Journal article

Increasing cDNA yields from single-cell quantities of mRNA in standard laboratory reverse transcriptase reactions using acoustic microstreaming

WC Boon, K Petkovic-Duran, Y Zhu, R Manasseh, MK Horne, TD Aumann

Journal of Visualized Experiments | JOURNAL OF VISUALIZED EXPERIMENTS | Published : 2011

Abstract

Correlating gene expression with cell behavior is ideally done at the single-cell level. However, this is not easily achieved because the small amount of labile mRNA present in a single cell (1-5% of 1-50pg total RNA, or 0.01-2.5pg mRNA, per cell) mostly degrades before it can be reverse transcribed into a stable cDNA copy. For example, using standard laboratory reagents and hardware, only a small number of genes can be qualitatively assessed per cell. One way to increase the efficiency of standard laboratory reverse transcriptase (RT) reactions (i.e. standard reagents in microliter volumes) comprising single-cell amounts of mRNA would be to more rapidly mix the reagents so the mRNA can be c..

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University of Melbourne Researchers

Grants

Awarded by National Health and Medical Research Council of Australia


Funding Acknowledgements

This study was supported by the National Health and Medical Research Council of Australia (project grant no. 6288480) and the Scobie and Clare MacKinnon Trust.