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. 2015 Jul;36(14):1658-62.
doi: 10.1002/elps.201500040. Epub 2015 May 20.

Isotachophoresis for fractionation and recovery of cytoplasmic RNA and nucleus from single cells

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Isotachophoresis for fractionation and recovery of cytoplasmic RNA and nucleus from single cells

Kentaro Kuriyama et al. Electrophoresis. 2015 Jul.

Abstract

There is a substantial need for simultaneous analyses of RNA and DNA from individual single cells. Such analysis provides unique evidence of cell-to-cell differences and the correlation between gene expression and genomic mutation in highly heterogeneous cell populations. We present a novel microfluidic system that leverages isotachophoresis to fractionate and isolate cytoplasmic RNA and genomic DNA (gDNA) from single cells. The system uniquely enables independent, sequence-specific analyses of these critical markers. Our system uses a microfluidic chip with a simple geometry and four end-channel electrodes, and completes the entire process in <5 min, including lysis, purification, fractionation, and delivery to DNA and RNA output reservoirs, each containing high quality and purity aliquots with no measurable cross-contamination of cytoplasmic RNA versus gDNA. We demonstrate our system with simultaneous, sequence-specific quantitation using off-chip RT-qPCR and qPCR for simultaneous cytoplasmic RNA and gDNA analyses, respectively.

Keywords: DNA; Electrophoresis; Microfluidics; RNA; Single cell analysis.

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