The Key Laboratory of Resource Chemistry of Ministry of Education, Shanghai Municipal Education Committee Key Laboratory of Molecular Imaging Probes and Sensors, Shanghai Normal University , Shanghai 200234, P.R. China.
Department of Chemistry, Fudan University , 220 Handan Road, Shanghai 200433, P.R. China.
ACS Appl Mater Interfaces. 2016 Aug 3;8(30):19208-16. doi: 10.1021/acsami.6b02856. Epub 2016 Jul 25.
To circumvent the defects of different bioimaging techniques, the development of multifunctional probes for multimodality bioimaging is required. In the present study, a lanthanide-based core-shell-shell nanocomposite NaYbF4:Tm@CaF2@NaDyF4 composed of an ∼9.5 nm NaYbF4:Tm nanocrystal as the core, ∼2 nm CaF2 as the middle layer, and 1-2 nm NaDyF4 as the outermost shell was designed and synthesized. Following surface modification with the ligand, citrate acid, this nanocomposite was hydrophilic, emitted intense upconversion luminescence (UCL), and displayed a high X-ray computed tomography (CT) value of ∼490 Hounsfield units (HU) and excellent r2 relaxivity of 41.1 mM(-1) s(-1). These results confirmed that the introduction of a middle CaF2 layer was necessary as a barrier to reduce cross-relaxation and the surface quenching effect, thus enhancing the upconversion emission of Tm(3+). This citrate-modified NaYbF4:Tm@CaF2@NaDyF4 nanocomposite was used as a multifunctional contrast agent for trimodal lymphatic bioimaging with T2-weighted magnetic resonance imaging (MRI), CT, and UCL imaging. The concept of fabricating a core-multishell nanostructure and the introduction of a Dy(3+)-based host as an outer layer is a useful strategy and can be used to develop a novel multifunctional nanoprobe for multimodality bioimaging.
为了规避不同生物成像技术的缺陷,需要开发用于多模态生物成像的多功能探针。在本研究中,设计并合成了一种由约 9.5nm 的 NaYbF4:Tm 纳米晶作为核、约 2nm 的 CaF2 作为中间层和 1-2nm 的 NaDyF4 作为最外层的镧系元素核壳壳纳米复合材料 NaYbF4:Tm@CaF2@NaDyF4。在配体柠檬酸进行表面修饰后,该纳米复合材料具有亲水性,发射出强烈的上转换发光(UCL),并且具有约 490 亨氏单位(HU)的高 X 射线计算机断层扫描(CT)值和出色的 r2 弛豫率 41.1mM-1s-1。这些结果证实,引入中间的 CaF2 层作为减少交叉弛豫和表面猝灭效应的屏障是必要的,从而增强了 Tm(3+)的上转换发射。这种柠檬酸修饰的 NaYbF4:Tm@CaF2@NaDyF4 纳米复合材料被用作具有 T2 加权磁共振成像(MRI)、CT 和 UCL 成像的三模态淋巴生物成像的多功能对比剂。构建核多壳纳米结构并引入基于 Dy(3+)的主体作为外壳的概念是一种有用的策略,可以用于开发用于多模态生物成像的新型多功能纳米探针。