Hedgehog Signaling Reprograms Hair Follicle Niche Fibroblasts to a Hyper-Activated State

    June 2022 in “ Developmental cell ”
    Yingzi Liu, Christian F. Guerrero‐Juarez, Fei Xiao … Maksim V. Plikus
    Studysummary In this study, Hedgehog signaling in dermal papilla fibroblasts was found to accelerate hair growth and induce follicle multiplication in mice via the SCUBE3/TGF-β pathway, with some effects observed in human scalp hair follicles.
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    Research cited in this study 50

    1. Fibroblasts: Origins, Definitions, and Functions in Health and Disease Cell · 2021
    2. Distinct Regulatory Programs Control the Latent Regenerative Potential of Dermal Fibroblasts During Wound Healing Cell stem cell · 2020
    3. Cell Types Promoting Goosebumps Form a Niche to Regulate Hair Follicle Stem Cells Cell · 2020
    4. Dermal Adipocyte Lipolysis and Myofibroblast Conversion Are Required for Efficient Skin Repair Cell Stem Cell · 2020
    5. Dermal Adipose Tissue Has High Plasticity And Undergoes Reversible Dedifferentiation In Mice Journal of Clinical Investigation · 2019
    6. Lymphatic Vessels Interact Dynamically with the Hair Follicle Stem Cell Niche During Skin Regeneration In Vivo The EMBO Journal · 2019
    7. Deciphering the Molecular Morphology of the Human Hair Cycle: Wnt Signalling During the Telogen–Anagen Transformation British Journal of Dermatology · 2019
    8. Noncoding dsRNA Induces Retinoic Acid Synthesis to Stimulate Hair Follicle Regeneration via TLR3 Nature Communications · 2019
    9. A Subset of TREM2+ Dermal Macrophages Secretes Oncostatin M to Maintain Hair Follicle Stem Cell Quiescence and Inhibit Hair Growth Cell Stem Cell · 2019
    10. Single-Cell Analysis Reveals Fibroblast Heterogeneity and Myeloid-Derived Adipocyte Progenitors in Murine Skin Wounds Nature Communications · 2019
    11. Hedgehog Stimulates Hair Follicle Neogenesis by Creating Inductive Dermis During Murine Skin Wound Healing Nature Communications · 2018
    12. The Mesenchymal Niche of the Hair Follicle Induces Regeneration by Releasing Primed Progenitors from Inhibitory Effects of Quiescent Stem Cells Cell Reports · 2018
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    18. Platelet-Derived Growth Factor Signaling Modulates Adult Hair Follicle Dermal Stem Cell Maintenance and Self-Renewal npj Regenerative Medicine · 2017
    19. Regeneration of Fat Cells from Myofibroblasts During Wound Healing Science · 2017
    20. Activation of Beta-Catenin Signaling in CD133-Positive Dermal Papilla Cells Drives Postnatal Hair Growth PLOS ONE · 2016
    21. STAT5 Activation in the Dermal Papilla Is Important for Hair Follicle Growth Phase Induction Journal of Investigative Dermatology · 2016
    22. Hair Follicle Aging Is Driven by Transepidermal Elimination of Stem Cells via COL17A1 Proteolysis Science · 2016
    23. Pharmacologic Inhibition of JAK-STAT Signaling Promotes Hair Growth Science Advances · 2015
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    40. Self-Organizing and Stochastic Behaviors During the Regeneration of Hair Stem Cells Science · 2011
    41. EZH1 and EZH2 Co-Govern Histone H3K27 Trimethylation and Are Essential for Hair Follicle Homeostasis and Wound Repair Genes & Development · 2011
    42. The Basement Membrane Of Hair Follicle Stem Cells Is A Muscle Cell Niche Cell · 2011
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    Related research 6

    1. TGFβ Family Mimetic Peptide Promotes Proliferation of Human Hair Follicle Dermal Papilla Cells and Hair Growth in C57BL/6 Mice Biomedical dermatology · 2018
    2. Activation of Beta-Catenin Signaling in CD133-Positive Dermal Papilla Cells Drives Postnatal Hair Growth PLOS ONE · 2016
    3. Dermal Sheath Cells Contribute to Postnatal Hair Follicle Growth and Cycling Journal of Dermatological Science · 2016
    4. Hair Follicle Dermal Stem Cells Regenerate the Dermal Sheath, Repopulate the Dermal Papilla, and Modulate Hair Type Developmental Cell · 2014
    5. Hair Follicle Expression of 1,25-Dihydroxyvitamin D3 Receptors During the Murine Hair Cycle British Journal of Dermatology · 2006
    6. An Estrogen Receptor Pathway Regulates the Telogen-Anagen Hair Follicle Transition and Influences Epidermal Cell Proliferation Proceedings of the National Academy of Sciences of the United States of America · 1996