IPCMS, UMR CNRS-Université de Strasbourg 7504, 23 rue du loess, BP 43, 67034 Strasbourg cedex 2, France.
Biomaterials. 2011 Nov;32(33):8562-73. doi: 10.1016/j.biomaterials.2011.07.026. Epub 2011 Aug 23.
The synthesis of small-size dendrons and their grafting at the surface of iron oxide nanoparticles were achieved with the double objective to obtain a good colloidal stability with a mean hydrodynamic diameter smaller than 100 nm and to ensure the possibility of tuning the organic coating characteristics including morphology, functionalities, physico-chemical properties, grafting of fluorescent or targeting molecules. Magnetic resonance and fluorescence imaging are then demonstrated to be simultaneously possible using such versatile superparamagnetic iron oxide nanocrystals covered by a dendritic shell displaying either carboxylate or ammonium groups at their periphery which could be further labelled with a fluorescent dye. The grafting conditions of these functionalized dendrons at the surface of SPIO NPs synthesized by co-precipitation have been optimized as a function of the nature of the peripheral functional group. The colloidal stability has been investigated in water and osmolar media, and in vitro and in vivo MRI and optical imaging measurements have been performed showing encouraging biodistribution.
采用双功能基小分子树枝状聚合物对超顺磁性氧化铁纳米粒子(SPIONs)进行表面修饰,旨在得到一种胶体稳定性好、平均水动力直径小于 100nm 的超顺磁性氧化铁纳米粒子,并可进一步对其表面有机配体的形貌、功能、物理化学性质进行调控,同时还可以实现荧光或靶向分子的接枝。在此基础上,利用共沉淀法合成了表面带有羧基或铵盐基团的多功能树枝状聚合物修饰的超顺磁性氧化铁纳米晶,这些纳米晶可以进一步用荧光染料进行标记,随后对其进行磁共振和荧光成像实验,实验结果表明这两种成像方法是可行的。同时,还优化了树枝状聚合物在共沉淀法合成的超顺磁性氧化铁纳米粒子表面的接枝条件,以达到对其表面的功能基团的性质进行调控的目的。研究了其在水相和高渗相中的胶体稳定性,并进行了体外和体内磁共振成像和光学成像测量,结果显示了良好的生物分布。