Title | Total cells | ||
1 | A cell atlas of human thymic development defines T cell repertoire formation Dataset 1: Figure 1 - A cell atlas of human thymic development defines T cell repertoire formation cell type: natural killer cell expressed genes: FAM89B | ||
2 | A human breast atlas integrating single-cell proteomics and transcriptomics Dataset 1: Single-Cell RNA Sequencing of Breast Tissues: Cell Subtypes and Cancer Risk Factors cell type: NK expressed genes: FAM89B | ||
3 | A molecular cell atlas of the human lung from single cell RNA sequencing Dataset 1: Krasnow Lab Human Lung Cell Atlas, 10X cell type: Natural Killer expressed genes: FAM89B Dataset 2: Krasnow Lab Human Lung Cell Atlas, Smart-seq2 cell type: Natural Killer expressed genes: FAM89B | ||
4 | A single-cell comparison of adult and fetal human epicardium defines the age-associated changes in epicardial activity Dataset 1: Integrated adult and foetal hearts cell type: NK_cells expressed genes: FAM89B | ||
5 | A spatially resolved single cell genomic atlas of the adult human breast Dataset 1: scRNA-seq data - all cells cell type: NK expressed genes: FAM89B | ||
6 | Blood and immune development in human fetal bone marrow and Down syndrome Dataset 1: Fetal Bone Marrow (10x) cell type: mature NK expressed genes: FAM89B Dataset 3: Fetal Bone Marrow (10x) - Down Syndrome cell type: transitional NK cell expressed genes: FAM89B | ||
7 | Cell Types of the Human Retina and Its Organoids at Single-Cell Resolution Dataset 2: Periphery - Cell Types of the Human Retina and Its Organoids at Single-Cell Resolution cell type: NK expressed genes: FAM89B Dataset 3: Fovea - Cell Types of the Human Retina and Its Organoids at Single-Cell Resolution cell type: NK expressed genes: FAM89B | ||
8 | Cells of the human intestinal tract mapped across space and time Dataset 1: Total - Cells of the human intestinal tract mapped across space and time cell type: natural killer cell expressed genes: FAM89B | ||
9 | Distinct microbial and immune niches of the human colon Dataset 1: Colon cell type: NK expressed genes: FAM89B | ||
10 | Dysregulated lung stroma drives emphysema exacerbation by potentiating resident lymphocytes to suppress an epithelial stem cell reservoir Dataset 1: immune cells cell type: NK cell expressed genes: FAM89B | ||
11 | Immunophenotyping of COVID-19 and influenza highlights the role of type I interferons in development of severe COVID-19 Dataset 1: Immunophenotyping of COVID-19 and influenza highlights the role of type I interferons in development of severe COVID-19 cell type: NK cell expressed genes: FAM89B | ||
12 | Integrated analysis of multimodal single-cell data Dataset 1: nygc multimodal pbmc cell type: NK NK Proliferating expressed genes: FAM89B | ||
13 | Integrated scRNA-Seq Identifies Human Postnatal Thymus Seeding Progenitors and Regulatory Dynamics of Differentiating Immature Thymocytes Dataset 1: Single-Cell Transcriptome Profiling of Immature Human Thymocytes cell type: NK expressed genes: FAM89B | ||
14 | Multiomic Profiling of Human Clonal Hematopoiesis Reveals Genotype and Cell-Specific Inflammatory Pathway Activation Dataset 1: Single Cell Sequencing of Human PBMCs in Clonal Hematopoeisis of Indeterminant Potential cell type: Natural killer cells expressed genes: FAM89B | ||
15 | Polybacterial intracellular coinfection of epithelial stem cells in periodontitis Dataset 1: An Integrated Single Cell Meta-atlas of Human Periodontitis cell type: NK cells expressed genes: FAM89B | ||
16 | Spatial proteogenomics reveals distinct and evolutionarily conserved hepatic macrophage niches Dataset 1: All cells from human liver dataset cell type: Resident NK expressed genes: FAM89B | ||
17 | The landscape of immune dysregulation in Crohn’s disease revealed through single-cell transcriptomic profiling in the ileum and colon Dataset 1: TI immune cell type: NK cells KLRF1 CD3G- expressed genes: FAM89B Dataset 3: colon immune cell type: NK cells KLRF1 CD3G- NK-like cells ID3 ENTPD1 expressed genes: FAM89B | ||
18 | Type I interferon autoantibodies are associated with systemic immune alterations in patients with COVID-19 Dataset 1: Type I interferon autoantibodies are associated with systemic immune alterations in patients with COVID-19 cell type: NK_Prolif_Early expressed genes: FAM89B | ||
19 | scRNA-seq assessment of the human lung, spleen, and esophagus tissue stability after cold preservation Dataset 3: Lung Parenchyma cell type: NK NK_Dividing expressed genes: FAM89B |