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1.
Science ; 376(6594): eabl5197, 2022 05 13.
Article in English | MEDLINE | ID: mdl-35549406

ABSTRACT

Despite their crucial role in health and disease, our knowledge of immune cells within human tissues remains limited. We surveyed the immune compartment of 16 tissues from 12 adult donors by single-cell RNA sequencing and VDJ sequencing generating a dataset of ~360,000 cells. To systematically resolve immune cell heterogeneity across tissues, we developed CellTypist, a machine learning tool for rapid and precise cell type annotation. Using this approach, combined with detailed curation, we determined the tissue distribution of finely phenotyped immune cell types, revealing hitherto unappreciated tissue-specific features and clonal architecture of T and B cells. Our multitissue approach lays the foundation for identifying highly resolved immune cell types by leveraging a common reference dataset, tissue-integrated expression analysis, and antigen receptor sequencing.


Subject(s)
B-Lymphocytes , Machine Learning , Sequence Analysis, RNA , Single-Cell Analysis , T-Lymphocytes , Transcriptome , Cells, Cultured , Humans , Organ Specificity
2.
Curr Opin Syst Biol ; 18: 87-94, 2019 Dec.
Article in English | MEDLINE | ID: mdl-32984660

ABSTRACT

Single-cell RNA-sequencing has uncovered immune heterogeneity, including novel cell types, states and lineages that have expanded our understanding of the immune system as a whole. More recently, studies involving both immune and non-immune cells have demonstrated the importance of immune microenvironment in development, homeostasis and disease. This review focuses on the single-cell studies mapping cell-cell interactions for variety of tissues in development, health and disease. In addition, we address the need to generate a comprehensive interaction map to answer fundamental questions in immunology as well as experimental and computational strategies required for this purpose.

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