April 2023 in “Journal of Investigative Dermatology” This study found that occlusive dressings on mouse wounds eliminated wound-induced hair neogenesis by upregulating mechanotransduction, which promotes fibrosis, and suppressing Wnt signaling involved in regeneration.
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.
January 2013 in “eScholarship (California Digital Library)” This study observed that activating Wnt signaling pathways increased the efficiency of reprogramming human fibroblasts into induced pluripotent stem cells compared to untreated cells.
April 2024 in “BMB Reports” This study used Cisd2 knockout mice models and found that these mice display premature aging characteristics and an increase in dysfunctional neutrophils, suggesting Cisd2's role in calcium homeostasis and neutrophil function via interactions with Calnexin and SERCA.
1 citations
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August 2013 in “The Journal of Cell Biology” This study found that Wnt secretion is important for skin homeostasis in mice, as Evi-deficient mice developed skin lesions resembling psoriasis and showed immune cell imbalance.
293 citations
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September 2004 in “Development” This study found that WNT signaling is essential for the initiation of mammary gland morphogenesis in embryonic mice, promoting placode development and potentially playing a critical role in skin appendage formation.
July 2025 in “Journal of Investigative Dermatology” Wnt signaling helps regenerate hair follicles in wounds by reducing skin cell sensitivity to mechanical stress.
1 citations
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November 2024 in “eLife” This study in mice found that MEIS2 expression in mesenchymal dermal cells is crucial for the formation of whiskers and the initial steps of epithelial placode development, independently of sensory nerve innervation or Foxd1 expression.
9 citations
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February 2018 in “The Journal of Dermatology” This study identified a novel splice site mutation in the LIPH gene associated with autosomal recessive woolly hair, contributing to understanding the genetic basis of this condition.
July 2026 in “npj Regenerative Medicine” This study identified a crucial Gli2-Serpinh1 regulatory axis that regulates fibroblast state transitions during skin wound healing, shedding light on fibroblast heterogeneity and suggesting potential precision regenerative therapies.
4 citations
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July 2021 in “bioRxiv (Cold Spring Harbor Laboratory)” This study suggests that BLMP-1 is important for timely molting and oscillatory gene expression in C. elegans, indicating a potentially conserved mechanism for rhythmic skin regeneration.
This study found that the Piezo1 ion channel reduces the efficiency of keratinocyte migration, and its inhibition in mice accelerates wound healing.
22 citations
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May 2021 in “Nature Communications” This study found that in wound-induced hair neogenesis, African spiny mice and laboratory mice exhibit different morphogenetic field formation patterns related to tissue stiffness, suggesting evolutionary developmental biology advantages.
3 citations
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May 2024 in “Poultry Science” This study identified key genes involved in feather follicle development in Wannan chickens, finding that genes such as LAMC2, COL6A3, and WNT7A are crucial in the regulation processes, potentially aiding molecular breeding programs for improved carcass appearance traits.
9 citations
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July 2022 in “Journal of Biological Chemistry” This study in mice found that WWP2 facilitates odontoblast differentiation and dentin formation by targeting PTEN for degradation, thereby enhancing KLF5 activity, which may suggest its crucial role in dental development.
This study provides genomic and epigenomic insights into the white wax scale insect, highlighting high methylation levels and differential hormone profiles linked to its sexual dimorphism and developmental differences.
10 citations
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July 2019 in “Advances in Wound Care” This study suggests that Flightless I may inhibit the activation of epidermal stem cells during wound repair by disrupting Wnt/β-catenin signaling, potentially delaying wound reepithelialization.
July 2025 in “bioRxiv (Cold Spring Harbor Laboratory)” This study developed a potent Wnt surrogate with high specificity for the Fzd7 receptor in mice, promoting full hair follicle regeneration and robust hair growth, suggesting potential applications in tissue development and targeted regeneration.
This research describes a crucial role for Meis2 expression in mesenchymal cells derived from the neural crest for whisker formation, showing that whiskers can develop without sensory innervation or FOXD1 expression, highlighting an early function of MEIS2.
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.
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.
13 citations
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August 2020 in “Frontiers in Cell and Developmental Biology” This study found that Twist1 and Tcf4 synergistically regulate the hair follicle induction ability of dermal papilla cells by forming a complex with β-catenin, enhancing their biological properties.
248 citations
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November 2011 in “The EMBO Journal” This study found that Wnt1/βcatenin signaling plays a crucial role in activating the epicardium and cardiac fibroblasts, which supports cardiac repair following acute ischemic injury.
July 2022 in “Journal of Investigative Dermatology” This study found that Dkk4-knockout mice exhibited disrupted hair follicle patterning, including a lack of the first wave of hair follicles in the lateral back skin.
April 2018 in “Journal of Investigative Dermatology” African spiny mice can regenerate skin and hair after wounds due to specific tissue mechanics.
April 2021 in “Journal of Investigative Dermatology” Blocking DPP4 can help prevent fat loss and skin fibrosis.
4 citations
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March 2024 in “The Journal of Cell Biology” This study found that Caspase-1, traditionally viewed as an inflammasome component, is secreted upon wounding and plays a novel role by triggering hair follicle stem cell migration into the epidermis, offering insights into epithelial hyperplasia mechanisms in inflammatory skin conditions.
4 citations
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December 2021 in “Journal of clinical laboratory analysis” This study identified a splicing-site deletion in the DCAF17 gene associated with Woodhouse-Sakati syndrome in a large consanguineous pedigree, leading to typical phenotypic features.
November 2019 in “SLAS technology” This study demonstrates that Sox11 and Sox4 are crucial for activating embryonic-like programs during wound healing, with Sox11 overexpression impairing skin differentiation and promoting genes linked to embryonic epidermis.