Author: Guo, Rongqun; Lü, Mengdie; Cao, Fujiao; Wu, Guanghua; Gao, Fengcai; Pang, Haili; Li, Yadan; Zhang, Yinyin; Xing, Haizhou; Liang, Chunyan; Lyu, Tianxin; Du, Chunyan; Li, Yingmei; Guo, Rong; Xie, Xinsheng; Li, Wei; Liu, Delong; Song, Yongping; Jiang, Zhongxing
                    Title: Single-cell map of diverse immune phenotypes in the acute myeloid leukemia microenvironment  Cord-id: bylkpe21  Document date: 2021_3_1
                    ID: bylkpe21
                    
                    Snippet: BACKGROUND: Knowledge of immune cell phenotypes, function, and developmental trajectory in acute myeloid leukemia (AML) microenvironment is essential for understanding mechanisms of evading immune surveillance and immunotherapy response of targeting special microenvironment components. METHODS: Using a single-cell RNA sequencing (scRNA-seq) dataset, we analyzed the immune cell phenotypes, function, and developmental trajectory of bone marrow (BM) samples from 16 AML patients and 4 healthy donors
                    
                    
                    
                     
                    
                    
                    
                    
                        
                            
                                Document: BACKGROUND: Knowledge of immune cell phenotypes, function, and developmental trajectory in acute myeloid leukemia (AML) microenvironment is essential for understanding mechanisms of evading immune surveillance and immunotherapy response of targeting special microenvironment components. METHODS: Using a single-cell RNA sequencing (scRNA-seq) dataset, we analyzed the immune cell phenotypes, function, and developmental trajectory of bone marrow (BM) samples from 16 AML patients and 4 healthy donors, but not AML blasts. RESULTS: We observed a significant difference between normal and AML BM immune cells. Here, we defined the diversity of dendritic cells (DC) and macrophages in different AML patients. We also identified several unique immune cell types including T helper cell 17 (TH17)-like intermediate population, cytotoxic CD4(+) T subset, T cell: erythrocyte complexes, activated regulatory T cells (Treg), and CD8(+) memory-like subset. Emerging AML cells remodels the BM immune microenvironment powerfully, leads to immunosuppression by accumulating exhausted/dysfunctional immune effectors, expending immune-activated types, and promoting the formation of suppressive subsets. CONCLUSION: Our results provide a comprehensive AML BM immune cell census, which can help to select pinpoint targeted drug and predict efficacy of immunotherapy. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1186/s40364-021-00265-0.
 
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