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掌握DNA纳米结构的复杂性。

Mastering the complexity of DNA nanostructures.

作者信息

Brucale Marco, Zuccheri Giampaolo, Samorì Bruno

机构信息

Department of Biochemistry, G. Moruzzi University of Bologna, Via Irnerio 48, Bologna 40126, Italy.

出版信息

Trends Biotechnol. 2006 May;24(5):235-43. doi: 10.1016/j.tibtech.2006.02.009. Epub 2006 Mar 15.

Abstract

The self-assembly of oligodeoxynucleotides is a versatile and powerful tool for the construction of objects in the nanoscale. The strictly information-driven pairing of DNA fragments can be used to rationally design and build nanostructures with planned topologies and geometries. Taking advantage of the steadily expanding library of well-characterized DNA motifs, several examples of structures with different dimensionalities have appeared in the literature in the past few years, laying the foundations for a promising DNA-mediated, bottom-up approach to nanotechnology. This article focuses on recent developments in this area of research and proposes a classification of DNA nanostructures based on topological considerations in addition to describing strategies for tackling the inherent complexities of such an endeavor.

摘要

寡脱氧核苷酸的自组装是构建纳米级物体的一种通用且强大的工具。DNA片段严格的信息驱动配对可用于合理设计和构建具有预定拓扑结构和几何形状的纳米结构。利用不断扩大的、特征明确的DNA基序文库,在过去几年中,文献中出现了几个不同维度结构的例子,为一种有前景的、基于DNA介导的自下而上的纳米技术方法奠定了基础。本文重点关注该研究领域的最新进展,除了描述应对此类工作固有复杂性的策略外,还基于拓扑考虑对DNA纳米结构提出了一种分类方法。

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