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Details on Person Single cell transcriptomics of human epidermis identifies basal stem cell transition states
| Class:Id | LiteratureReference:9840015 |
| _displayName | Single cell transcriptomics of human epidermis identifies basal stem cell transition states |
| _timestamp | 2023-07-13 00:34:40 |
| author | [Person:9840003] Wang, Shuxiong [Person:9840027] Drummond, Michael L [Person:9840007] Guerrero-Juarez, Christian F [Person:9840023] Tarapore, Eric [Person:9839979] MacLean, Adam L [Person:9840017] Stabell, Adam R [Person:9840026] Wu, Stephanie C [Person:9839981] Gutierrez, Guadalupe [Person:9839996] That, Bao T [Person:9839987] Benavente, Claudia A [Person:9735430] Nie, Qing [Person:9840001] Atwood, Scott X |
| created | [InstanceEdit:9839997] Orlic-Milacic, Marija, 2023-07-13 |
| journal | Nat Commun |
| pages | 4239 |
| pubMedIdentifier | 32843640 |
| title | Single cell transcriptomics of human epidermis identifies basal stem cell transition states |
| volume | 11 |
| year | 2020 |
| (literatureReference) | [MarkerReference:9861115] COL17A1(1-1497) [endoplasmic reticulum lumen] Single cell transcriptomics of human epidermis identifies basal stem cell transition states [MarkerReference:9861234] COL17A1 mRNA [cytosol] Single-cell RNA sequencing of human epidermis identifies Lunatic fringe as a novel regulator of the stem cell compartment [Cell:9725559] keratinocyte stem cell of skin epidermis basal layer [Homo sapiens] [CellLineagePath:9725554] Differentiation of Keratinocytes in Interfollicular Epidermis in Mammalian Skin [Homo sapiens] |
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