Faculty of Chemistry, Northeast Normal University, Changchun 130024, P.R. China.
Chemistry. 2012 Sep 24;18(39):12512-21. doi: 10.1002/chem.201200030. Epub 2012 Aug 21.
Hollow mesoporous SiO(2) (mSiO(2)) nanostructures with movable nanoparticles (NPs) as cores, so-called yolk-shell nanocapsules (NCs), have attracted great research interest. However, a highly efficient, simple and general way to produce yolk-mSiO(2) shell NCs with tunable functional cores and shell compositions is still a great challenge. A facile, general and reproducible strategy has been developed for fabricating discrete, monodisperse and highly uniform yolk-shell NCs under mild conditions, composed of mSiO(2) shells and diverse functional NP cores with different compositions and shapes. These NPs can be Fe(3)O(4) NPs, gold nanorods (GNRs), and rare-earth upconversion NRs, endowing the yolk-mSiO(2) shell NCs with magnetic, plasmonic, and upconversion fluorescent properties. In addition, multifunctional yolk-shell NCs with tunable interior hollow spaces and mSiO(2) shell thickness can be precisely controlled. More importantly, fluorescent-magnetic-biotargeting multifunctional polyethyleneimine (PEI)-modified fluorescent Fe(3)O(4)@mSiO(2) yolk-shell nanobioprobes as an example for simultaneous targeted fluorescence imaging and magnetically guided drug delivery to liver cancer cells is also demonstrated. This synthetic approach can be easily extended to the fabrication of multifunctional yolk@mSiO(2) shell nanostructures that encapsulate various functional movable NP cores, which construct a potential platform for the simultaneous targeted delivery of drug/gene/DNA/siRNA and bio-imaging.
具有可移动纳米颗粒 (NPs) 核的中空介孔二氧化硅 (mSiO(2)) 纳米结构,即所谓的蛋黄-壳纳米胶囊 (NCs),引起了极大的研究兴趣。然而,开发一种高效、简单和通用的方法来制备具有可调谐功能核和壳组成的蛋黄-mSiO(2)壳 NCs 仍然是一个巨大的挑战。在温和条件下,已经开发出一种简便、通用和可重复的策略来制备离散、单分散和高度均匀的蛋黄-壳 NCs,这些 NCs由 mSiO(2)壳和不同组成和形状的各种功能 NP 核组成。这些 NPs 可以是 Fe(3)O(4) NPs、金纳米棒 (GNRs) 和稀土上转换 NRs,赋予蛋黄-mSiO(2)壳 NCs 磁性、等离子体和上转换荧光特性。此外,可以精确控制具有可调内部空心空间和 mSiO(2)壳厚度的多功能蛋黄-壳 NCs。更重要的是,以荧光-磁性-生物靶向多功能聚乙烯亚胺 (PEI) 修饰的荧光 Fe(3)O(4)@mSiO(2)蛋黄-壳纳米生物探针为例,还证明了其对肝癌细胞的同时靶向荧光成像和磁导向药物递送。这种合成方法可以很容易地扩展到多功能蛋黄@mSiO(2)壳纳米结构的制备,这些结构可以封装各种功能的可移动 NP 核,为药物/基因/DNA/siRNA 的同时靶向递送和生物成像构建了一个潜在的平台。