Gsdma3 Regulates Hair Follicle Differentiation Via Wnt5a-Mediated Non-Canonical Wnt Signaling Pathway

    October 2017 in “ Oncotarget ”
    Long He, Mingxing Lei, Yizhan Xing … Li Yang
    Studysummary This study found that Wnt5a regulates hair follicle differentiation in mice by mediating epithelial-mesenchymal interactions and influencing dermal papilla cell activities.
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    Research cited in this study 13

    1. Self-Organization Process in Newborn Skin Organoid Formation Inspires Strategy to Restore Hair Regeneration of Adult Cells Proceedings of the National Academy of Sciences of the United States of America · 2017
    2. Epithelial-Mesenchymal Micro-Niches Govern Stem Cell Lineage Choices Cell · 2017
    3. Aging, Alopecia, and Stem Cells Science · 2016
    4. Wnt5a Suppresses β-Catenin Signaling During Hair Follicle Regeneration International Journal of Medical Sciences · 2016
    5. Roles of GasderminA3 in Catagen–Telogen Transition During Hair Cycling Journal of Investigative Dermatology · 2015
    6. Modulating Hair Follicle Size with Wnt10b/DKK1 During Hair Regeneration Experimental Dermatology · 2014
    7. Therapeutic Strategy for Hair Regeneration: Hair Cycle Activation, Niche Environment Modulation, Wound-Induced Follicle Neogenesis, and Stem Cell Engineering Expert Opinion on Biological Therapy · 2013
    8. Adenovirus-Mediated Wnt5a Expression Inhibits the Telogen-To-Anagen Transition of Hair Follicles in Mice International journal of medical sciences · 2013
    9. Tuning Wnt Signals for More or Fewer Hairs Journal of Investigative Dermatology · 2013
    10. Mesenchymal–Epithelial Interactions During Hair Follicle Morphogenesis and Cycling Seminars in Cell & Developmental Biology · 2012
    11. Upregulation of Interfollicular Epidermal and Hair Infundibulum β-Catenin Expression in Gsdma3 Mutant Mice Acta histochemica · 2012
    12. Gsdma3 Is Required for Hair Follicle Differentiation in Mice Biochemical and biophysical research communications · 2010
    13. Control of Hair Follicle Cell Fate by Underlying Mesenchyme Through a CSL–Wnt5a–FoxN1 Regulatory Axis Genes & development · 2010

    Related research 3

    1. Canonical and Non-Canonical Wnt Signaling Control the Regeneration of Amputated Rodent Vibrissae Follicles Journal of Molecular Histology · 2016
    2. MicroRNA-214 Controls Skin and Hair Follicle Development by Modulating the Activity of the Wnt Pathway Journal of Cell Biology · 2014
    3. Dynamic Wnt5a Expression in Murine Hair Follicle Cycle and Its Inhibitory Effects on Follicular Growth Asian Pacific journal of tropical medicine · 2014