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单个DNA分子在有序纳米孔中的行为。

Behavior of single DNA molecules in the well-ordered nanopores.

作者信息

Shiu Jau-Ye, Whang Wha-Tzong, Chen Peilin

机构信息

Department of Material Science and Engineering, National Chiao Tung University, Hsin Chu 300, Taiwan.

出版信息

J Chromatogr A. 2008 Oct 3;1206(1):72-6. doi: 10.1016/j.chroma.2008.07.012. Epub 2008 Jul 11.

Abstract

Here we describe a simple approach to fabricate robust three-dimensional periodic porous nanostructures inside the microchannels. In this approach, the colloidal crystals were first grown inside the microchannel using an evaporation-assisted self-assembly process. Then the void spaces among the colloidal crystals were filled with epoxy-based negative tone photoresist. After subsequent development and nanoparticle removal, the well-ordered nanoporous structures inside the microchannel could be fabricated. Depending on the size of the colloidal nanoparticles, periodic porous nanostructures inside the microchannels with cavity size of 330 and 570 nm have been obtained. The dimensions of interconnecting pores for these cavities were around 40 and 64 nm, respectively. The behavior of single lambda-phage DNA molecules in these nanoporous structures was studied using fluorescence microscopy. It was found that the length of DNA molecules oscillated in the nanoporous structures. The measured length for lambda-phage DNA was larger in the 330 nm cavity than those measured in the 570 nm cavity.

摘要

在这里,我们描述了一种在微通道内制造坚固的三维周期性多孔纳米结构的简单方法。在这种方法中,首先利用蒸发辅助自组装过程在微通道内生长胶体晶体。然后用环氧基负性光刻胶填充胶体晶体之间的空隙。经过后续显影和纳米颗粒去除后,即可在微通道内制造出排列有序的纳米多孔结构。根据胶体纳米颗粒的大小,已获得微通道内孔径为330和570 nm的周期性多孔纳米结构。这些孔腔的连通孔尺寸分别约为40和64 nm。利用荧光显微镜研究了单个λ噬菌体DNA分子在这些纳米多孔结构中的行为。发现DNA分子的长度在纳米多孔结构中发生振荡。在330 nm孔腔中测得的λ噬菌体DNA长度大于在570 nm孔腔中测得的长度。

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