纳米技术
纳米颗粒
纳米医学
材料科学
氧化铁纳米粒子
超顺磁性
磁性纳米粒子
双功能
药物输送
化学
磁场
有机化学
催化作用
物理
磁化
量子力学
作者
Tobias Bollhorst,Shakiba Shahabi,Katharina Wörz,Charlotte Petters,Ralf Dringen,Michael Maas,Kurosch Rezwan
标识
DOI:10.1002/ange.201408515
摘要
Abstract Colloidosomes are microcapsules consisting of nanoparticle shells. These microcarriers can be self‐assembled from a wide range of colloidal particles with selective chemical, physical, and morphological properties and show promise for application in the field of theranostic nanomedicine. Previous studies have mainly focused on fairly large colloidosomes (>1 μm) based on a single kind of particle; however, the intrinsic building‐block nature of this microcarrier has not been exploited so far for the introduction of tailored functionality at the nanoscale. We report a synthetic route based on interfacial shear rheology studies that allows the simultaneous incorporation of different nanoparticles with distinct physical properties, that is, superparamagnetic iron oxide and fluorescent silica nanoparticles, in a single submicron colloidosome. These tailor‐made microcapsules can potentially be used in various biomedical applications, including magnetic hyperthermia, magnetic particle imaging, drug targeting, and bioimaging.
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