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走向理性设计:开发将 DNA 锚定到金纳米粒子的通用冷冻路线。

Towards rational design: Developing universal freezing routes for anchoring DNA onto gold nanoparticles.

机构信息

Beijing Laboratory for Food Quality and Safety, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China.

Beijing Laboratory for Food Quality and Safety, College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China; Key Laboratory of Safety Assessment of Genetically Modified Organism (Food Safety), Ministry of Agriculture and Rural Affairs, Beijing 100083, China.

出版信息

J Colloid Interface Sci. 2024 Feb;655:830-840. doi: 10.1016/j.jcis.2023.11.041. Epub 2023 Nov 10.

Abstract

DNA-functionalized gold nanoparticles (AuNPs), also known as spherical nucleic acids, are widely used in the development of biosensors, resulting in anchoring DNA onto AuNPs being a crucial preparation step and a popular research topic. The latest freeze-anchoring method is a simple and time-saving alternative to traditional salt aging; however, its universal applicability remains limited. In this study, we explored the interfacial interaction between DNA and the AuNP surface and proposed various universal routes for promoting freezing anchoring. Among them, rational design has been considered as the core idea to overcome these limitations, particularly using non-thiolated DNA anchoring, which offers significant advantages such as being unmodified, cost-effective, and easily accessible. We emphasize the importance of sequence structure and preparation process optimization, which mainly considers differences in DNA conformation and electrostatic repulsion. Additionally, the prepared DNA-functionalized AuNPs exhibited complete biological hybridization capability, and the extreme limiting conditions for non-thiolated DNA freeze anchoring were clarified. In summary, this study enhances our understanding of the interfacial relationship between DNA and AuNPs in the freeze-anchoring process and can significantly advance the applications of DNA-functionalized AuNP-based biosensors.

摘要

DNA 功能化金纳米粒子(AuNPs),也称为球形核酸,广泛应用于生物传感器的开发,因此将 DNA 锚定到 AuNPs 上是一个关键的制备步骤,也是一个热门的研究课题。最新的冷冻锚定方法是一种简单、省时的替代传统盐老化的方法;然而,其普遍适用性仍然有限。在本研究中,我们探讨了 DNA 和 AuNP 表面之间的界面相互作用,并提出了各种促进冷冻锚定的通用途径。其中,合理的设计被认为是克服这些限制的核心思想,特别是使用非硫醇化 DNA 锚定,它具有未修饰、经济高效和易于获得等显著优势。我们强调了序列结构和制备过程优化的重要性,这主要考虑了 DNA 构象和静电排斥的差异。此外,所制备的 DNA 功能化 AuNPs 表现出完整的生物杂交能力,并阐明了非硫醇化 DNA 冷冻锚定的极限条件。总之,本研究加深了我们对 DNA 和 AuNPs 在冷冻锚定过程中界面关系的理解,并能显著推进基于 DNA 功能化 AuNP 的生物传感器的应用。

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