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: endothelial cell expressed genes: MST1 | ||
2 | A single-cell atlas of human and mouse white adipose tissue Dataset 1: A Single-Cell Atlas of Human White Adipose Tissue cell type: endothelial expressed genes: MST1 | ||
3 | Abdominal White Adipose Tissue Dataset 1: 22 integrated samples cell type: Endothelial Cells expressed genes: MST1 | ||
4 | Blood and immune development in human fetal bone marrow and Down syndrome Dataset 1: Fetal Bone Marrow (10x) cell type: immature EC proliferating EC expressed genes: MST1 Dataset 3: Fetal Bone Marrow (10x) - Down Syndrome cell type: endothelium expressed genes: MST1 | ||
5 | Charting human development using a multi-endodermal organ atlas and organoid models Dataset 1: Developing Human Atlas cell type: Endothelial expressed genes: MST1 | ||
6 | HCA kidney seed network: University of Michigan Dataset 1: Single cell RNA-seq data from normal adult kidney tissue cell type: EC-AEA EC-AVR EC-DVR EC-PTC expressed genes: MST1 | ||
7 | Identification of distinct tumor cell populations and key genetic mechanisms through single cell sequencing in hepatoblastoma Dataset 1: Modeling Hepatoblastoma: Identification of Distinct Tumor Cell Populations and Key Genetic Mechanisms through Single Cell Sequencing cell type: endothelial cell expressed genes: MST1 | ||
8 | Mapping single-cell transcriptomes in the intra-tumoral and associated territories of kidney cancer Dataset 1: Single-cell transcriptomic datasets of Renal cell carcinoma patients cell type: endothelial cell expressed genes: MST1 | ||
9 | Multimodal single cell sequencing implicates chromatin accessibility and genetic background in diabetic kidney disease progression Dataset 1: Human kidney cortex snRNA-seq data from donors with and without diabetic kidney disease cell type: ENDO expressed genes: MST1 | ||
10 | Single cell RNA sequencing of human liver reveals distinct intrahepatic macrophage populations Dataset 1: Liver cell type: Portal endothelial expressed genes: MST1 | ||
11 | Single cell derived mRNA signals across human kidney tumors Dataset 1: fetal cell type: End expressed genes: MST1 | ||
12 | Single-Cell, Single-Nucleus, and Spatial RNA Sequencing of the Human Liver Identifies Cholangiocyte and Mesenchymal Heterogeneity Dataset 1: Healthy human liver: integrated cell type: PortalEndo expressed genes: MST1 | ||
13 | Single-cell transcriptomes from human kidneys reveal the cellular identity of renal tumors Dataset 1: mature cell type: Ascending vasa recta endothelium Descending vasa recta endothelium expressed genes: MST1 | ||
14 | Single-cell, single-nucleus, and spatial transcriptomics characterization of the immunological landscape in the healthy and PSC human liver Dataset 2: All cells types from scRNA-seq of human primary sclerosing cholangitis patients and healthy controls cell type: cvEndo expressed genes: MST1 | ||
15 | Spatial proteogenomics reveals distinct and evolutionarily conserved hepatic macrophage niches Dataset 1: All cells from human liver dataset cell type: Endothelial cells expressed genes: MST1 | ||
16 | Spatiotemporal analysis of human intestinal development at single-cell resolution Dataset 1: Spatiotemporal analysis of human intestinal development at single-cell resolution: All cells cell type: Endothelium expressed genes: MST1 | ||
17 | Spatiotemporal immune zonation of the human kidney Dataset 1: Mature kidney dataset: full cell type: Ascending vasa recta endothelium Descending vasa recta endothelium expressed genes: MST1 Dataset 2: Fetal kidney dataset: full cell type: Endothelium expressed genes: MST1 |