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: classical monocyte expressed genes: CXCL2 | ||
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: Classical Monocyte OLR1+ Classical Monocyte expressed genes: CXCL2 Dataset 2: Krasnow Lab Human Lung Cell Atlas, Smart-seq2 cell type: Classical Monocyte expressed genes: CXCL2 | ||
3 | A spatially resolved atlas of the human lung characterizes a gland-associated immune niche Dataset 1: All cells and nuclei cell type: Monocyte_CD14 expressed genes: CXCL2 | ||
4 | A spatially resolved single cell genomic atlas of the adult human breast Dataset 1: scRNA-seq data - all cells cell type: Mono-classical expressed genes: CXCL2 | ||
5 | 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: Classical monocytes expressed genes: CXCL2 | ||
6 | Blood and immune development in human fetal bone marrow and Down syndrome Dataset 1: Fetal Bone Marrow (10x) cell type: CD14 monocyte expressed genes: CXCL2 Dataset 3: Fetal Bone Marrow (10x) - Down Syndrome cell type: CD14 monocyte expressed genes: CXCL2 Dataset 4: Human Fetal Bone Marrow (CITE-seq) cell type: CD14 monocyte expressed genes: CXCL2 | ||
7 | Cells of the adult human heart Dataset 1: All — Cells of the adult human heart cell type: CD14-positive monocyte expressed genes: CXCL2 | ||
8 | Cross-tissue immune cell analysis reveals tissue-specific features in humans Dataset 1: Global cell type: Classical monocytes expressed genes: CXCL2 | ||
9 | Integrated analysis of multimodal single-cell data (version 2) Dataset 1: Human - Lung v2 (HLCA) cell type: Classical monocytes expressed genes: CXCL2 | ||
10 | 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: Classical Monocytes expressed genes: CXCL2 | ||
11 | Single cell analysis of mouse and human prostate reveals novel fibroblasts with specialized distribution and microenvironment interactions Dataset 1: All Human Cells cell type: classical monocyte expressed genes: CXCL2 | ||
12 | Single-cell Atlas of common variable immunodeficiency shows germinal center-associated epigenetic dysregulation in B-cell responses Dataset 1: Activated PBMCs - Expanded cohort CITE-seq cell type: Monocytes_classical expressed genes: CXCL2 | ||
13 | Single-cell proteo-genomic reference maps of the hematopoietic system enable the purification and massive profiling of precisely defined cell states Dataset 1: 3 healthy young and 3 healthy old bone marrow donors (Reference sample) cell type: Classical Monocytes expressed genes: CXCL2 Dataset 2: 15 leukemic bone marrow donors cell type: Classical Monocytes expressed genes: CXCL2 Dataset 3: blood and bone marrow from a healthy young donor cell type: Classical Monocytes expressed genes: CXCL2 | ||
14 | Single-cell sequencing links multiregional immune landscapes and tissue-resident T cells in ccRCC to tumor topology and therapy efficacy Dataset 1: Single-cell sequencing links multiregional immune landscapes and tissue-resident T cells in ccRCC to tumor topology and therapy efficacy cell type: CD14+ Monocyte expressed genes: CXCL2 | ||
15 | Single-cell transcriptomes from human kidneys reveal the cellular identity of renal tumors Dataset 1: mature cell type: MNP-a/classical monocyte derived expressed genes: CXCL2 | ||
16 | Spatially resolved multiomics of human cardiac niches Dataset 1: Combined single cell and single nuclei RNA-Seq data - Heart Global cell type: CD14+Mo expressed genes: CXCL2 | ||
17 | Spatiotemporal immune zonation of the human kidney Dataset 1: Mature kidney dataset: full cell type: MNP-a/classical monocyte derived expressed genes: CXCL2 | ||
18 | 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: classical monocyte expressed genes: CXCL2 |