Department of Chemical and Biochemical Engineering, University of Western Ontario, London, Ontario, Canada N6A 5B9.
J Colloid Interface Sci. 2011 Jan 1;353(1):156-62. doi: 10.1016/j.jcis.2010.09.012. Epub 2010 Sep 18.
In this paper, foam-structured fluorescent mesoporous silica nanoparticles (FMSNs) are produced in a sol-gel method with the introduction of a phosphonate functional group. It is found that the phosphonate functionalized FMSNs with the foam structure minimizes the aggregation of FMSNs in solution. The average particle size of the FMSNs without and with phosphonate functionalization is 46.3 ± 5 nm and 60.5 ± 8 nm in diameter, respectively. The latter one exhibits higher fluorophore loading capacity (~67 ± 2.5%). The excitation wavelength (λ(ex)) of FMSNs is observed at 526 nm, approximate 12 nm larger in the Stoke-shift compared to the free organic dye at 494/514 nm. Furthermore, the photostability of the hydrophobic fluorophore is greatly improved by the FMSNs with the foam structure. In addition, the dose-dependent nature of FMSN uptake is assessed for the immune cells, the bone marrow-derived dendritic immune cells (BMDCs). Our results indicate that approximately 42% of BMDCs are able to take up foam-structured FMSNs (>5 μg/ml) without decreasing the viability of BMDCs. Thus, the phosphonate functionalized FMSNs with the foam structure are suitable to be used for many biomedical applications, especially in cell tracking.
本文采用溶胶-凝胶法制备了具有泡沫结构的荧光介孔硅纳米粒子(FMSNs),并引入了膦酸官能团。研究发现,具有泡沫结构的膦酸功能化 FMSNs 可最大限度地减少 FMSNs 在溶液中的聚集。未经和经膦酸功能化的 FMSNs 的平均粒径分别为 46.3±5nm 和 60.5±8nm。后者具有更高的荧光染料负载能力(~67±2.5%)。FMSNs 的激发波长(λ(ex))为 526nm,与 494/514nm 的自由有机染料相比,Stoke-shift 约大 12nm。此外,具有泡沫结构的 FMSNs 大大提高了疏水性荧光染料的光稳定性。此外,还评估了免疫细胞(骨髓来源的树突状免疫细胞(BMDCs))对 FMSN 摄取的剂量依赖性。结果表明,约 42%的 BMDCs 能够摄取>5μg/ml 的泡沫结构 FMSNs,而不会降低 BMDCs 的活力。因此,具有泡沫结构的膦酸功能化 FMSNs 适合用于许多生物医学应用,特别是在细胞示踪中。