适体
DNA
胶体金
生物传感器
化学
生物物理学
碱基对
A-DNA
纳米技术
纳米颗粒
核糖核酸
材料科学
生物
分子生物学
生物化学
基因
作者
Xun Liu,Yu Zhao,Yuzhe Ding,Jianhua Wang,Juewen Liu
出处
期刊:Langmuir
[American Chemical Society]
日期:2022-04-21
卷期号:38 (18): 5542-5549
被引量:15
标识
DOI:10.1021/acs.langmuir.2c00119
摘要
With extremely high extinction coefficients and other unique optical properties, gold nanoparticles (AuNPs) have received growing interest in developing biosensors. DNA hairpin structures are very popular probes for the detection of not only complementary DNA or RNA but also aptamer targets. This work aims to understand the effect of the structure and sequence of hairpin DNA for the stabilization of AuNPs and its implications in AuNP-based label-free colorimetric biosensors. A series of hairpin DNA with various loop sizes from 4 to 26 bases and sequences (random sequences, poly-A and poly-T) were tested, but they showed similar abilities to protect AuNPs from aggregation. Using hairpin DNA with a tail under the same conditions, optimal protection was achieved with a six-base or longer tail. DNA hairpins are likely adsorbed via their tail regions or with their terminal bases if no tail is present. Molecular dynamics simulations showed that the rigidity of the hairpin loop region disfavored its adsorption to AuNPs, while the flexible tail region is favored. Finally, a DNA sensing assay was conducted using different structured DNA, where hairpin DNA with a tail doubled the sensitivity compared to the tail-free hairpin.
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