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Research 61–90 of 132
- Multipotent nestin-positive, keratin-negative hair-follicle bulge stem cells can form neurons
- Nascent blood vessels in the skin arise from nestin-expressing hair-follicle cells
- Factors regulating quiescent stem cells: insights from the intestine and other self-renewing tissues
- Genetic Tools for Cell Lineage Tracing and Profiling Developmental Trajectories in the Skin
- There and Back Again: Hair Follicle Stem Cell Dynamics
- Author response: Sphingosine 1-phosphate-regulated transcriptomes in heterogenous arterial and lymphatic endothelium of the aorta
- Decision letter: Sphingosine 1-phosphate-regulated transcriptomes in heterogenous arterial and lymphatic endothelium of the aorta
- 414 A new form of ectodermal dysplasia caused by mutations in TSPEAR
- NFATc1 Balances Quiescence and Proliferation of Skin Stem Cells
- Epithelial-Mesenchymal Micro-niches Govern Stem Cell Lineage Choices
- WNT10A mutation causes ectodermal dysplasia by impairing progenitor cell proliferation and KLF4-mediated differentiation
- Temporal Layering of Signaling Effectors Drives Chromatin Remodeling during Hair Follicle Stem Cell Lineage Progression
- Hair follicles’ transit-amplifying cells govern concurrent dermal adipocyte production through Sonic Hedgehog
- Lineage Analysis of Epidermal Stem Cells
- Distinct Fibroblast Lineages Give Rise to NG2+ Pericyte Populations in Mouse Skin Development and Repair
- The cellular basis of mechanosensory Merkel-cell innervation during development
- The Dynamic Duo: Niche/Stem Cell Interdependency
- CD80 on skin stem cells promotes local expansion of regulatory T cells upon injury to orchestrate repair within an inflammatory environment
- Hedgehog signaling reprograms hair follicle niche fibroblasts to a hyper-activated state
- Hair shaft miniaturization causes stem cell depletion through mechanosensory signals mediated by a Piezo1-calcium-TNF-α axis
- MicroRNA-205 promotes hair regeneration by modulating mechanical properties of hair follicle stem cells
- sPLA2-IIA Overexpression in Mice Epidermis Depletes Hair Follicle Stem Cells and Induces Differentiation Mediated Through Enhanced JNK/c-Jun Activation
- Cellular Heterogeneity and Plasticity of Skin Epithelial Cells in Wound Healing and Tumorigenesis
- Single cell analysis of transcriptome and open chromatin reveals the dynamics of hair follicle stem cell aging
- A desmosomal cadherin controls multipotent hair follicle stem cell quiescence and orchestrates regeneration through adhesion signaling
- H3K9me3 controls epidermis morphogenesis by regulating RNA Pol II dynamics at developmental promoters and enhancers
- Hyperinnervation inhibits organ-level regeneration in mammalian skin
- Stress-induced sympathetic hyperactivation drives hair follicle necrosis to trigger autoimmunity
- PIEZO1-mediated calcium signaling reinforces mechanical properties of hair follicle stem cells to promote quiescence
- Intermittent fasting triggers interorgan communication to suppress hair follicle regeneration