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基于微球支撑的脂质双层平台在流态表面上进行 DNA 反应。

A Microsphere-Supported Lipid Bilayer Platform for DNA Reactions on a Fluid Surface.

机构信息

Center for Integrated Nanotechnologies, Los Alamos National Laboratory , Los Alamos, New Mexico 87545, United States.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 6;9(35):30185-30195. doi: 10.1021/acsami.7b11046. Epub 2017 Aug 24.

Abstract

We report a versatile microsphere-supported lipid bilayer system that can serve as a general-purpose platform for implementing DNA nanotechnologies on a fluid surface. To demonstrate our platform, we implemented both toehold-mediated strand displacement (TMSD) and DNAzyme reactions, which are typically performed in solution and which are the cornerstone of DNA-based molecular logic and dynamic DNA nanotechnology, on the surface. We functionalized microspheres bearing supported lipid bilayers (μSLBs) with membrane-bound nucleic acid components. Using functionalized μSLBs, we developed TMSD and DNAzyme reactions by optimizing reaction conditions to reduce nonspecific interactions between DNA and phospholipids and to enhance bilayer stability. Additionally, the physical and optical properties of the bilayer were tuned via lipid composition and addition of fluorescently tagged lipids to create stable and multiplexable μSLBs that are easily read out by flow cytometry. Multiplexed TMSD reactions on μSLBs enabled the successful operation of a Dengue serotyping assay that correctly identified all 16 patterns of target sequences to demonstrate detection of DNA strands derived from the sequences of all four Dengue serotypes. The limit of detection for this assay was 3 nM. Furthermore, we demonstrated DNAzyme reactions on a fluid lipid surface, which benefit from free diffusion on the surface. This work provides the basis for expansion of both TMSD and DNAzyme based molecular reactions on supported lipid bilayers for use in molecular logic and DNA nanotechnology. As our system is multiplexable and results in fluid surfaces, it may be of use in compartmentalization and improved kinetics of molecular logic reactions and as a useful building block in a variety of DNA nanotechnology systems.

摘要

我们报告了一种多功能的微球支撑脂质双层系统,可作为在流体表面上实施 DNA 纳米技术的通用平台。为了证明我们的平台,我们在表面上实施了 toehold-mediated strand displacement (TMSD) 和 DNAzyme 反应,这两种反应通常在溶液中进行,是基于 DNA 的分子逻辑和动态 DNA 纳米技术的基石。我们将带有支撑脂质双层(μSLB)的微球功能化,带有膜结合核酸组件。使用功能化的 μSLB,我们通过优化反应条件来减少 DNA 和磷脂之间的非特异性相互作用并增强双层稳定性,从而开发 TMSD 和 DNAzyme 反应。此外,通过脂质组成和添加荧光标记的脂质来调整双层的物理和光学性质,以创建稳定且可多路复用的 μSLB,这些 μSLB 可通过流式细胞术轻松读取。在 μSLB 上进行的多路复用 TMSD 反应成功地进行了登革热血清分型检测,正确识别了所有 16 种靶序列模式,证明了能够检测来自所有四种登革热血清型的 DNA 链。该测定的检测限为 3 nM。此外,我们在流体脂质表面上进行了 DNAzyme 反应,这得益于表面上的自由扩散。这项工作为在支撑脂质双层上进行 TMSD 和 DNAzyme 基分子反应的扩展提供了基础,可用于分子逻辑和 DNA 纳米技术。由于我们的系统是多路复用的,并且产生的是流体表面,因此它可能在分子逻辑反应的分隔和动力学改进方面有用,并且可以作为各种 DNA 纳米技术系统的有用构建块。

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