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Selective DNA-Directed Assembly on Dual-Functionalized Microparticles

机译:双功能微粒上的选择性DNa导向组装

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摘要

The bottom-up assembly of functional devices requires novel building blocks to facilitate the incorporation of functional and structural hierarchy. Anisotropic building blocks can substantially broaden the creation of self-assembled devices with unique properties because of their morphological and/or chemical asymmetry. In this regard, we have created microspheres with one hemispherical face exposing silica and the other exposing gold. These microspheres were formed by the shadow deposition of gold onto silica microspheres. The two chemical surfaces allowed use of different surface reactions—silane chemistry for the silica side and thiol chemistry for the gold side—for immobilizing different oligonucleotide sequences on each of the two faces. These dual-functionalized microspheres were used in the selective orthogonal assembly of fluorophore-tagged target oligonucleotides. The DNA-directed assembly was confirmed by confocal microscopy of the microspheres. In essence, employing DNA as the linker molecule, these “Janus” particles can be assembled into various novel 1-D, 2-D, and 3-D structures, which are difficult to realize using symmetric building blocks.
机译:功能设备的自下而上组装需要新颖的构造块,以促进功能和结构层次结构的结合。各向异性构造块由于其形态和/或化学不对称性,因此可以大大拓宽具有独特属性的自组装设备的创建。在这方面,我们创建了一个微球,其中一个半球面暴露于二氧化硅,另一个暴露金。这些微球是通过金在二氧化硅微球上的阴影沉积而形成的。这两个化学表面允许使用不同的表面反应(二氧化硅侧的硅烷化学和金侧的硫醇化学)将不同的寡核苷酸序列固定在两个面上。这些双功能的微球用于荧光团标记的目标寡核苷酸的选择性正交组装。通过微球的共聚焦显微镜证实了DNA指导的组装。从本质上讲,利用DNA作为连接分子,这些“ Janus”颗粒可以组装成各种新颖的1-D,2-D和3-D结构,使用对称构件很难实现。

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