适体
生物传感器
脱氧核酶
溶菌酶
DNA
纳米技术
检出限
核酸
化学
材料科学
分子生物学
色谱法
生物
生物化学
作者
Shuo Qi,Yuhan Sun,Xiaoze Dong,Imran Mahmood Khan,Yan Lv,Yin Zhang,Nuo Duan,Shijia Wu,Zhouping Wang
出处
期刊:Nano Research
[Springer Nature]
日期:2022-08-21
卷期号:16 (1): 1286-1295
被引量:9
标识
DOI:10.1007/s12274-022-4794-4
摘要
Dynamic DNA nanodevices have gained tremendous attention due to their extraordinary inherent functionality and advantages, however, dynamic DNA nanodevices-based biosensors are still challenging due to their high reliance on proteases and limited amplification capabilities. Herein, exploiting bispecific aptamer as initiators for the first time, we developed a three-dimensional (3D) DNA nanomotor biosensor powered by DNAzyme and entropy-driven circuit for sensitive and specific detection of lysozyme, in which walking and rolling strategies are efficiently integrated to achieve excellent signal amplification capability. Benefiting from the high selectivity of bispecific aptamer, the 3D DNA nanomotor biosensor can respond to lysozyme with high specificity and operate at high speed to release signals. The whole process is independent of protease, avoiding the influence of adverse environment on the operation stability. Under optimal conditions, it can achieve a limit of detection as low as 0.01 pg/mL with an excellent linear range of 0.05 pg/mL–500 ng/mL for lysozyme. Furthermore, the proposed strategy revealed high accuracy in the analysis of real samples, indicating a great potential for the application of nanomotor biosensors to the detection of non-nucleic acid targets.
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