HCR spectral imaging: 10-plex, quantitative, high-resolution RNA and protein imaging in highly autofluorescent samples

Development. 2024 Feb 15;151(4):dev202307. doi: 10.1242/dev.202307. Epub 2024 Feb 28.

Abstract

Signal amplification based on the mechanism of hybridization chain reaction (HCR) provides a unified framework for multiplex, quantitative, high-resolution imaging of RNA and protein targets in highly autofluorescent samples. With conventional bandpass imaging, multiplexing is typically limited to four or five targets owing to the difficulty in separating signals generated by fluorophores with overlapping spectra. Spectral imaging has offered the conceptual promise of higher levels of multiplexing, but it has been challenging to realize this potential in highly autofluorescent samples, including whole-mount vertebrate embryos. Here, we demonstrate robust HCR spectral imaging with linear unmixing, enabling simultaneous imaging of ten RNA and/or protein targets in whole-mount zebrafish embryos and mouse brain sections. Further, we demonstrate that the amplified and unmixed signal in each of the ten channels is quantitative, enabling accurate and precise relative quantitation of RNA and/or protein targets with subcellular resolution, and RNA absolute quantitation with single-molecule resolution, in the anatomical context of highly autofluorescent samples.

Keywords: Immunofluorescence; Mouse brain sections; RNA fluorescence in situ hybridization; RNA-FISH; Whole-mount zebrafish embryos; dHCR imaging; qHCR imaging.

MeSH terms

  • Animals
  • Diagnostic Imaging*
  • Embryo, Mammalian
  • Mice
  • Nucleic Acid Hybridization
  • RNA
  • Zebrafish*

Substances

  • RNA