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A single–cell type transcriptomics map of human tissues

Science Advances · 2021 · Vol. 7(31)
Max KarlssonCheng ZhangLoren MéarWen ZhongAndreas DigreBorbala KatonaEvelina SjöstedtLynn M. ButlerJacob OdebergPhilip DusartFredrik EdforsPer OksvoldKalle von FeilitzenMartin ZwahlenMuhammad ArifÖzlem AltayXiangyü LiMehmet ÖzcanAdil MardinoğluLinn FagerbergJan MulderYonglun LuoFredrik PonténMathias UhlénCecilia Lindskog

Abstract

Advances in molecular profiling have opened up the possibility to map the expression of genes in cells, tissues, and organs in the human body. Here, we combined single-cell transcriptomics analysis with spatial antibody-based protein profiling to create a high-resolution single-cell type map of human tissues. An open access atlas has been launched to allow researchers to explore the expression of human protein-coding genes in 192 individual cell type clusters. An expression specificity classification was performed to determine the number of genes elevated in each cell type, allowing comparisons with bulk transcriptomics data. The analysis highlights distinct expression clusters corresponding to cell types sharing similar functions, both within the same organs and between organs.

Single-cell and spatial transcriptomicsImmune cells in cancerCell typeTranscriptomeCellComputational biologyProfiling (computer programming)Human cellSingle-cell analysisRNARNA-SeqBiology

MeSH terms

AntibodiesHumansProteomeGene Expression ProfilingProteomicsTranscriptome

Funding

  • Knut och Alice Wallenbergs Stiftelse
  • Vetenskapsrådet
  • Science for Life Laboratory
  • Uppsala Multidisciplinary Center for Advanced Computational Science
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