Massively Parallel Single-Molecule
and Single-Cell
Emulsion Reverse Transcription Polymerase Chain Reaction Using Agarose
Droplet Microfluidics
Posted on 2012-04-17 - 00:00
A microfluidic device for performing single copy, emulsion
Reverse
Transcription Polymerase Chain Reaction (RT-PCR) within agarose droplets
is presented. A two-aqueous-inlet emulsion droplet generator was designed
and fabricated to produce highly uniform monodisperse picoliter agarose
emulsion droplets with RT-PCR reagents in carrier oil. Template RNA
or cells were delivered from one inlet with RT-PCR reagents/cell lysis
buffer delivered separately from the other. Efficient RNA/cell encapsulation
and RT-PCR at the single copy level was achieved in agarose-in-oil
droplets, which, after amplification, can be solidified into agarose
beads for further analysis. A simple and efficient method to graft
primer to the polymer matrix using 5′-acrydite primer was developed
to ensure highly efficient trapping of RT-PCR products in agarose.
High-throughput single RNA molecule/cell RT-PCR was demonstrated in
stochastically diluted solutions. Our results indicate that single-molecule
RT-PCR can be efficiently carried out in agarose matrix. Single-cell
RT-PCR was successfully performed which showed a clear difference
in gene expression level of EpCAM, a cancer biomarker gene, at the
single-cell level between different types of cancer cells. This work
clearly demonstrates for the first time, single-copy RT-PCR in agarose
droplets. We believe this will open up new possibilities for viral
RNA detection and single-cell transcription analysis.