45 citations
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April 2016 in “Journal of Dermatological Science” This study found that the Wnt/β-catenin signaling pathway activates melanocyte stem cells, promoting hair follicle regeneration both in vitro and in vivo.
September 2016 in “Journal of Dermatological Science” This study investigated the effects of Wnt-3a, Wnt-5a, Wnt11, and Wnt-10b on the hair induction-ability of cultured dermal papilla cells.
April 2016 in “Journal of Investigative Dermatology” The authors concluded that Wnt ligands produced by hair-inducing dermal papilla cells have crucial roles in coordinating postnatal hair growth by interacting with both epithelial and mesenchymal compartments.
5 citations
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January 2016 in “Journal of Molecular Histology” Both main and alternative Wnt signaling are important for regrowing rodent whisker follicles.
149 citations
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July 2000 in “Molecular and Cellular Biology” This study found that MK6a-deficient mice showed delayed reepithelialization after superficial wounding but not after full-thickness skin wounds, suggesting MK6a plays a role in activating follicular keratinocytes post-wounding.
July 2026 in “Journal of Investigative Dermatology” 2 citations
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August 2022 in “Frontiers in Endocrinology” This study reported that myeloid-specific Wnt production did not affect wound healing or blood vessel density in mice but influenced endovascular progenitor cell kinetics during angiogenesis.
11 citations
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January 2022 in “Theranostics” In this study, Wnt4 was identified as a key factor in cardiac repair, where its regulation in cardiac fibroblasts improved cardiac function and revascularization following ischemic reperfusion injury.
February 2025 in “Science Advances” This study demonstrates that Wnt signaling plays a crucial mechanoregulatory role in skin regeneration by influencing cellular responses to substrate rigidity, which promotes hair follicle regeneration in the wound-induced hair neogenesis model.
32 citations
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May 2015 in “Journal of Investigative Dermatology” This study found that collagen VI influences hair follicle growth and wound-induced regrowth by activating the Wnt/β-catenin signaling pathway in mice, suggesting potential therapeutic targets for hair loss.
91 citations
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December 2010 in “Stem Cells” This study found that Wnt signaling regulates the symmetric division of adult neural stem cells, increasing their numbers during subependymal regeneration, stroke response, and colony formation.
77 citations
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July 2012 in “Journal of Investigative Dermatology” The researchers observed that overexpression of Wnt10b in a mouse model can induce hair follicle regeneration by switching follicles from the resting phase to the growth phase via the Wnt-β-catenin signaling pathway.
5 citations
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May 2023 in “Frontiers in Cell and Developmental Biology” This study used single-cell techniques and lineage tracing to reveal that integrin α6 expression in neural crest cells can differentiate them into Schwann cells, melanocytes, and fibroblasts in skin, identifying integrin α6 as a potential marker for these derivatives.
May 2018 in “Journal of Investigative Dermatology” Activating Wnt in skin cells controls the number of hair follicles by directing cell movement and fate.
11 citations
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November 2018 in “Journal of the American Academy of Dermatology” This study found that among patients with alopecia areata treated with the JAK inhibitor tofacitinib, 34% achieved complete regrowth of eyebrows and 39% achieved complete regrowth of eyelashes, highlighting differences in treatment responses across hair-bearing sites.
July 2024 in “Journal of Investigative Dermatology” JW0061 may be a new treatment for hair loss by promoting hair growth through WNT signaling.
96 citations
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March 2007 in “Developmental biology” This study found that the Wnt inhibitor Dkk4 may play a role in regulating hair follicle development through a feedback loop with canonical Wnt signaling pathways.
January 2008 in “Deep Blue (University of Michigan)” This study found that Hedgehog-driven skin tumorigenesis is dependent on the Wnt/beta-catenin signaling pathway and suggests that targeting Wnt ligands could be a potential therapeutic strategy.
April 2026 in “International Journal of Molecular Sciences” This review synthesizes recent research on how Wnt signaling regulates skin, hair follicle, and nail regeneration, highlighting its compartment-specific roles and discussing targeted strategies for treating conditions like alopecia, chronic wounds, and skin cancer.
12 citations
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September 2021 in “PLoS ONE” In this study, researchers found that interaction between transcription factor EBF1 and gene WNT10A, influenced by a genetic variant, may play a role in hair shaft formation and anagen shortening in male pattern baldness.
April 2024 in “JEADV. Journal of the European Academy of Dermatology and Venereology/Journal of the European Academy of Dermatology and Venereology” A new change in the WNT10A gene caused a condition leading to short hair growth in a Chinese family.
39 citations
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January 2013 in “Journal of Investigative Dermatology” This review explains how recent understanding of Wnt signaling regulation in hair follicles could potentially be used to enhance hair growth, but it reports no new empirical results.
3 citations
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August 2012 in “Nature Cell Biology” This study found that the Wnt-β-catenin pathway directly promotes TERT expression in both stem and cancer cells, highlighting a mechanistic link between tumorigenesis and pluripotency.
101 citations
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November 2011 in “Nature Communications” Wnt/β-catenin signaling is crucial for cell fusion in placental development.
173 citations
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January 2014 in “Nature Cell Biology” This study found that Wnt signalling activates hair follicle fate in hair follicle stem cells by relieving TCF3/4–TLE-mediated repression, with β-catenin being crucial for this process.
April 2010 in “The Journal of Urology” Human prostate cells produce more WISP1/CCN4 when there's not enough oxygen.
January 2018 in “Zurich Open Repository and Archive (University of Zurich)” 23 citations
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January 2018 in “PLoS ONE” In this study, researchers found that changes in Wnt signaling pathways play a crucial role in feather follicle morphogenesis during chicken embryo development.
December 1963 in “Medical Entomology and Zoology” This study found that Wnt1a overexpression from bone marrow mesenchymal stem cells enhanced hair follicle regeneration in mice by promoting the dermal papilla's role in hair cycling and gene expression recovery.
2 citations
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January 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that androgen signaling can inhibit Wnt-stimulated growth in prostate basal cell organoids, suggesting a key role in regulating their multipotency.