生物传感器
化学
堆积
杂交探针
DNA
组合化学
纳米技术
A-DNA
核苷酸
纳米材料
DNA–DNA杂交
生物物理学
生物化学
基因
材料科学
生物
有机化学
作者
Lele Wang,Yanli Wen,Xue Yang,Li Xu,Wen‐Tzong Liang,Ying Zhu,Lihua Wang,Yan Li,Yuan Li,Min Ding,Shuzhen Ren,Zhenzhou Yang,Min Lv,Jichao Zhang,Kang Ma,Gang Liu
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2019-11-20
卷期号:91 (24): 16002-16009
被引量:33
标识
DOI:10.1021/acs.analchem.9b04757
摘要
Multiblock DNA probe attracted a large amount of scientific attention, for the development of multitarget biosensor and improved specificity/sensitivity. However, the development of multiblock DNA probes highly relied on the chemical synthesis of organic linkers or nanomaterials, which limited their practicability and biological compatibility. In this work, we developed a label-free assembling strategy using a triblock DNA capture probe, which connects two DNA probes with its intrinsic polyA fragment (probe–PolyA–probe, PAP). The middle polyA segment has a high affinity to the gold electrode surface, leading to excellent reproducibility, stability, and regeneration of our biosensor. Two flanking capture probes were tandemly co-assembled on the electrode surface with consistent spatial relationship and exactly the same amount. When combined with the target DNA, the hybridization stability was improved, because of the strong base stacking effect of two capture probes. The sensitivity of our biosensor was proved to be 10 fM, with a wide analysis range between 10 fM to 1 nM. Our PAP-based biosensor showed excellent specificity when facing mismatched DNA sequences. Even single nucleotide polymorphisms can be distinguished by each probe. The excellent practicability of our biosensor was demonstrated by analyzing genomic DNA both with and without PCR amplification.
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