Scinovex
article Open AccessTop 1% cited

Cell Hashing with barcoded antibodies enables multiplexing and doublet detection for single cell genomics

Genome biology · 2018 · Vol. 19(1) · pp. 224–224
Marlon StoeckiusShiwei ZhengBrian Houck‐LoomisStephanie HaoBertrand Z. YeungWilliam M. MauckPeter SmibertRahul Satija

Abstract

Despite rapid developments in single cell sequencing, sample-specific batch effects, detection of cell multiplets, and experimental costs remain outstanding challenges. Here, we introduce Cell Hashing, where oligo-tagged antibodies against ubiquitously expressed surface proteins uniquely label cells from distinct samples, which can be subsequently pooled. By sequencing these tags alongside the cellular transcriptome, we can assign each cell to its original sample, robustly identify cross-sample multiplets, and "super-load" commercial droplet-based systems for significant cost reduction. We validate our approach using a complementary genetic approach and demonstrate how hashing can generalize the benefits of single cell multiplexing to diverse samples and experimental designs.

Single-cell and spatial transcriptomicsBiosensors and Analytical DetectionCell Image Analysis TechniquesBiologyComputational biologyGenomicsMultiplexingCellHash functionSingle-cell analysisSingle cell sequencingSample (material)Computer science

MeSH terms

AnimalsHumansImmunologic TechniquesOligonucleotidesStaining and Labeling3T3 CellsGenomicsMiceHEK293 CellsSingle-Cell Analysis

Funding

  • Chan Zuckerberg Initiative
  • New York Genome Center
  • National Institute for Health and Care Research
  • National Institutes of Health
  • National Human Genome Research Institute
Citations
1,117
FWCI
31.74
field-weighted impact
References
50
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.