化学
核酸
电化学
乙二醇
微电极
纳米技术
循环伏安法
生物物理学
生物化学
电极
材料科学
生物
有机化学
物理化学
作者
Daizong Ji,Mingquan Guo,Yungen Wu,Wentao Liu,Shi Luo,Xuejun Wang,Kang Hua,Yiheng Chen,Changhao Dai,Derong Kong,Hongwenjie Ma,Yunqi Liu,Dacheng Wei
摘要
The existing electrochemical biosensors lack controllable and intelligent merit to modulate the sensing process upon external stimulus, leading to challenges in analyzing a few copies of biomarkers in unamplified samples. Here, we present a self-actuated molecular-electrochemical system that consists of a tentacle and a trunk modification on a graphene microelectrode. The tentacle that contains a probe and an electrochemical label keeps an upright orientation, which increases recognition efficiency while decreasing the pseudosignal. Once the nucleic acids are recognized, the tentacles nearby along with the labels are spontaneously actuated downward, generating electrochemical responses under square wave voltammetry. Thus, it detects unamplified SARS-CoV-2 RNAs within 1 min down to 4 copies in 80 μL, 2-6 orders of magnitude lower than those of other electrochemical assays. Double-blind testing and 10-in-1 pooled testing of nasopharyngeal samples yield high overall agreement with reverse transcription-polymerase chain reaction results. We fabricate a portable prototype based on this system, showing great potential for future applications.
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