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快速热干燥法合成稳定性堪比巯基化 DNA 的非硫醇化球形核酸。

Rapid Thermal Drying Synthesis of Nonthiolated Spherical Nucleic Acids with Stability Rivaling Thiolated DNA.

机构信息

Beijing Laboratory for Food Quality and Safety, College of Food Science and Nutritional Engineering, China Agricultural University, No. 17 Qinghua East Road, Haidian District, 100083, Beijing, China.

Department of Chemistry, Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Avenue West, N2L 3G1, Waterloo, Ontario, Canada.

出版信息

Angew Chem Int Ed Engl. 2024 Dec 2;63(49):e202410353. doi: 10.1002/anie.202410353. Epub 2024 Oct 22.

Abstract

Attaching DNA oligonucleotides to gold nanoparticles (AuNPs) to prepare spherical nucleic acids (SNAs) has offered tremendous insights into surface chemistry with resulting bioconjugates serving as critical reagents in biosensors and nanotechnology. While thiolated DNA is generally required to achieve stable conjugates, we herein communicate that using a thermal drying method, a high DNA density and excellent SNA stability was achieved using nonthiolated DNA, rivaling the performance of thiolated DNA such as surviving 1 M NaCl, 2 month stability in 0.3 M NaCl and working in 50 % serum. A poly-adenine block with as few as two consecutive terminal adenine bases is sufficient for anchoring on AuNPs. By side-by-side comparison with the salt-aging method, the conjugation mechanism was attributed to competitive adenine adsorption at high temperature along with an extremely high DNA concentration upon drying. Bioanalytical applications of nonthiolated SNAs were validated in both solution and paper-based sensor platforms, facilitating cost-effective applications for SNAs.

摘要

将脱氧核糖核酸(DNA)寡核苷酸连接到金纳米粒子(AuNPs)上以制备球形核酸(SNAs),为表面化学提供了巨大的见解,由此产生的生物缀合物作为生物传感器和纳米技术中的关键试剂。虽然巯基化 DNA 通常是实现稳定缀合物所必需的,但本文报道了一种热干燥方法,该方法使用非巯基化 DNA 实现了高 DNA 密度和优异的 SNA 稳定性,其性能可与巯基化 DNA 相媲美,例如在 1 M NaCl 中存活、在 0.3 M NaCl 中稳定 2 个月以及在 50%血清中工作。具有两个连续末端腺嘌呤碱基的多腺嘌呤块足以用于在 AuNPs 上锚定。通过与盐老化方法进行并列比较,将其归因于在高温下竞争腺嘌呤吸附以及干燥时极高的 DNA 浓度的缀合机制。非巯基化 SNAs 的生物分析应用在溶液和基于纸的传感器平台中得到了验证,为 SNAs 提供了具有成本效益的应用。

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