An enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reaction

Abstract A novel electrochemical biosensor with high amplification efficiency was explored for serum microRNA-21 (miRNA-21) detection. This biosensor consisted of the target recycling amplification (TRA) and non-linear hybridization chain reaction (NHCR). When the target miRNA-21 was presented, hair...

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Main Authors: Jing Guo, Shou-feng Zhao, Shuang Chen, Wei-qing Song, Li-qun Li
Format: Article
Language:English
Published: Nature Portfolio 2025-07-01
Series:Scientific Reports
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Online Access:https://doi.org/10.1038/s41598-025-06003-y
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author Jing Guo
Shou-feng Zhao
Shuang Chen
Wei-qing Song
Li-qun Li
author_facet Jing Guo
Shou-feng Zhao
Shuang Chen
Wei-qing Song
Li-qun Li
author_sort Jing Guo
collection DOAJ
description Abstract A novel electrochemical biosensor with high amplification efficiency was explored for serum microRNA-21 (miRNA-21) detection. This biosensor consisted of the target recycling amplification (TRA) and non-linear hybridization chain reaction (NHCR). When the target miRNA-21 was presented, hairpin probe 1 (HP1) could be opened and hybridized with target miRNA-21, the formation of DNA/RNA complexes could hybridize with hairpin probe 2 (HP2) and released target miRNA-21, resulting in the target recycling amplification. Then, the opened HP2 acted as a trigger chain and bonded to substrate-A to trigger NHCR. After the occurrence of NHCR, large amounts of high molecular weight double-stranded DNA were produced. Because the two basic chains, substrate-A and substrate-B, of the synthesized NHCR product were labeled with biotin, the NHCR product carried a large amount of biotin. When streptavidin-alkaline phosphatase (ST-AP) was added, it could combine with the biotin and catalyze the hydrolysis of α-naphthyl phosphate (α-NP) to α-naphthol. Since α-naphthol was electrically active, an ultrasensitive electrochemical readout was obtained. Based on the highly efficient signal amplification, the established biosensor showed an outstanding sensitivity for target miRNA-21 detection. The limit was as low as 0.8 fM, and the linear range was 1 fM to 10 nM. The research also verified that the biosensor had good stability and repeatability. Moreover, the detection results of spiked miRNA-21 in serum by this biosensor were in good agreement with those in the buffer solution. Due to its excellent ability, this new biosensor might have great potential for application in the detection of biomolecules and clinical disease diagnosis.
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spelling doaj-art-b60efaf9a38e4f4d8a2f4f96e4ab3fe52025-08-20T03:37:27ZengNature PortfolioScientific Reports2045-23222025-07-011511910.1038/s41598-025-06003-yAn enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reactionJing Guo0Shou-feng Zhao1Shuang Chen2Wei-qing Song3Li-qun Li4Department of Clinical Laboratory, Qingdao Hospital, University of Health and Rehabilitation Sciences (Qingdao Municipal Hospital)Department of Clinical Laboratory, Qingdao Hospital, University of Health and Rehabilitation Sciences (Qingdao Municipal Hospital)Department of Clinical Laboratory, Qingdao Hospital, University of Health and Rehabilitation Sciences (Qingdao Municipal Hospital)Department of Clinical Laboratory, Qingdao Hospital, University of Health and Rehabilitation Sciences (Qingdao Municipal Hospital)Department of Clinical Laboratory, Qingdao Hospital, University of Health and Rehabilitation Sciences (Qingdao Municipal Hospital)Abstract A novel electrochemical biosensor with high amplification efficiency was explored for serum microRNA-21 (miRNA-21) detection. This biosensor consisted of the target recycling amplification (TRA) and non-linear hybridization chain reaction (NHCR). When the target miRNA-21 was presented, hairpin probe 1 (HP1) could be opened and hybridized with target miRNA-21, the formation of DNA/RNA complexes could hybridize with hairpin probe 2 (HP2) and released target miRNA-21, resulting in the target recycling amplification. Then, the opened HP2 acted as a trigger chain and bonded to substrate-A to trigger NHCR. After the occurrence of NHCR, large amounts of high molecular weight double-stranded DNA were produced. Because the two basic chains, substrate-A and substrate-B, of the synthesized NHCR product were labeled with biotin, the NHCR product carried a large amount of biotin. When streptavidin-alkaline phosphatase (ST-AP) was added, it could combine with the biotin and catalyze the hydrolysis of α-naphthyl phosphate (α-NP) to α-naphthol. Since α-naphthol was electrically active, an ultrasensitive electrochemical readout was obtained. Based on the highly efficient signal amplification, the established biosensor showed an outstanding sensitivity for target miRNA-21 detection. The limit was as low as 0.8 fM, and the linear range was 1 fM to 10 nM. The research also verified that the biosensor had good stability and repeatability. Moreover, the detection results of spiked miRNA-21 in serum by this biosensor were in good agreement with those in the buffer solution. Due to its excellent ability, this new biosensor might have great potential for application in the detection of biomolecules and clinical disease diagnosis.https://doi.org/10.1038/s41598-025-06003-yTarget recycling amplificationNon-linear hybridization chain reactionMicroRNAElectrochemical biosensorEnzyme-freeSignal amplification
spellingShingle Jing Guo
Shou-feng Zhao
Shuang Chen
Wei-qing Song
Li-qun Li
An enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reaction
Scientific Reports
Target recycling amplification
Non-linear hybridization chain reaction
MicroRNA
Electrochemical biosensor
Enzyme-free
Signal amplification
title An enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reaction
title_full An enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reaction
title_fullStr An enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reaction
title_full_unstemmed An enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reaction
title_short An enzyme-free electrochemical biosensor for sensitive and specific detection of microRNA-21 based on target recycling amplification and non-linear hybridization chain reaction
title_sort enzyme free electrochemical biosensor for sensitive and specific detection of microrna 21 based on target recycling amplification and non linear hybridization chain reaction
topic Target recycling amplification
Non-linear hybridization chain reaction
MicroRNA
Electrochemical biosensor
Enzyme-free
Signal amplification
url https://doi.org/10.1038/s41598-025-06003-y
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