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Comparative studies of upconversion luminescence characteristics and cell bioimaging based on one-step synthesized upconversion nanoparticles capped with different functional groups

机译:基于一步法合成具有不同官能团的纳米粒子的上转换发光特性与细胞生物成像的比较研究

摘要

Herein, three types of upconverting NaGdF4:Yb/Er nanoparticles (UCNPs) have been synthesized via one-step hydrothermal synthesis with polyethylene glycol (PEG), polyethylenimine (PEI) and 6-aminocapronic acid (6AA) functionalization. To evident the presence of these groups, FTIR spectra and zeta-potentials were measured to support the successful capping of PEG, PEI and 6AA on the UCNPs. The regular morphology and cubic phase of these functionalized UCNPs were attributed to the capping effect of the surfactants. Tunable upconversion luminescence (UCL) from red to green were observed under 980 nm laser excitation and the UCL tuning was attributed to the presence of various surface ligands. Moreover, surface group dependent UCL bioimaging was performed in HeLa cells. The enhanced UCL bioimaging demonstrated by PEI functionalized UCNPs evident high cell uptake. The significant cell uptake is explained by the electrostatic attraction between the amino groups (-NH2) and the cell membrane. Moreover, the functionalized UCNPs demonstrated low cytotoxicity in MTT assay. Additional, paramagnetic property was presented by these UCNPs under magnetic field.
机译:本文中,已经通过聚乙二醇(PEG),聚乙烯亚胺(PEI)和6-氨基己酸(6AA)功能化的一步水热合成合成了三种类型的上转换NaGdF4:Yb / Er纳米颗粒(UCNP)。为了证明这些基团的存在,测量了FTIR光谱和Zeta电位以支持UCNP上PEG,PEI和6AA的成功封端。这些功能化的UCNPs的规则形态和立方相归因于表面活性剂的封端效应。在980 nm激光激发下观察到从红色到绿色的可调上转换发光(UCL),并且UCL调谐归因于各种表面配体的存在。此外,在HeLa细胞中进行了依赖表面基团的UCL生物成像。 PEI功能化的UCNPs所显示的增强的UCL生物成像表现出较高的细胞摄取。大量的细胞摄取是由氨基(-NH2)和细胞膜之间的静电吸引来解释的。此外,功能化的UCNPs在MTT分析中显示出低细胞毒性。这些UCNP在磁场作用下还具有顺磁性。

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