2 citations
,
December 2022 in “Journal of Biochemistry and Molecular Biology” This review discusses the development and potential applications of organoids for human disease modeling and regenerative medicine but reports no new experimental results.
2 citations
,
December 2022 in “Pharmaceutics” This study found that activating both PKM2 and Wnt/β-catenin signaling pathways significantly enhanced hair regrowth and hair follicle neogenesis in mice, suggesting a potential strategy for treating alopecia.
2 citations
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August 2022 in “BMC veterinary research” This study confirmed the biological characteristics and multipotent differentiation potential of primary and secondary hair follicle stem cells from Arbas Cashmere goats, contributing to the understanding of adult stem cell types and characteristics.
2 citations
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June 2022 in “Scientific reports” In this study, one type of commercial culture medium supported expression of stem cell markers in hair follicle epithelial stem cells, but their differentiation potential and hair follicle-inducing ability declined over time.
2 citations
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May 2022 in “Stem cell research & therapy” This study found that hair follicle stem cells in the hairpoor mouse, a model for Marie-Unna hypotrichosis, lose their quiescent state, leading to a disordered hair cycle and contributing to alopecia.
2 citations
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April 2022 in “Research Square (Research Square)” This study found that activating PKM2 and Wnt/β-catenin signaling enhanced hair regrowth and hair follicle stem cell proliferation in mice, suggesting a potential alopecia treatment strategy.
2 citations
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February 2022 in “Human Gene Therapy” This study found that upregulated miR-149 restricted hair follicle stem cell differentiation and hair growth by inhibiting the MAPK1/ERK2 pathway, which affects FGF2 and c-MYC expression.
2 citations
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January 2022 in “Oxidative Medicine and Cellular Longevity” This study suggests that exosomes from dermal papilla cells can regulate hair follicle stem cell proliferation via the Wnt3a/β-catenin signaling pathway, potentially informing treatment for human hair problems.
2 citations
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May 2021 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that fibronectin is crucial for hair follicle stem cell function and regeneration, with its deletion impairing regeneration but restoration by dermal injection of exogenous fibronectin.
2 citations
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January 2021 in “Journal of Cosmetics, Dermatological Sciences and Applications” In this study, phenol-enriched olive mill wastewater extract positively influenced hair growth in vitro by promoting human dermal papilla cell proliferation, increasing insulin-like growth factor-1 secretion, and reducing reactive oxygen species, suggesting it may be beneficial for hair care.
2 citations
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March 2020 in “Cell” This article reviews Elaine Fuchs’ groundbreaking discovery of adult skin stem cells' roles in homeostasis, wound repair, inflammation, and cancer, and reports no new results.
2 citations
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April 2019 in “Journal of Investigative Dermatology” This study found that overexpression of Gasdermin A3 in mice disrupts the hair follicle stem cell niche and causes hair loss through cell necrosis and abnormal hair cycle progression, without involving immune-mediated mechanisms.
2 citations
,
December 2017 in “Korean Journal of Medicinal Crop Science” This study found that 70% ethanol extract of Houttuynia cordata promoted hair growth in laboratory cell models, suggesting potential use in developing hair care products.
1 citations
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May 2025 in “International Immunopharmacology” This study found that L-borneol, derived from Chinese medicine, significantly promotes the differentiation of rat hair follicle stem cells into basal layer cells, aiding wound healing, with the process involving inhibition of the PODXL2 gene by the microRNA rno-miR-127.
1 citations
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May 2024 in “Communications Biology” This study found that Dab2 conditional knockout mice experienced delayed hair follicle cycles and reduced hair follicle stem cell activity, suggesting Dab2's crucial role in regulating stem cell activation and anti-aging process in hair follicles.
1 citations
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March 2024 in “Science” In this study, researchers found that retinoic acid is crucial for hair follicle stem cell function and tissue regeneration by resolving lineage plasticity, with potential therapeutic implications for hair growth, wound healing, and cancer.
1 citations
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December 2023 in “Scientific reports” This study investigated the use of 3D cell culture technology to explore hair follicle regeneration, examining the impact of the 3D cellular environment on hair follicle morphogenesis and the effects of microwell depth on spheroid formation.
1 citations
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November 2023 in “iScience” In this study, researchers found that disrupting desmoglein 3 signaling in a mouse model of pemphigus vulgaris activates normally quiescent hair follicle stem cells, compromising their multipotency but prompting a regenerative response that restores stem cell function and structures.
1 citations
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September 2023 in “eLife” This study found that TLR2 expression in hair follicle stem cells is crucial for hair follicle maintenance and regeneration, with TLR2-dependent activation potentially offering new therapeutic approaches for hair loss prevention through mechanisms involving immune pathways and CEP administration.
1 citations
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September 2023 in “Journal of cosmetic dermatology” This study suggests that Silybum marianum flower extract may promote hair growth and reduce hair loss by increasing proliferation and VEGF production in dermal papilla cells and suppressing cell senescence.
1 citations
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September 2023 in “Life science alliance” In this study, researchers observed that Vdr-knockout mice experience hair cycle arrest during the catagen stage, leading to alopecia, with persistent epithelial strands forming in the hair follicles, indicating Vitamin D receptor's role in regulating hair follicle regression and regeneration.
1 citations
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July 2023 in “Chinese Medicine” This study found that Shi-Bi-Man significantly promotes hair regeneration in cynomolgus monkeys by increasing hair follicle stem cells and up-regulating metabolic pathways.
1 citations
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June 2023 in “The FASEB journal” This study found that in mice, LSD1 interacting with HSP90 accelerates skin wound healing by enhancing HFSC glycolytic metabolism, proliferation, and differentiation via the c-MYC/LDHA axis.
1 citations
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March 2023 in “International Wound Journal” This article reviewed a study suggesting that CCN1 secreted by human adipose-derived stem cells may enhance wound healing, although the authors note limitations such as small sample size and incomplete evaluation of wound healing processes.
1 citations
,
February 2023 in “ACS Biomaterials Science & Engineering” This study found that using a microwell array device to expand hair follicle stem cells in Matrigel significantly increased cell numbers and enhanced hair regeneration in mice.
1 citations
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December 2022 in “Animals” This study found that miR-27a may influence sheep hair follicle stem cell proliferation and apoptosis by targeting PIK3R3, affecting the AKT/MTOR pathway.
1 citations
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October 2022 in “JCI insight” In this study, conditional deletion of BRD4 in OX40-expressing cells of mice led to alopecia, dermatitis, and loss of hair follicle stem cell function, revealing BRD4's role in skin inflammation and stem cell regulation.
1 citations
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October 2022 in “Annual review of cell and developmental biology” This review discusses the roles of peripheral nerves in stem cell and immune responses within the skin and hematopoietic system, emphasizing their potential in developing new therapies; it reports no new experimental results.
1 citations
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September 2022 in “Molecules” This review systematically summarizes the chemical components and pharmacological research on Fructus Malvae, aiming to enhance its development and application in traditional Chinese medicine; it reports no new clinical results.
1 citations
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April 2022 in “Cell Death Discovery” This study found that SMAD2 overexpression in human hair follicle stem cells promoted differentiation and apoptosis while inhibiting proliferation, and Smurf2 upregulation limited mouse wound healing by suppressing the SMAD2/NANOG/DNMT1 axis.