Title | Total cells | ||
1 | A human fetal lung cell atlas uncovers proximal-distal gradients of differentiation and key regulators of epithelial fates Dataset 1: All cells cell type: non-classical monocyte expressed genes: ASCL2 | ||
2 | A molecular cell atlas of the human lung from single cell RNA sequencing Dataset 1: Krasnow Lab Human Lung Cell Atlas, 10X cell type: Nonclassical Monocyte expressed genes: ASCL2 Dataset 2: Krasnow Lab Human Lung Cell Atlas, Smart-seq2 cell type: Nonclassical Monocyte expressed genes: ASCL2 | ||
3 | An integrated cell atlas of the lung in health and disease Dataset 1: An integrated cell atlas of the human lung in health and disease (core) cell type: Non-classical monocytes expressed genes: ASCL2 | ||
4 | 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: nonclassical Monocyte expressed genes: ASCL2 | ||
5 | Integrated analysis of multimodal single-cell data (version 2) Dataset 1: Human - Lung v2 (HLCA) cell type: Non-classical monocytes expressed genes: ASCL2 | ||
6 | Prolonged cytopenia following CD19 CAR T cell therapy is linked with bone marrow infiltration of clonally expanded IFNγ-expressing CD8 T cells Dataset 1: Single cell RNA sequencing of bone marrow mononuclear cells from healthy donors and B-cell lymphoma patients following CD19 CAR T-cell therapy cell type: C17:CD16 Mono expressed genes: ASCL2 | ||
7 | Single-cell multi-omics analysis of the immune response in COVID-19 Dataset 1: Single-cell multi-omics analysis of the immune response in COVID-19 cell type: C1_CD16_mono CD16_mono expressed genes: ASCL2 | ||
8 | Single-cell multiomics reveals increased plasticity, resistant populations, and stem-cell–like blasts in KMT2A-rearranged leukemia Dataset 1: Global dataset of infant KMT2Ar B-ALL cell type: CD16_Monocyte expressed genes: ASCL2 | ||
9 | Time-resolved Systems Immunology Reveals a Late Juncture Linked to Fatal COVID-19 Dataset 2: Time-resolved Systems Immunology Reveals a Late Juncture Linked to Fatal COVID-19: Innate Cells cell type: non-classical monocyte expressed genes: ASCL2 | ||
10 | 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: ncM ncM_1006 expressed genes: ASCL2 |