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Microfluidics-based digital quantitative PCR for single-cell small RNA quantification.


ABSTRACT: Quantitative analyses of small RNAs at the single-cell level have been challenging because of limited sensitivity and specificity of conventional real-time quantitative PCR methods. A digital quantitative PCR (dqPCR) method for miRNA quantification has been developed, but it requires the use of proprietary stem-loop primers and only applies to miRNA quantification. Here, we report a microfluidics-based dqPCR (mdqPCR) method, which takes advantage of the Fluidigm BioMark HD system for both template partition and the subsequent high-throughput dqPCR. Our mdqPCR method demonstrated excellent sensitivity and reproducibility suitable for quantitative analyses of not only miRNAs but also all other small RNA species at the single-cell level. Using this method, we discovered that each sperm has a unique miRNA profile.

SUBMITTER: Yu T 

PROVIDER: S-EPMC6248614 | biostudies-literature | 2017 Sep

REPOSITORIES: biostudies-literature

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Microfluidics-based digital quantitative PCR for single-cell small RNA quantification.

Yu Tian T   Tang Chong C   Zhang Ying Y   Zhang Ruirui R   Yan Wei W  

Biology of reproduction 20170901 3


Quantitative analyses of small RNAs at the single-cell level have been challenging because of limited sensitivity and specificity of conventional real-time quantitative PCR methods. A digital quantitative PCR (dqPCR) method for miRNA quantification has been developed, but it requires the use of proprietary stem-loop primers and only applies to miRNA quantification. Here, we report a microfluidics-based dqPCR (mdqPCR) method, which takes advantage of the Fluidigm BioMark HD system for both templa  ...[more]

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