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A dumbbell probe-mediated rolling circle amplification strategy for highly sensitive microRNA detection.


ABSTRACT: We herein report the design of a dumbbell-shaped DNA probe that integrates target-binding, amplification and signaling within one multifunctional design. The dumbbell probe can initiate rolling circle amplification (D-RCA) in the presence of specific microRNA (miRNA) targets. This D-RCA-based miRNA strategy allows quantification of miRNA with very low quantity of RNA samples. The femtomolar sensitivity of D-RCA compares favorably with other existing technologies. More significantly, the dynamic range of D-RCA is extremely large, covering eight orders of magnitude. We also demonstrate miRNA quantification with this highly sensitive and inexpensive D-RCA strategy in clinical samples.

SUBMITTER: Zhou Y 

PROVIDER: S-EPMC2926626 | biostudies-literature | 2010 Aug

REPOSITORIES: biostudies-literature

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A dumbbell probe-mediated rolling circle amplification strategy for highly sensitive microRNA detection.

Zhou Yuntao Y   Huang Qing Q   Gao Jimin J   Lu Jianxin J   Shen Xizhong X   Fan Chunhai C  

Nucleic acids research 20100614 15


We herein report the design of a dumbbell-shaped DNA probe that integrates target-binding, amplification and signaling within one multifunctional design. The dumbbell probe can initiate rolling circle amplification (D-RCA) in the presence of specific microRNA (miRNA) targets. This D-RCA-based miRNA strategy allows quantification of miRNA with very low quantity of RNA samples. The femtomolar sensitivity of D-RCA compares favorably with other existing technologies. More significantly, the dynamic  ...[more]

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