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Research 91–120 of 317
- Epidermal stem cells: skin surveillance and clinical perspective
- GPR39 marks specific cells within the sebaceous gland and contributes to skin wound healing
- Development and Maintenance of Epidermal Stem Cells in Skin Adnexa
- Genetically Induced Cell Death in Bulge Stem Cells Reveals Their Redundancy for Hair and Epidermal Regeneration
- Dicer- and Bulge Stem Cell-Dependent MicroRNAs During Induced Anagen Hair Follicle Development
- Ontogeny of Skin Stem Cells and Molecular Underpinnings
- Toward Elucidating Epigenetic and Metabolic Regulation of Stem Cell Lineage Plasticity in Skin Aging
- GDNF promotes hair formation and cutaneous wound healing by targeting bulge stem cells
- Transcriptional Control of Epidermal Stem Cells
- Epidermal Stem Cells in Orthopaedic Regenerative Medicine
- Neurobiology, Stem Cell Biology, and Immunology: An Emerging Triad for Understanding Tissue Homeostasis and Repair
- A stretch-responsive fibroblast program promotes epidermal stem cell self-renewal during skin expansion
- The Role of the Vitamin D Receptor in the Epidermal Stem Cell Response to Wounding
- The Role of ATP-dependent Chromatin Remodeling in the Control of Epidermal Differentiation and Skin Stem Cell Activity
- The Role and Prospects of Mesenchymal Stem Cells in Skin Repair and Regeneration
- Lrig1 Expression Defines a Distinct Multipotent Stem Cell Population in Mammalian Epidermis
- Epidermal stem cell diversity and quiescence
- Proinflammatory cytokines regulate epidermal stem cells in wound epithelialization
- Feasibility of repairing full-thickness skin defects by iPSC-derived epithelial stem cells seeded on a human acellular amniotic membrane
- Mesenchymal Stem Cells From Mouse Hair Follicles Reduce Hypertrophic Scarring in a Murine Wound Healing Model
- Treatment of Full-Thickness Skin Wounds with Blood-Derived CD34+ Precursor Cells Enhances Healing with Hair Follicle Regeneration
- Keratinocyte Stem Cells: Role in Aging
- Mesenchymal stem cells paracrine proteins from three‐dimensional dynamic culture system promoted wound healing in third‐degree burn models
- Author response: Hair follicle epidermal stem cells define a niche for tactile sensation
- Decision letter: Hair follicle epidermal stem cells define a niche for tactile sensation
- Wounding induces dedifferentiation of epidermal Gata6+ cells and acquisition of stem cell properties
- Hair follicle and interfollicular epidermal stem cells make varying contributions to wound regeneration
- Glutamate transporter Slc1a3 mediates inter‐niche stem cell activation during skin growth
- Hair follicle stem cells as a skin‐organizing signaling center during adult homeostasis
- Pigment epithelium‑derived factor short peptides facilitate full‑thickness cutaneous wound healing by promoting epithelial basal cell and hair follicle stem cell proliferation