| Literature DB >> 33429363 |
Yu-E Guo1, Yiran Li1, Bailian Cai2, Qizhi He3, Guofang Chen2, Mengfei Wang2, Kai Wang2, Xiaoping Wan1, Qin Yan1.
Abstract
Tumors are complex ecosystems harboring multiple cell types which might play a critical role in tumor progression and treatment response. The endometrial epithelial cell identities and immune microenvironment of endometrial carcinoma (ECC) are poorly characterized. In this study, a cellular map of endometrial carcinoma was generated by profiling 30,780 cells isolated from tumor and paratumor tissues from five patients using single-cell RNA sequencing. 7 cell types in lymphocytes, 7 types in myeloid cells and 3 types in endometrial epithelial cells were identified. Distinct CD8+ T cell states and different monocyte-macrophage populations were discovered, among which exhausted CD8+ T cells and macrophages were preferentially enriched in tumor. Both CD8+ T cells and macrophages comport with continuous activation model. Gene expression patterns examination and gene ontology enrichment analysis of endometrial epithelial cells revealed 3 subtypes: stem-like cells, secretory glandular cells and ciliated cells. Overall, our study presents a view of endometrial carcinoma at single-cell resolution that reveals the characteristics of endometrial epithelial cells in the endometrium, and provides a cellular landscape of the tumor immune microenvironment.Entities:
Keywords: endometrial carcinoma; endometrial epithelial cells; immune microenvironment; macrophage activation model; single-cell RNA sequencing
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Year: 2021 PMID: 33429363 PMCID: PMC7993685 DOI: 10.18632/aging.202288
Source DB: PubMed Journal: Aging (Albany NY) ISSN: 1945-4589 Impact factor: 5.682