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A Universal Strategy for Enhancing the Circulating miRNAs’ Detection Performance of Rolling Circle Amplification by Using a Dual-Terminal Stem-Loop Padlock

滚动圆复制 分子信标 计算生物学 多路复用 生物 核酸 模板 小RNA 计算机科学 纳米技术 生物系统 生物信息学 DNA 聚合酶 材料科学 遗传学 寡核苷酸 基因
作者
Hanqing Xu,Xianlan Wu,Qian Liu,Yang Cheng,Man Shen,Yingran Wang,Shuai Liu,Shuang Zhao,Ting Xiao,Minghui Sun,Zishan Ding,Jing Bao,Ming Chen,Mingxuan Gao
出处
期刊:ACS Nano [American Chemical Society]
卷期号:18 (1): 436-450 被引量:26
标识
DOI:10.1021/acsnano.3c07721
摘要

Rolling circle amplification (RCA) is one of the most promising nucleic acid detection technologies and has been widely used in the molecular diagnosis of disease. Padlock probes are often used to form circular templates, which are the core of RCA. However, RCA often suffers from insufficient specificity and sensitivity. Here we report a reconstruction strategy for conventional padlock probes to promote their overall performance in nucleic acid detection while maintaining probe functions uncompromised. When two rationally designed stem-loops were strategically placed at the two terminals of linear padlock probes, the specificity of target recognition was enhanced and the negative signal was significantly delayed. Our design achieved the best single-base discrimination compared with other structures and over a 1000-fold higher sensitivity than that of the conventional padlock probe, validating the effectiveness of this reconstruction. In addition, the underlying mechanisms of our design were elucidated through molecular dynamics simulations, and the versatility was validated with longer and shorter padlocks targeting the same target, as well as five additional targets (four miRNAs and dengue virus – 2 RNA mimic (DENV-2)). Finally, clinical applicability in multiplex detection was demonstrated by testing real plasma samples. Our exploration of the structures of nucleic acids provided another perspective for developing high-performance detection systems, improving the efficacy of practical detection strategies, and advancing clinical diagnostic research.
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