be widely used in the further design of GNP-based drug delivery and therapeutics.
机译:胶体金团簇(GNSs)重要的纳米材料在生物医学由于其特殊的光学应用属性,良好的化学稳定性,生物相容性。扩散系数和浓度活细胞内分布GNSs准确没有任何额外的原位荧光标记仍未得到解决。单粒子方法的开发研究雷酸改性的浓度分布通过叶酸受体GNSs (FA-GNSs)内化,和调查他们的内扩散动力学活细胞单粒子荧光相关光谱(FCS)。实验条件和验证了没有额外的30 nm GNSs的可行性荧光标记用于单身粒子检测活细胞内。FCS是用来测量表征策略浓度和扩散系数GNSs活细胞内的分布和结果基本上是一致的通过TEM。我们的策略是定义为原位,无损、快速和动态方法活细胞的分析,它可以广泛应用于GNP-based药物的进一步设计和交付疗法。

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