College of Physics and Information Science and Key Laboratory of Low-dimensional Quantum Structures and Quantum Control of the Ministry of Education, Hunan Normal University, Changsha, Hunan, China.
Nanoscale. 2013 Jul 7;5(13):6023-9. doi: 10.1039/c3nr00999h. Epub 2013 May 28.
In this work, we developed a novel and biocompatible dual-modal nanoprobe based on single-phase amine-functionalized BaYF5:Yb/Er nanoparticles (NPs) for upconversion (UC) fluorescence and in vivo computed X-ray tomography (CT) bioimaging for the first time. High-quality water-soluble amine-functionalized BaYF5:Yb/Er NPs with an average size of 24 nm were synthesized by a facile environmentally friendly hydrothermal method for simultaneous synthesis and surface functionalization. Structure investigation based on the Rietveld refinement method revealed that the as-synthesized BaYF5:Yb/Er NPs present a cubic phase structure, which differs from the previously reported tetragonal structure. Under 980 nm excitation, high-contrast green and red UC emissions were observed from HeLa cells incubated with these amine-functionalized NPs. The UC spectra measured from the NPs incubated with HeLa cells presented only green and red UC emissions without any autofluorescence, further revealing that these NPs are ideal candidates for fluorescent bioimaging. In addition, the cell cytotoxicity test showed low cell toxicity of these NPs. These amine-functionalized NPs were also successfully used as CT agents for in vivo CT imaging because of the efficient X-ray absorption efficiency of Ba and doped Yb ions. A prolonged (2 h) signal enhancement of the spleen in a mouse was observed in CT imaging, which can improve the detection of splenic diseases. More importantly, the simultaneous X-ray and UC in vivo bioimaging was demonstrated in a nude mouse for the first time, indicating the as-prepared UCNPs can be successfully used as dual-modal bioprobes. These results demonstrate that BaYF5:Yb/Er NPs are ideal nanoprobes for dual-modal fluorescent/CT bioimaging with low cytotoxicity, non-autofluorescence, and enhanced detection of the spleen.
在这项工作中,我们首次开发了一种基于单相胺功能化 BaYF5:Yb/Er 纳米粒子(NPs)的新型生物相容性双模式纳米探针,用于上转换(UC)荧光和体内计算机 X 射线断层扫描(CT)生物成像。通过一种简便、环保的水热法合成了高质量的水溶性胺功能化 BaYF5:Yb/Er NPs,其平均尺寸为 24nm,同时实现了合成和表面功能化。基于 Rietveld 精修方法的结构研究表明,所合成的 BaYF5:Yb/Er NPs 呈现出立方相结构,与之前报道的四方相结构不同。在 980nm 激发下,孵育有这些胺功能化 NPs 的 HeLa 细胞观察到高对比度的绿色和红色 UC 发射。从与 NPs 孵育的 HeLa 细胞中测量的 UC 光谱仅显示绿色和红色 UC 发射,没有任何自发荧光,进一步表明这些 NPs 是荧光生物成像的理想候选物。此外,细胞毒性试验表明这些 NPs 的细胞毒性低。由于 Ba 和掺杂的 Yb 离子的高效 X 射线吸收效率,这些胺功能化 NPs 也成功用作体内 CT 成像的 CT 造影剂。在 CT 成像中观察到小鼠脾脏的信号增强持续时间延长(2 小时),这可以提高脾脏疾病的检测能力。更重要的是,首次在裸鼠中进行了同时进行的 X 射线和 UC 体内生物成像,表明所制备的 UCNPs 可成功用作双模式生物探针。这些结果表明,BaYF5:Yb/Er NPs 是用于具有低细胞毒性、无自发荧光和增强脾脏检测的双模式荧光/CT 生物成像的理想纳米探针。