化学
生物传感器
环介导等温扩增
DNA
纳米技术
连锁反应
计算生物学
生物化学
材料科学
生物
光化学
作者
Yuxin Bai,Pingyao Xu,Shi Li,Dongsheng Wang,Kaijiong Zhang,Zheng Dongming,Daifan Yue,Guiji Zhang,Shuya He,Yan Li,Haimin Zou,Yao Deng
出处
期刊:Talanta
[Elsevier]
日期:2024-02-12
卷期号:272: 125759-125759
被引量:1
标识
DOI:10.1016/j.talanta.2024.125759
摘要
Biosensors have emerged as ideal analytical devices for various bio-applications owing to their low cost, convenience, and portability, which offer great potential for improving global healthcare. DNA self-assembly techniques have been enriched with the development of innovative amplification strategies, such as dispersion-to-localization of catalytic hairpin assembly, and dumbbell hybridization chain reaction, which hold great significance for building biosensors capable of realizing sensitive, rapid and multiplexed detection of pathogenic microorganisms. Here, focusing primarily on the signal amplification strategies based on DNA self-assembly, we concisely summarized the strengths and weaknesses of diverse isothermal nucleic acid amplification techniques. Subsequently, both single-layer and cascade amplification strategies based on traditional catalytic hairpin assembly and hybridization chain reaction were critically explored. Furthermore, a comprehensive overview of the recent advances in DNA self-assembled biosensors for the detection of pathogenic microorganisms is presented to summarize methods for biorecognition and signal amplification. Finally, a brief discussion is provided about the current challenges and future directions of DNA self-assembled biosensors.
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