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Research 31–60 of 108
- Hair Changes Caused by Aging
- Epithelial Wnt Ligand Secretion Is Required for Adult Hair Follicle Growth and Regeneration
- Through the lens of hair follicle neogenesis, a new focus on mechanisms of skin regeneration after wounding
- Wound Induced Hair Neogenesis – A Novel Paradigm for Studying Regeneration and Aging
- EGFR marks a subpopulation of dermal mesenchymal cells highly expressing IGF1 which enhances hair follicle regeneration.
- KY19382, a novel activator of Wnt/β-catenin signaling, promotes hair re-growth and hair follicle neogenesis
- Commensal microbiome promotes hair follicle regeneration by inducing keratinocyte HIF-1α signaling and glutamine metabolism
- Macrophages induce AKT/β-catenin-dependent Lgr5+ stem cell activation and hair follicle regeneration through TNF
- Hair follicle and interfollicular epidermal stem cells make varying contributions to wound regeneration
- Hedgehog signaling reprograms hair follicle niche fibroblasts to a hyper-activated state
- Defining the hair follicle stem cell (Part I)
- Topological Distribution of Wound Stiffness Modulates Wound-Induced Hair Follicle Neogenesis
- Molecular Signaling Pathways in Wound-Induced Hair-Follicle Neogenesis
- Exosomes derived from mouse vibrissa dermal papilla cells promote hair follicle regeneration during wound healing by activating Wnt/β-catenin signaling pathway
- Repurposing DPP4-Inhibition to Improve Hair Follicle Activation and Regeneration
- Cell Population Dynamics in Wound-Induced Hair Follicle Neogenesis Model
- Cells, growth factors and biomaterials used in tissue engineering for hair follicles regeneration
- <i>Hoxc13</i> mutant mice lack external hair
- Wound-Induced Hair Neogenesis Model
- Non-invasive assessment of hair regeneration in androgenetic alopecia mice in vivo using two-photon and second harmonic generation imaging
- Wound Healing and Skin Regeneration
- Development of Woolly Hair and Hairlessness in a CRISPR−Engineered Mutant Mouse Model with KRT71 Mutations
- Dissecting the bulge in hair regeneration
- Hardwiring Stem Cell Communication through Tissue Structure
- Emerging nonmetabolic functions of skin fat
- Engineering Pro‐Regenerative Hydrogels for Scarless Wound Healing
- Bacteria induce skin regeneration via IL-1β signaling
- Targeting of CXXC5 by a Competing Peptide Stimulates Hair Regrowth and Wound-Induced Hair Neogenesis
- Pyruvate Kinase M2 Promotes Hair Regeneration by Connecting Metabolic and Wnt/β-Catenin Signaling
- GDNF neurotrophic factor signaling determines the fate of dermal fibroblasts in wound‐induced hair neogenesis and skin regeneration