Mancic Lidija, Djukic-Vukovic Aleksandra, Dinic Ivana, Nikolic Marko G, Rabasovic Mihailo D, Krmpot Aleksandar J, Costa Antonio M L M, Marinkovic Bojan A, Mojovic Ljiljana, Milosevic Olivera
Institute of Technical Sciences of the Serbian Academy of Sciences and Arts Belgrade Serbia
Department of Biochemical Engineering and Biotechnology, Faculty of Technology and Metallurgy, University of Belgrade Serbia.
RSC Adv. 2018 Aug 1;8(48):27429-27437. doi: 10.1039/c8ra04178d. eCollection 2018 Jul 30.
The emerging up-conversion nanoparticles (UCNPs) offer a wide range of biotechnology applications, from biomarkers and deep tissue imaging, to single molecule tracking and drug delivery. Their successful conjugation to biocompatible agents is crucial for specific molecules recognition and usually requires multiple steps which may lead to low reproducibility. Here, we report a simple and rapid one-step procedure for synthesis of biocompatible amino-functionalized NaYF:Yb,Er UCNPs that could be used for NIR-driven fluorescence cell labeling. X-ray diffraction showed that UCNPs synthesized through chitosan-assisted solvothermal processing are monophasic and crystallize in a cubic α phase. Scanning and transmission electron microscopy revealed that the obtained crystals are spherical in shape with a mean diameter of 120 nm. Photoluminescence spectra indicated weaker green (H, S → I) and stronger red emission (F → I), as a result of enhanced non-radiative I → I Er relaxation. The presence of chitosan groups at the surface of UCNPs was confirmed by Fourier transform infrared spectroscopy, thermogravimetry and X-ray photoelectron spectroscopy. This provides their enhanced internalization in cells, at low concentration of 10 μg ml, without suppression of cell viability after 24 h of exposure. Furthermore, upon 980 nm laser irradiation, the amino-functionalized NaYF:Yb,Er UCNPs were successfully used for labeling of two human cell types, normal gingival and oral squamous cell carcinoma.
新兴的上转换纳米粒子(UCNPs)具有广泛的生物技术应用,从生物标志物和深部组织成像,到单分子追踪和药物递送。它们与生物相容性试剂的成功偶联对于特定分子的识别至关重要,通常需要多个步骤,这可能导致低重现性。在此,我们报告了一种简单快速的一步法,用于合成可用于近红外驱动荧光细胞标记的生物相容性氨基功能化NaYF:Yb,Er UCNPs。X射线衍射表明,通过壳聚糖辅助溶剂热法合成的UCNPs为单相,结晶为立方α相。扫描电子显微镜和透射电子显微镜显示,所得晶体呈球形,平均直径为120 nm。光致发光光谱表明,由于非辐射I→I Er弛豫增强,绿色发射(H,S→I)较弱,红色发射(F→I)较强。通过傅里叶变换红外光谱、热重分析和X射线光电子能谱证实了UCNPs表面存在壳聚糖基团。这使得它们在低浓度10 μg/ml时能够增强细胞内化,在暴露24小时后不会抑制细胞活力。此外,在980 nm激光照射下,氨基功能化NaYF:Yb,Er UCNPs成功用于标记两种人类细胞类型,正常牙龈细胞和口腔鳞状细胞癌。