清脆的
核酸
核酸检测
化学
计算生物学
核酸定量
DNA
分子信标
核酸内切酶
分子诊断学
核糖核酸
纳米技术
寡核苷酸
生物化学
生物
生物信息学
基因
材料科学
作者
Desheng Chen,Yuanwen Liang,Honghong Wang,Hui Wang,Fengxia Su,Shouxin Zhang,Shuhui Wang,Weiliang Liu,Zhengping Li
标识
DOI:10.1021/acs.analchem.2c05767
摘要
The target-dependent endonuclease activity (also known as the trans-cleavage activity) of CRISPR-Cas systems has stimulated great interest in the development of nascent sensing strategies for nucleic acid diagnostics. Despite many attempts, the majority of the sensitive CRISPR-Cas diagnostics strategies mainly rely on nucleic acid preamplification, which generally needs complex probes/primers designs, multiple experimental steps, and a longer testing time, as well as introducing the risk of false-positive results. In this work, we propose the CRISPR-Cas-Driven Single Micromotor (Cas-DSM), which can directly detect the nucleic acid targets at a single-molecule level with high specificity. We have demonstrated that the Cas-DSM is a reliable and practical method for the quantitative detection of DNA/RNA in various complex clinical samples as well as in individual cells without any preamplification processes. Due to the excellent features of the CRISPR/Cas system, including constant temperature, simple design, high specificity, and flexible programmability, the Cas-DSM could serve as a simple and universal platform for nucleic acid detection. More importantly, this work will provide a breakthrough for the development of next-generation amplification-free CRISPR/Cas sensing toolboxes.
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