首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >The effect of core and lanthanide ion dopants in sodium fluoride-based nanocrystals on phagocytic activity of human blood leukocytes
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The effect of core and lanthanide ion dopants in sodium fluoride-based nanocrystals on phagocytic activity of human blood leukocytes

机译:氟化钠纳米晶体中核苷酸离子掺杂剂的影响人血白细胞吞噬活性的吞噬活性

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Sodium fluoride-based beta-NaLnF4 nanoparticles (NPs) doped with lanthanide ions are promising materials for application as luminescent markers in bio-imaging. In this work, the effect of NPs doped with yttrium (Y), gadolinium (Gd), europium (Eu), thulium (Tm), ytterbium (Yb) and terbium (Tb) ions on phagocytic activity of monocytes and granulocytes and the respiratory burst was examined. The surface functionalization of <10-nm NPs was performed according to our variation of patent pending ligand exchange method that resulted in meso-2,3-dimercaptosuccinic acid (DMSA) molecules on their surface. Y-core-based NCs were doped with Eu ions, which enabled them to be excited with UV light wavelengths. Cultures of human peripheral blood (n = 8) were in vitro treated with five different concentrations of eight NPs for 24 h. In summary, neither type of nanoparticles is found toxic with respect to conducted test; however, some cause toxic effects (they have statistically significant deviations compared to reference) in some selected doses tested. Both core types of NPs (Y-core and Gd-core) impaired the phagocytic activity of monocytes the strongest, having minimal or none whatsoever influence on granulocytes and respiratory burst of phagocytic cells. The lowest toxicity was observed in Gd-core, Yb, Tm dopants and near-infrared nanoparticles. Clear dose-dependent effect of NPs on phagocytic activity of leukocytes and respiratory burst of cells was observed for limited number of samples.
机译:掺杂有镧系元素离子的氟化钠的β-NALNF4纳米颗粒(NPS)是应用于生物成像中发光标志物的有希望的材料。在这项工作中,NPS掺杂钇(Y),钆(Gd),铕(Eu),硫酮(Tm),镱(Yb)和铽(TB)离子对单核细胞和粒细胞和呼吸的吞噬活性的影响突发了检查。根据我们在其表面上产生Meso-2,3-二巯基琥珀酸(DMSA)分子的专利待处理的配体交换方法进行<10nm NP的表面官能化。基于核心的NCS掺杂有EU离子,使其使它们能够以UV光波长激励。人外周血(n = 8)的培养物在体外,用5种不同浓度的八个NPS进行24小时处理。总之,既没有对进行试验则发现毒性的纳米颗粒。然而,在测试的一些选定剂量中,一些引起的毒性效应(它们与参考相比具有统计学上的显着偏差。核心类型的NPS(Y-Core和GD-Core)都损害了最强的单核细胞的吞噬活性,具有最小的或没有任何对粒细胞和吞噬细胞的呼吸爆发的影响。在GD-核,YB,TM掺杂剂和近红外纳米颗粒中观察到最低毒性。对于有限数量的样品,观察到NPS对白细胞对白细胞吞噬活性进行吞噬细胞的吞噬活性的清晰剂量依赖性效应。

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