A wealth of specialized cell populations within the skin facilitates its hair-producing, protective, sensory, and thermoregulatory functions. How the vast cell-type diversity and tissue architecture develops is largely unexplored. Here, with single-cell transcriptomics, spatial cell-type assignment, and cell-lineage tracing, we deconstruct early embryonic mouse skin during the key transitions from seemingly uniform developmental precursor states to a multilayered, multilineage epithelium, and complex dermal identity. We identify the spatiotemporal emergence of hair-follicle-inducing, muscle-supportive, and fascia-forming fibroblasts. We also demonstrate the formation of the panniculus carnosus muscle (PCM), sprouting blood vessels without pericyte coverage, and the earliest residence of mast and dendritic immune cells in skin. Finally, we identify an unexpected epithelial heterogeneity within the early single-layered epidermis and a signaling-rich periderm layer. Overall, this cellular and molecular blueprint of early skin development-which can be explored at https://kasperlab.org/tools-establishes histological landmarks and highlights unprecedented dynamic interactions among skin cells.
Molecular and spatial landmarks of early mouse skin development.
小鼠早期皮肤发育的分子和空间标志
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作者:Jacob Tina, Annusver Karl, Czarnewski Paulo, Dalessandri Tim, Kalk Christina, Levra Levron Chiara, Campamà Sanz Nil, Kastriti Maria Eleni, Mikkola Marja L, Rendl Michael, Lichtenberger Beate M, Donati Giacomo, Björklund à sa K, Kasper Maria
| 期刊: | Developmental Cell | 影响因子: | 8.700 |
| 时间: | 2023 | 起止号: | 2023 Oct 23; 58(20):2140-2162 |
| doi: | 10.1016/j.devcel.2023.07.015 | 种属: | Mouse |
| 研究方向: | 发育与干细胞 | ||
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