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: CD4-positive, alpha-beta T cell expressed genes: ITPKB | ||
2 | A human fetal lung cell atlas uncovers proximal-distal gradients of differentiation and key regulators of epithelial fates Dataset 1: All cells cell type: CD4-positive, alpha-beta T cell expressed genes: ITPKB | ||
3 | A molecular cell atlas of the human lung from single cell RNA sequencing Dataset 2: Krasnow Lab Human Lung Cell Atlas, Smart-seq2 cell type: CD4+ Memory/Effector T expressed genes: ITPKB | ||
4 | A molecular single-cell lung atlas of lethal COVID-19 Dataset 1: A molecular single-cell lung atlas of lethal COVID-19 cell type: CD4+ T cells expressed genes: ITPKB | ||
5 | A spatially resolved atlas of the human lung characterizes a gland-associated immune niche Dataset 1: All cells and nuclei cell type: CD4_EM/Effector CD4_naive/CM expressed genes: ITPKB | ||
6 | Blood and immune development in human fetal bone marrow and Down syndrome Dataset 1: Fetal Bone Marrow (10x) cell type: CD4 T cell expressed genes: ITPKB Dataset 4: Human Fetal Bone Marrow (CITE-seq) cell type: CD4 T cell expressed genes: ITPKB | ||
7 | 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: activated CD4-positive, alpha-beta T cell CD4-positive, alpha-beta T cell expressed genes: ITPKB | ||
8 | Cross-tissue immune cell analysis reveals tissue-specific features in humans Dataset 1: Global cell type: Teffector/EM_CD4 Tnaive/CM_CD4 Tnaive/CM_CD4_activated expressed genes: ITPKB | ||
9 | Distinct microbial and immune niches of the human colon Dataset 1: Colon cell type: Activated CD4 T expressed genes: ITPKB | ||
10 | 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: CD4, non-EM-like expressed genes: ITPKB | ||
11 | Local and systemic responses to SARS-CoV-2 infection in children and adults Dataset 2: Airway cell type: T CD4 CCR4+ expressed genes: ITPKB | ||
12 | Pathogenic variants damage cell composition and single cell transcription in cardiomyopathies Dataset 6: DCM/ACM heart cell atlas: Lymphoids cell type: CD4T_act expressed genes: ITPKB | ||
13 | Single-Cell Sequencing of Developing Human Gut Reveals Transcriptional Links to Childhood Crohn’s Disease Dataset 2: Paediatric Human Gut (4-14y) cell type: CD4 T cell expressed genes: ITPKB | ||
14 | Single-cell analysis of human B cell maturation predicts how antibody class switching shapes selection dynamics Dataset 1: Human tonsil complete integrated cell set scRNA cell type: CD4+ CD4+ NCM expressed genes: ITPKB | ||
15 | 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: CD4_Early_Activation expressed genes: ITPKB | ||
16 | Spatially resolved multiomics of human cardiac niches Dataset 1: Combined single cell and single nuclei RNA-Seq data - Heart Global cell type: CD4+T_act expressed genes: ITPKB | ||
17 | mRNA COVID-19 vaccine elicits potent adaptive immune response without the acute inflammation of SARS-CoV-2 infection Dataset 1: Circulating Immune cells -- CV19 infection, vaccination and HC cell type: T.CD4 expressed genes: ITPKB | ||
18 | scRNA-seq assessment of the human lung, spleen, and esophagus tissue stability after cold preservation Dataset 3: Lung Parenchyma cell type: T_CD4 expressed genes: ITPKB |