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Third-generation <i>in situ</i> hybridization chain reaction: multiplexed, quantitative, sensitive, versatile, robust

Development · 2018 · Vol. 145(12)
Harry M. T. ChoiMaayan SchwarzkopfMark E. FornaceAneesh AcharyaGeorgios ArtavanisJohannes StegmaierAlexandre CunhaNiles A. Pierce

Abstract

<i>In situ</i> hybridization based on the mechanism of the hybridization chain reaction (HCR) has addressed multi-decade challenges that impeded imaging of mRNA expression in diverse organisms, offering a unique combination of multiplexing, quantitation, sensitivity, resolution and versatility. Here, with third-generation <i>in situ</i> HCR, we augment these capabilities using probes and amplifiers that combine to provide automatic background suppression throughout the protocol, ensuring that reagents will not generate amplified background even if they bind non-specifically within the sample. Automatic background suppression dramatically enhances performance and robustness, combining the benefits of a higher signal-to-background ratio with the convenience of using unoptimized probe sets for new targets and organisms. <i>In situ</i> HCR v3.0 enables three multiplexed quantitative analysis modes: (1) qHCR imaging - analog mRNA relative quantitation with subcellular resolution in the anatomical context of whole-mount vertebrate embryos; (2) qHCR flow cytometry - analog mRNA relative quantitation for high-throughput expression profiling of mammalian and bacterial cells; and (3) dHCR imaging - digital mRNA absolute quantitation via single-molecule imaging in thick autofluorescent samples.

Advanced biosensing and bioanalysis techniquesSingle-cell and spatial transcriptomicsMolecular Biology Techniques and ApplicationsBiologyIn situIn situ hybridizationFlow cytometryMultiplexingChain reactionComputational biologyMolecular biologyCell biologyMessenger RNA

MeSH terms

AnimalsChick EmbryoEscherichia coliFlow CytometryHumansRNA, MessengerSubcellular FractionsReproducibility of ResultsRNA ProbesIn Situ HybridizationGene Expression ProfilingImaging, Three-Dimensional

Funding

  • National Science Foundation
  • Gordon and Betty Moore Foundation
  • University of Oxford
  • Deutsche Forschungsgemeinschaft
  • National Institutes of Health
  • Defense Advanced Research Projects Agency
  • Balliol College, University of Oxford
  • National Institute of Biomedical Imaging and Bioengineering
Citations
1,544
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37
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References
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Genome Research · 1996 · 2,093 citations
Real time quantitative PCR.
Genome Research · 1996 · 6,197 citations
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