Literature DB >> 29988129

Phenotype molding of stromal cells in the lung tumor microenvironment.

Diether Lambrechts1,2, Els Wauters3,4, Bram Boeckx5,6, Sara Aibar7,8, David Nittner9,10, Oliver Burton8,11, Ayse Bassez5,6, Herbert Decaluwé12,13, Andreas Pircher5,14, Kathleen Van den Eynde15, Birgit Weynand15, Erik Verbeken15, Paul De Leyn13, Adrian Liston8,11, Johan Vansteenkiste3,4, Peter Carmeliet5,14,16, Stein Aerts7,8, Bernard Thienpont17,18.   

Abstract

Cancer cells are embedded in the tumor microenvironment (TME), a complex ecosystem of stromal cells. Here, we present a 52,698-cell catalog of the TME transcriptome in human lung tumors at single-cell resolution, validated in independent samples where 40,250 additional cells were sequenced. By comparing with matching non-malignant lung samples, we reveal a highly complex TME that profoundly molds stromal cells. We identify 52 stromal cell subtypes, including novel subpopulations in cell types hitherto considered to be homogeneous, as well as transcription factors underlying their heterogeneity. For instance, we discover fibroblasts expressing different collagen sets, endothelial cells downregulating immune cell homing and genes coregulated with established immune checkpoint transcripts and correlating with T-cell activity. By assessing marker genes for these cell subtypes in bulk RNA-sequencing data from 1,572 patients, we illustrate how these correlate with survival, while immunohistochemistry for selected markers validates them as separate cellular entities in an independent series of lung tumors. Hence, in providing a comprehensive catalog of stromal cells types and by characterizing their phenotype and co-optive behavior, this resource provides deeper insights into lung cancer biology that will be helpful in advancing lung cancer diagnosis and therapy.

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Year:  2018        PMID: 29988129     DOI: 10.1038/s41591-018-0096-5

Source DB:  PubMed          Journal:  Nat Med        ISSN: 1078-8956            Impact factor:   53.440


  431 in total

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Review 10.  The mesenchymal context in inflammation, immunity and cancer.

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