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DNA 在柠檬酸包覆金纳米粒子上的表面科学。

Surface science of DNA adsorption onto citrate-capped gold nanoparticles.

机构信息

Department of Chemistry and Waterloo Institute for Nanotechnology, University Of Waterloo, Waterloo, Ontario N2L 3G1, Canada.

出版信息

Langmuir. 2012 Feb 28;28(8):3896-902. doi: 10.1021/la205036p. Epub 2012 Feb 13.

Abstract

Single-stranded DNA can be adsorbed by citrate capped gold nanoparticles (AuNPs), resulting in increased AuNP stability, which forms the basis of a number of biochemical and analytical applications, but the fundamental interaction of this adsorption reaction remains unclear. In this study, we measured DNA adsorption kinetics, capacity, and isotherms, demonstrating that the adsorption process is governed by electrostatic forces. The charge repulsion among DNA strands and between DNA and AuNPs can be reduced by adding salt, reducing pH or by using noncharged peptide nucleic acid (PNA). Langmuir adsorption isotherms are obtained, indicating the presence of both adsorption and desorption of DNA from AuNPs. While increasing salt concentration facilitates DNA adsorption, the desorption rate is also enhanced in higher salt due to DNA compaction. DNA adsorption capacity is determined by DNA oligomer length, DNA concentration, and salt. Previous studies indicated faster adsorption of short DNA oligomers by AuNPs, we find that once adsorbed, longer DNAs are much more effective in protecting AuNPs from aggregation. DNA adsorption is also facilitated by using low pH buffers and high alcohol concentrations. A model based on electrostatic repulsion on AuNPs is proposed to rationalize the DNA adsorption/desorption behavior.

摘要

单链 DNA 可以被柠檬酸钠稳定的金纳米颗粒(AuNPs)吸附,从而提高 AuNP 的稳定性,这是许多生化和分析应用的基础,但这种吸附反应的基本相互作用仍不清楚。在这项研究中,我们测量了 DNA 的吸附动力学、容量和等温线,证明吸附过程受静电力控制。通过添加盐、降低 pH 值或使用非带电的肽核酸(PNA),可以减少 DNA 链之间以及 DNA 和 AuNPs 之间的电荷排斥。得到 Langmuir 吸附等温线,表明 DNA 在 AuNPs 上存在吸附和解吸两种过程。虽然增加盐浓度有利于 DNA 的吸附,但由于 DNA 的压缩,在较高盐浓度下,解吸速率也会增强。DNA 的吸附容量取决于 DNA 寡聚物的长度、DNA 浓度和盐浓度。先前的研究表明 AuNPs 对短 DNA 寡聚物的吸附速度更快,我们发现,一旦被吸附,较长的 DNA 更有效地防止 AuNPs 聚集。使用低 pH 缓冲液和高酒精浓度也可以促进 DNA 的吸附。提出了一个基于 AuNPs 上静电排斥的模型来合理化 DNA 的吸附/解吸行为。

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