BioProject items
- PRJNA322355 Single cell transcriptome analysis of human pancreas reveals transcriptional signatures of aging and somatic mutation patterns. details
- PRJNA475114 Dissecting the human liver cellular landscape by single cell RNA-seq reveals novel intrahepatic monocyte/ macrophage populations details
- PRJNA493298 A cell atlas of the adult Drosophila midgut details
- PRJNA448420 Gene expression signatures of innate lymphoid cells from human blood details
- PRJNA615032 Transcriptional response to SARS-CoV-2 infection details
- PRJNA477814 Colonic single epithelial cell census reveals goblet cell drivers of barrier breakdown in inflammatory bowel disease details
- PRJNA518129 Single-cell transcriptome analysis reveals differential nutrient absorption functions in human intestine details
- PRJNA625201 Neuroinflammatory astrocyte subtypes in the mouse brain [scRNAseq] details
- PRJNA686382 Inferring regulatory targets of transcription factors from simultaneous single cell measurements of intranuclear proteins and gene expression details
- PRJNA688888 Molecular profiling of retinal pigmented epithelial cell differentiation for therapeutic use details
- PRJNA626628 A single cell atlas of the human proximal epididymis reveals cell-type specific functions and distinct roles for CFTR details
- PRJNA325005 Single cell RNA-seq of human pancreatic endocrine cells from Juvenile, adult control and type 2 diabetic donors. details
- PRJNA540429 Single cell analysis of human fetal liver captures the transcriptional profile of hepatobiliary hybrid progenitors details
- PRJNA481319 Single cell dissection of plasma cell heterogeneity in symptomatic and asymptomatic myeloma details
- PRJNA361254 Single cell RNAseq characterization of cell types produced over time in an in vitro model of human inhibitory interneuron differentiation. details
- PRJNA471188 Composition of the Colonic Mesenchyme and the Nature of its Plasticity in Inflammatory Bowel Disease details
- PRJNA377118 Structural Remodeling of the Human Colonic Mesenchyme in Inflammatory Bowel Disease [1] details
- PRJNA377145 Structural Remodeling of the Human Colonic Mesenchyme in Inflammatory Bowel Disease [2] details
- PRJNA377153 Structural Remodeling of the Human Colonic Mesenchyme in Inflammatory Bowel Disease [3] details
- PRJNA734315 Clonally expanded, GPR15-expressing pathogenic effector Th2 cells are associated with eosinophilic esophagitis details
- PRJNA734315 Clonally expanded, GPR15-expressing pathogenic effector Th2 cells are associated with eosinophilic esophagitis details
- PRJNA828562 Single-cell RNA Sequencing of Human Esophageal Epithelium in Homeostasis and Allergic Inflammation details
- PRJNA738517 A Single Cell Atlas of MMRd and MMRp Colorectal Cancer details
- PRJNA548146 Single cell 3' RNA sequencing of 23 Korean colorectal cancer patients details
- PRJNA258094 Single-cell RNA-seq of mouse cerebral cortex details
- PRJNA686798 The human brain vasculature at single-cell resolution details
- PRJNA602313 Single cell RNA-seq of CD1 mouse forebrain at embryonic day 15.5 details
- PRJNA819029 A Single-Cell Transcriptome Atlas of Glia Diversity in the Human Hippocampus across the Lifespan and in Alzheimer’s Disease details
- PRJNA672288 Resolving cellular and molecular diversity along the hippocampal anterior-to-posterior axis in humans details
- PRJNA412365 Transcriptome analysis of single cells from the developing mouse dentate gyrus details
- PRJNA759895 Single-cell dissection of obesity-exercise axis in adipose-muscle tissues details
- PRJNA966904 Sorting receptor SORCS2 facilitates a protective stress response in pancreatic islets details
- PRJNA729750 Single cell characterization of the immune microenvironment of melanoma brain and leptomeningeal metastases details
- PRJNA713868 Single-cell RNA sequencing of Drosophila embryonic heart details
- PRJNA602478 Single-cell RNA-seq achieve the transcriptome module the SAN morphogenesis and the pacemaking cell fate determinant details
- PRJNA360949 Single-cell RNA-seq of 1.3 million brain cells from E18 mice details
