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Lab on a single microbead: an ultrasensitive detection strategy enabling microRNA analysis at the single-molecule level.


ABSTRACT: Detection of a single nucleic acid molecule is of great significance for both fundamental biochemistry studies and clinical diagnostics. By using microRNA (miRNA) as a model target, herein, we have developed a single-microbead-based sensing (SMBS) platform, which simply enables the detection of miRNA at the single-molecule level. In this strategy, an isothermal exponential amplification reaction (EXPAR) is rationally designed towards specific miRNAs and all products of the EXPAR are integrated onto a single microbead for signal amplification and fluorescence enrichment. This pushes the detection of miRNAs down to 1 aM in a 5 ?L sample, corresponding to 3 copies of the miRNA molecule. This new strategy also affords high selectivity and it is capable of distinguishing among homologous miRNA family members even with a single-base difference. Due to its ultrahigh sensitivity and selectivity, the proposed SMBS platform has been successfully applied to the detection of miRNA extracted from a single cell.

SUBMITTER: Zhang X 

PROVIDER: S-EPMC6054045 | biostudies-literature | 2015 Nov

REPOSITORIES: biostudies-literature

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Lab on a single microbead: an ultrasensitive detection strategy enabling microRNA analysis at the single-molecule level.

Zhang Xiaobo X   Liu Chenghui C   Sun Lingbo L   Duan Xinrui X   Li Zhengping Z  

Chemical science 20150820 11


Detection of a single nucleic acid molecule is of great significance for both fundamental biochemistry studies and clinical diagnostics. By using microRNA (miRNA) as a model target, herein, we have developed a single-microbead-based sensing (SMBS) platform, which simply enables the detection of miRNA at the single-molecule level. In this strategy, an isothermal exponential amplification reaction (EXPAR) is rationally designed towards specific miRNAs and all products of the EXPAR are integrated o  ...[more]

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