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FISH-Flow, a protocol for the concurrent detection of mRNA and protein in single cells using fluorescence in situ hybridization and flow cytometry
Journal article   Peer reviewed

FISH-Flow, a protocol for the concurrent detection of mRNA and protein in single cells using fluorescence in situ hybridization and flow cytometry

Riccardo Arrigucci, Yuri Bushkin, Felix Radford, Karim Lakehal, Pooja Vir, Richard Pine, December Martin, Jeffrey Sugarman, Yanlin Zhao, George S. Yap, …
Nature protocols, Vol.12(6), pp.1245-1260
06/2017
PMCID: PMC5548662
PMID: 28518171

Abstract

Automation, Laboratory - methods Flow Cytometry - methods Humans In Situ Hybridization, Fluorescence - methods Leukocytes, Mononuclear - chemistry Proteins - analysis RNA, Messenger - analysis Single-Cell Analysis - methods
We describe a flow-cytometry-based protocol for intracellular mRNA measurements in nonadherent mammalian cells using fluorescence in situ hybridization (FISH) probes. The method, which we call FISH-Flow, allows for high-throughput multiparametric measurements of gene expression, a task that was not feasible with earlier, microscopy-based approaches. The FISH-Flow protocol involves cell fixation, permeabilization and hybridization with a set of fluorescently labeled oligonucleotide probes. In this protocol, surface and intracellular protein markers can also be stained with fluorescently labeled antibodies for simultaneous protein and mRNA measurement. Moreover, a semiautomated, single-tube version of the protocol can be performed with a commercially available cell-wash device that reduces cell loss, operator time and interoperator variability. It takes ∼30 h to perform this protocol. An example of FISH-Flow measurements of cytokine mRNA induction by ex vivo stimulation of primed T cells with specific antigens is described.
url
https://doi.org/10.1038/nprot.2017.039View
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