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花状蛋白-无机杂化纳米粒子组装的分级结构多孔超粒子的胶体

Colloidal Assembly of Hierarchically Structured Porous Supraparticles from Flower-Shaped Protein-Inorganic Hybrid Nanoparticles.

机构信息

School of Chemical & Biomolecular Engineering, Georgia Institute of Technology , 950 Atlantic Drive NW, Atlanta, Georgia 30332, United States.

出版信息

ACS Nano. 2016 Sep 27;10(9):8271-80. doi: 10.1021/acsnano.6b01003. Epub 2016 Aug 23.

Abstract

Mimicry of biomineralization is an attractive strategy to fabricate nanostructured hybrid materials. While biomineralization involves processes that organize hybrid clusters into complex structures with hierarchy, arrangement of artificial components in biomimetic approaches has been challenging. Here, we demonstrate self-assembly of hierarchically structured porous supraparticles from protein-inorganic hybrid flower-shaped (FS) nanoparticle building blocks. In our strategy, the FS nanoparticles self-assemble via high valency interactions in combination with interfacial adsorption and compression. The flower-like shape directed robust assembly of the FS nanoparticles into chain-like clusters in solution, which were further assembled into spherical supraparticles during rotation of FS nanoparticle solution. Continuously expanding and contracting the air-water interface during rotation catalyzed assembly of FS nanoparticle clusters, indicating that adsorption and compression of the building blocks at the interface were critical. The resulting supraparticles contain hierarchical pores which are translated from the structural characteristics of individual FS nanoparticle building blocks. The protein-inorganic supraparticles are protein-compatible, have large surface area, and provide specific affinity recognition for robust protein immobilization. A variety of functional proteins could be immobilized to the porous supraparticles, making it a general platform that could provide benefits for many applications.

摘要

仿生矿化是一种很有吸引力的策略,可以用来制造纳米结构的杂化材料。虽然生物矿化涉及到组织杂化簇形成具有层次结构的复杂结构的过程,但在仿生方法中人工组件的排列一直具有挑战性。在这里,我们展示了从蛋白质-无机杂化花形(FS)纳米颗粒构建块自组装分级多孔超粒子。在我们的策略中,FS 纳米颗粒通过高价相互作用结合界面吸附和压缩进行自组装。花形形状在溶液中引导 FS 纳米颗粒的链状簇的稳定组装,在 FS 纳米颗粒溶液的旋转过程中进一步组装成球形超粒子。在旋转过程中不断扩大和收缩气-液界面,促进 FS 纳米颗粒簇的组装,表明界面处的吸附和压缩是关键的。所得的超粒子包含分级孔,这些孔是从单个 FS 纳米颗粒构建块的结构特征转化而来的。这种蛋白质-无机超粒子与蛋白质相容,具有大的表面积,并为强固的蛋白质固定化提供特异性亲和识别。各种功能蛋白可以固定到多孔超粒子上,使其成为一个通用平台,可以为许多应用带来好处。

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