Publication | Open Access
Highly Multiplexed Single-Cell RNA-seq for Defining Cell Population and Transcriptional Spaces
29
Citations
18
References
2018
Year
Unknown Venue
EngineeringDefining Cell PopulationMolecular BiologyTranscriptomics TechnologyGene Expression ProfilingTrajectory AnalysisNucleic Acid BiomarkersTranscriptional RegulationSingle Cell SequencingTranscriptional SpacesRna SequencingSingle-cell GenomicsOmicsUniversal SampleGene ExpressionSingle-cell AnalysisBioinformaticsFunctional GenomicsCell BiologyCell Population StructureSingle-cell BiologyComputational BiologySystems BiologyMedicineNon-coding RnaSurvey Cell Populations
Abstract We describe a universal sample multiplexing method for single-cell RNA-seq in which cells are chemically labeled with identifying DNA oligonucleotides. Analysis of a 96-plex perturbation experiment revealed changes in cell population structure and transcriptional states that cannot be discerned from bulk measurements, establishing a cost effective means to survey cell populations from large experiments and clinical samples with the depth and resolution of single-cell RNA-seq.
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