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Single-Cell RT-PCR in Microfluidic Droplets with Integrated Chemical Lysis

Overview
Journal Anal Chem
Specialty Chemistry
Date 2017 Dec 20
PMID 29256243
Citations 39
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Abstract

Droplet microfluidics can identify and sort cells using digital reverse transcription polymerase chain reaction (RT-PCR) signals from individual cells. However, current methods require multiple microfabricated devices for enzymatic cell lysis and PCR reagent addition, making the process complex and prone to failure. Here, we describe a new approach that integrates all components into a single device. The method enables controlled exposure of isolated single cells to a high pH buffer, which lyses cells and inactivates reaction inhibitors but can be instantly neutralized with RT-PCR buffer. Using our chemical lysis approach, we distinguish individual cells' gene expression with data quality equivalent to more complex two-step workflows. Our system accepts cells and produces droplets ready for amplification, making single-cell droplet RT-PCR faster and more reliable.

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References
1.
Zhu Y, Zhang Y, Liu W, Ma Y, Fang Q, Yao B . Printing 2-dimentional droplet array for single-cell reverse transcription quantitative PCR assay with a microfluidic robot. Sci Rep. 2015; 5:9551. PMC: 4381353. DOI: 10.1038/srep09551. View

2.
Fan H, Fu G, Fodor S . Expression profiling. Combinatorial labeling of single cells for gene expression cytometry. Science. 2015; 347(6222):1258367. DOI: 10.1126/science.1258367. View

3.
Macosko E, Basu A, Satija R, Nemesh J, Shekhar K, Goldman M . Highly Parallel Genome-wide Expression Profiling of Individual Cells Using Nanoliter Droplets. Cell. 2015; 161(5):1202-1214. PMC: 4481139. DOI: 10.1016/j.cell.2015.05.002. View

4.
Manning K, Cooper T . The roles of RNA processing in translating genotype to phenotype. Nat Rev Mol Cell Biol. 2016; 18(2):102-114. PMC: 5544131. DOI: 10.1038/nrm.2016.139. View

5.
Moffitt J, Hao J, Wang G, Chen K, Babcock H, Zhuang X . High-throughput single-cell gene-expression profiling with multiplexed error-robust fluorescence in situ hybridization. Proc Natl Acad Sci U S A. 2016; 113(39):11046-51. PMC: 5047202. DOI: 10.1073/pnas.1612826113. View