An Autocatalytic Molecular Sensor Enables Rapid, Sensitive, and One-Pot Detection of Nucleic Acids

核酸 自催化 化学 纳米技术 DNA 生物物理学 生物传感器 生物化学 寡核苷酸 脱氧核酶 分子探针
作者
Xue Li,Zhihao Xu,Xiaowei Ma,Yanhao Dong,Qian Jin,Pengfei Hou,Weifeng Han,Donglei Yang,Li Pan,Liang Dong,Wei Xue,Min Li,Pengfei Wang
出处
期刊:ACS Nano [American Chemical Society]
卷期号:20 (25): 18462-18478
标识
DOI:10.1021/acsnano.6c06154
摘要

Circulating nucleic acids are emerging disease markers whose clinical applications are hindered by the lack of rapid, sensitive, convenient, and cost-effective detection assays. Inspired by the natural replication of virus, here, we developed a biomimetic one-step, one-pot, isothermal detection assay named RAPID to realize rapid and sensitive detection of nucleic acids with minimal reliance on instruments. The core element of RAPID is an autocatalytic molecular sensor that exploits the viral replication endonuclease of duck circovirus (i.e., DCV) to transform rolling circle amplification (RCA) from linear to exponential. DCV cleaves target-induced, RCA-generated amplicons into target analogs to prime secondary RCA reactions to catalytically propagate the amplification sensor. RAPID enables rapid (∼10 min), ultrasensitive (attomolar sensitivity), and direct (RNA extraction-free) detection of microRNAs and viral RNAs that is compatible with smartphone-based fluorescence detection devices. RAPID exhibited pronounced clinical translational capability by quantitatively profiling a panel of six miRNAs to achieve accurate discrimination of prostate cancer from benign prostatic hyperplasia that is exceptionally important but challenging in clinics. Furthermore, RAPID demonstrated rapid detection of influenza A viral infections of high accuracy in point-of-care settings. Simple nucleic acid detection assays like RAPID could largely promote the development and application of liquid biopsy molecular diagnostics.
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