Hu Xiaoqing, Wang Mingliang, Miao Fei, Ma Jingwei, Shen Hebai, Jia Nengqin
The Education Ministry Key Laboratory of Resource Chemistry and Shanghai Key Laboratory of Rare Earth Functional Materials, Department of Chemistry, College of Life and Environmental Sciences, Shanghai Normal University, Shanghai 200234, China.
J Mater Chem B. 2014 Apr 28;2(16):2265-2275. doi: 10.1039/c3tb21702g. Epub 2014 Mar 17.
Gd-based/mesoporous silica-coated multifunctional core-shell (Y,Gd)O:Eu@nSiO@mSiO nanoparticles (YGO-Bmnc NPs) with red luminescence, paramagnetic and mesoporous properties are developed as a novel nanomedical platform for combined multimodal diagnosis and therapy. 40 nm sized (Y,Gd)O:Eu (YGO-Ac) nanocore is synthesized by a labor-saving solvothermal method, 20 nm sized perpendicularly aligned mesoporous silica shell is then successfully coated onto the nanocore through two-step sol-gel process and a highly efficient surfactant removal method (NHNO-EtOH). The surface area of nanocore can be increased from 24 m g to 562 m g after coating mesoporous silica shell without any core-free silica NPs. Light-emitting Eu ion is chosen as a model to study the solvothermal mechanism and downconversion/upconversion luminescence properties of nanocore; Y is doped into matrix to enhance energy transfer from Gd to the doped Eu. Further investigation of luminescence property of YGO-Bmnc NPs shows that they are good red phosphors with millisecond-lever fluorescence lifetime (τ = 2.54 ms, 612 nm, D-F). MTT assay reveals low cytotoxicity of the system with IC ([Gd]) > 1000 µg mL (6.36 mM). The possibility of using YGO-Bmnc NPs for optical imaging in vitro has been demonstrated. Magnetic resonance imaging (MRI) in vitro exhibits a high r relaxivity of 5.05 mM s and low r/r ratio of 1.216 (3.0 T) which is much lower than other existing Gd-based nanoscale contrast agents, manifesting that YGO-Bmnc NPs can be efficient T contrast agents. In light of their good performance in optical-MR imaging and highly ordered mesoporous structure, it is anticipated that they are suitable for combined multimodal diagnosis and therapy, they can load other imaging agents or drugs to provide complementary information from each imaging modality and guide individual treatment. What's more, the mesoporous silica shell can provide a large venue for the effective modification of various functional groups and biotargets with selectivity and specificity.
具有红色发光、顺磁性和介孔特性的基于钆的/介孔二氧化硅包覆的多功能核壳型(Y,Gd)O:Eu@nSiO@mSiO纳米粒子(YGO-Bmnc NPs)被开发为一种用于联合多模态诊断和治疗的新型纳米医学平台。通过一种省力的溶剂热法合成了尺寸为40 nm的(Y,Gd)O:Eu(YGO-Ac)纳米核,然后通过两步溶胶-凝胶法和一种高效的表面活性剂去除方法(NHNO-EtOH)成功地在纳米核上包覆了尺寸为20 nm的垂直排列的介孔二氧化硅壳。在不产生任何无核二氧化硅纳米粒子的情况下,包覆介孔二氧化硅壳后纳米核的表面积可从24 m g增加到562 m g。选择发光铕离子作为模型来研究纳米核的溶剂热机理和下转换/上转换发光特性;将钇掺杂到基质中以增强从钆到掺杂铕的能量转移。对YGO-Bmnc NPs发光特性的进一步研究表明,它们是具有毫秒级荧光寿命(τ = 2.54 ms, 612 nm, D-F)的良好红色磷光体。MTT分析显示该系统的细胞毒性较低,IC([Gd])>1000 µg mL(6.36 mM)。已经证明了使用YGO-Bmnc NPs进行体外光学成像的可能性。体外磁共振成像(MRI)显示出5.05 mM s的高r弛豫率和1.216(3.0 T)的低r/r比,这远低于其他现有的基于钆的纳米级造影剂,表明YGO-Bmnc NPs可以是有效的T造影剂。鉴于它们在光学-MR成像中的良好性能和高度有序的介孔结构,预计它们适用于联合多模态诊断和治疗,它们可以负载其他成像剂或药物以提供来自每种成像模态的补充信息并指导个体化治疗。此外,介孔二氧化硅壳可以为各种官能团和生物靶点的有效修饰提供一个具有选择性和特异性的大场所。