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Sterically controlled docking of gold nanoparticles on ferritin surface by DNA hybridization

机译:通过DNA杂交立体控制金纳米颗粒在铁蛋白表面的对接

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Novel assemblies of DNA-functionalized gold nanoparticles (DNA-GNPs) have received considerable interest due to their fascinating properties which are desired for various detection applications. In this study, we present innovative GNP assemblies which have a cage-shaped protein ferritin in the center, and discrete GNPs sterically surrounding the central ferritin. These assemblies were constructed by hybridizing DNA-GNP to chemically DNA-modified ferritin, which has a hollow cavity or an iron NP core. Subsequent gel electrophoresis purification and transmission electron microscopy observation showed that ferritin/DNA/GNP assemblies were successfully constructed and can be isolated as independent functional units, which can be used to investigate not only the interaction between the GNPs of complicated GNP clusters but also the interaction between the GNPs and the internalized NP.
机译:DNA官能化的金纳米颗粒(DNA-GNP)的新型组件由于其令人着迷的特性而受到了广泛的关注,这是各种检测应用程序所希望的。在这项研究中,我们提出了创新的GNP组件,其中心具有一个笼状蛋白铁蛋白,而离散的GNP在空间上围绕着中心铁蛋白。这些组件是通过将DNA-GNP与化学修饰的具有空洞或铁NP核心的DNA修饰的铁蛋白构建而成的。随后的凝胶电泳纯化和透射电镜观察表明,铁蛋白/ DNA / GNP组件已成功构建并可以作为独立的功能单元分离,不仅可用于研究复杂GNP簇之间GNP之间的相互作用,而且还可用于研究相互作用在GNP和内部化的NP之间。

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