Dermal β-Catenin Is Required for Hedgehog-Driven Hair Follicle Neogenesis

    Churlzu Lim, Annette Kaminaka, Soung-Hoon Lee … Mayumi Ito
    Studysummary In this study, researchers found that both Wnt/β-catenin and Hedgehog signaling pathways must be activated in wound fibroblasts to promote hair follicle neogenesis in mice, suggesting these pathways are crucial for regenerative healing strategies.
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    Research cited in this study 14

    1. Hedgehog Signaling in Papillary Fibroblasts Is Essential for Hair Follicle Regeneration During Wound Healing Journal of Investigative Dermatology · 2021
    2. Distinct Regulatory Programs Control the Latent Regenerative Potential of Dermal Fibroblasts During Wound Healing Cell stem cell · 2020
    3. Hedgehog Stimulates Hair Follicle Neogenesis by Creating Inductive Dermis During Murine Skin Wound Healing Nature Communications · 2018
    4. Principles and Mechanisms of Regeneration in the Mouse Model for Wound-Induced Hair Follicle Neogenesis Regeneration · 2015
    5. Wound Healing and Skin Regeneration Cold Spring Harbor Perspectives in Medicine · 2015
    6. Distinct Fibroblast Lineages Determine Dermal Architecture in Skin Development and Repair Nature · 2013
    7. Fgf9 From Dermal γδ T Cells Induces Hair Follicle Neogenesis After Wounding Nature Medicine · 2013
    8. Wnt Signaling in Skin Development, Homeostasis, and Disease Cold Spring Harbor Perspectives in Biology · 2012
    9. Epithelial Wnt Ligand Secretion Is Required for Adult Hair Follicle Growth and Regeneration Journal of Investigative Dermatology · 2012
    10. Shh Maintains Dermal Papilla Identity and Hair Morphogenesis via a Noggin–Shh Regulatory Loop Genes & Development · 2012
    11. Dermal β-Catenin Activity in Response to Epidermal Wnt Ligands Is Required for Fibroblast Proliferation and Hair Follicle Initiation Development · 2012
    12. Wnt-Dependent De Novo Hair Follicle Regeneration in Adult Mouse Skin After Wounding Nature · 2007
    13. Multiple Roles for Activated LEF/TCF Transcription Complexes During Hair Follicle Development and Differentiation Development · 1999
    14. WNT Signaling in the Control of Hair Growth and Structure Developmental biology · 1999

    Related research 8

    1. Engineered Skin Substitute Regenerates Skin with Hair Follicle Formation Biomedicines · 2021
    2. KY19382, A Novel Activator of Wnt/β-Catenin Signaling, Promotes Hair Regrowth and Hair Follicle Neogenesis 2020
    3. Activin A-Induced Signaling Controls Hair Follicle Neogenesis Experimental Dermatology · 2016
    4. A Model System to Analyze the Ability of Human Keratinocytes to Form Hair Follicles Experimental Dermatology · 2014
    5. Dissociated Human Dermal Papilla Cells Induce Hair Follicle Neogenesis in Grafted Dermal-Epidermal Composites Journal of Investigative Dermatology · 2013
    6. Polyclonal Origin and Hair Induction Ability of Dermal Papillae in Neonatal and Adult Mouse Back Skin Developmental Biology · 2012
    7. Trans-Species Hair Growth Induction by Human Hair Follicle Dermal Papillae Experimental Dermatology · 2001
    8. Hair Matrix Germinative Epidermal Cells Confer Follicle-Inducing Capabilities on Dermal Sheath and High Passage Papilla Cells Development · 1996