DNA
检出限
适体
生物分析
纳米技术
线性范围
生物传感器
微型多孔材料
核酸
材料科学
分子信标
肽核酸
化学
寡核苷酸
分子生物学
生物
色谱法
生物化学
复合材料
作者
Shiwei Xu,Guofeng Wang,Yueyue Feng,Juanjuan Zheng,Liying Huang,Yajun Wang,Nannan Liu
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2024-04-18
卷期号:9 (4): 2050-2056
被引量:3
标识
DOI:10.1021/acssensors.4c00072
摘要
DNA carries genetic information and can serve as an important biomarker for the early diagnosis and assessment of the disease prognosis. Here, we propose a bottom-up assembly method for a silica nanowire-filled glass microporous (SiNWs@GMP) sensor and develop a universal sensing platform for the ultrasensitive and specific detection of DNA. The three-dimensional network structure formed by SiNWs provides them with highly abundant and accessible binding sites, allowing for the immobilization of a large amount of capture probe DNA, thereby enabling more target DNA to hybridize with the capture probe DNA to improve detection performance. Therefore, the SiNWs@GMP sensor achieves ultrasensitive detection of target DNA. In the detection range of 1 aM to 100 fM, there is a good linear relationship between the decrease rate of current signal and the concentration of target DNA, and the detection limit is as low as 1 aM. The developed SiNWs@GMP sensor can distinguish target DNA sequences that are 1-, 3-, and 5-mismatched, and specifically recognize target DNA from complex mixed solution. Furthermore, based on this excellent selectivity and specificity, we validate the universality of this sensing strategy by detecting DNA (H1N1 and H5N1) sequences associated with the avian influenza virus. By replacing the types of nucleic acid aptamers, it is expected to achieve a wide range and low detection limit sensitive detection of various biological molecules. The results indicate that the developed universal sensing platform has ultrahigh sensitivity, excellent selectivity, stability, and acceptable reproducibility, demonstrating its potential application in DNA bioanalysis.
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