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    Research 61–90 of 458

    1. MicroRNA-214 controls skin and hair follicle development by modulating the activity of the Wnt pathway Journal of Cell Biology · 2014 · 103 citations
    2. Control of hair follicle cell fate by underlying mesenchyme through a CSL–Wnt5a–FoxN1 regulatory axis Genes & development · 2010 · 95 citations
    3. The roles of Wnt/β‐catenin pathway in tissue development and regenerative medicine Journal of Cellular Physiology · 2017 · 89 citations
    4. Targeting Wnt/β-Catenin Pathway for Developing Therapies for Hair Loss International Journal of Molecular Sciences · 2020 · 86 citations
    5. BMP-FGF Signaling Axis Mediates Wnt-Induced Epidermal Stratification in Developing Mammalian Skin PLoS Genetics · 2014 · 84 citations
    6. PAK4 signaling in health and disease: defining the PAK4–CREB axis Experimental & Molecular Medicine · 2019 · 81 citations
    7. Review of Hair Follicle Dermal Papilla cells as <i>in vitro</i> screening model for hair growth International Journal of Cosmetic Science · 2018 · 76 citations
    8. Hairless and Wnt Signaling: Allies in Epithelial Stem Cell Differentiation Cell Cycle · 2006 · 74 citations
    9. Wnt signaling in skin organogenesis Organogenesis · 2008 · 72 citations
    10. Identifying novel strategies for treating human hair loss disorders: Cyclosporine A suppresses the Wnt inhibitor, SFRP1, in the dermal papilla of human scalp hair follicles PLOS Biology · 2018 · 68 citations
    11. Wnt signaling induces epithelial differentiation during cutaneous wound healing Organogenesis · 2015 · 66 citations
    12. Stem cell quiescence acts as a tumour suppressor in squamous tumours Nature Cell Biology · 2013 · 66 citations
    13. Role of  -catenin in Epidermal Stem Cell Expansion, Lineage Selection, and Cancer Cold Spring Harbor Symposia on Quantitative Biology · 2008 · 61 citations
    14. Exosomes derived from human dermal papilla cells promote hair growth in cultured human hair follicles and augment the hair‐inductive capacity of cultured dermal papilla spheres Experimental Dermatology · 2019 · 58 citations
    15. Stem cell plasticity enables hair regeneration following Lgr5+ cell loss Nature Cell Biology · 2017 · 56 citations
    16. Tcf3 promotes cell migration and wound repair through regulation of lipocalin 2 Nature Communications · 2014 · 55 citations
    17. miR‐218‐5p regulates skin and hair follicle development through Wnt/β‐catenin signaling pathway by targeting SFRP2 Journal of cellular physiology · 2019 · 54 citations
    18. Spontaneous tumour regression in keratoacanthomas is driven by Wnt/retinoic acid signalling cross-talk Nature Communications · 2014 · 51 citations
    19. Wnt signaling: the good and the bad Acta Biochimica et Biophysica Sinica · 2008 · 48 citations
    20. Dissecting Fibroblast Heterogeneity in Health and Fibrotic Disease Current Rheumatology Reports · 2020 · 48 citations
    21. Repairing the lungs one breath at a time: How dedicated or facultative are you? Genes & Development · 2018 · 46 citations
    22. The Androgen Receptor Antagonizes Wnt/β-Catenin Signaling in Epidermal Stem Cells Journal of Investigative Dermatology · 2015 · 46 citations
    23. Principles and mechanisms of regeneration in the mouse model for wound‐induced hair follicle neogenesis Regeneration · 2015 · 46 citations
    24. Regulation of masculinization: androgen signalling for external genitalia development Nature Reviews Urology · 2018 · 45 citations
    25. Hoxc-Dependent Mesenchymal Niche Heterogeneity Drives Regional Hair Follicle Regeneration Cell Stem Cell · 2018 · 43 citations
    26. Functional hair follicle regeneration: an updated review Signal Transduction and Targeted Therapy · 2021 · 42 citations
    27. Androgen modulation of Wnt/β-catenin signaling in androgenetic alopecia Archives of Dermatological Research · 2018 · 39 citations
    28. Stimulation of the Follicular Bulge LGR5+ and LGR6+ Stem Cells with the Gut-Derived Human Alpha Defensin 5 Results in Decreased Bacterial Presence, Enhanced Wound Healing, and Hair Growth from Tissues Devoid of Adnexal Structures Plastic and Reconstructive Surgery · 2013 · 39 citations
    29. Aging in hair follicle stem cells and niche microenvironment The Journal of Dermatology · 2017 · 38 citations
    30. Identification of microRNAs in Wool Follicles during Anagen, Catagen, and Telogen Phases in Tibetan Sheep PLoS ONE · 2013 · 37 citations