38 citations
,
April 2017 in “PLOS Genetics” This study found that human progenitor keratinocytes form unique complements of enhancers and super-enhancers during differentiation and migration, influencing gene expression and skin disease variant enrichment.
9 citations
,
August 2022 in “Frontiers in Pharmacology” This study found that Kangfuxin improved cell proliferation, migration, and wound healing in a mouse model of cutaneous injury through the activation of the STAT3 signaling pathway.
7 citations
,
January 2023 in “Frontiers in Cell and Developmental Biology” This review provides a comprehensive overview of apoptosis-related molecules in head development, highlighting caspases' roles and associated abnormalities in tissues like the brain, sensory organs, skin, and bones, without reporting new results.
3 citations
,
January 2020 in “The journal of investigative dermatology/Journal of investigative dermatology” This study found that epidermolysis bullosa simplex keratinocytes had impaired mitochondrial activity and more dispersed mitochondrial distribution compared to normal human keratinocytes.
February 2026 in “Exploration” This review summarizes research on scar formation and inhibition mechanisms, discussing emerging therapies like gene therapy and stem cell treatments, but notes ongoing challenges for clinical application, including treatment personalization and outcome sustainability.
6 citations
,
November 2024 in “Molecular Medicine” This review highlights that hormones significantly influence the wound healing process by coordinating cellular and molecular activities, and hormonal therapy is emerging as a promising treatment, with current research focusing on optimizing dosages and minimizing side effects.
This review explores plant-derived exosomes as promising alternatives to synthetic wound-healing agents due to their ability to regulate signaling pathways involved in skin repair, while also addressing challenges in their clinical application.
733 citations
,
September 2009 in “Journal of Cell Science” This article reviews the complex process of wound repair, emphasizing recent microarray studies and proteomic analyses, but reports no new clinical results.
253 citations
,
December 2007 in “Journal of Investigative Dermatology” This study suggests that human hair follicles may actively suppress natural killer cells, which contrasts with the observed defects in NK cell regulation in alopecia areata.
91 citations
,
December 2006 in “Proceedings of the National Academy of Sciences” In this study, researchers found that hair follicle orientation in Fz6 −/− mice is disrupted and that hair may reorient itself over time through a self-organized process.
37 citations
,
February 2024 in “Military Medical Research” In this review, biomaterial-based mechanical strategies were highlighted for their potential to enhance skin regeneration and promote scarless repair, though a comprehensive understanding of their underlying mechanisms is still needed for broader application.
30 citations
,
May 2019 in “Medicinal Research Reviews” This review discusses molecular and cellular strategies to improve muscle and skin regeneration and reduce scarring after cleft lip repair, offering potential benefits for function and aesthetics.
23 citations
,
November 2021 in “Journal of Bionic Engineering” This study found that PCL-Col/ZnO fibrous scaffolds enhanced wound healing and exhibited antibacterial properties, making them promising for use as a wound dressing.
18 citations
,
May 2022 in “Stem Cell Research & Therapy” This study found that irradiating human adipose-derived stem cells with green OLEDs enhanced their wound healing capability and increased cell proliferation, migration, and adhesion in preclinical models.
11 citations
,
June 2025 in “Advanced Functional Materials” This study reports that a pH-responsive nanosilver platform improved wound healing in mouse and rabbit models by targeting bacteria and supporting tissue repair more effectively than traditional silver nanoparticles.
10 citations
,
July 2023 in “Pharmaceutics” In this study using mice and human keratinocyte cells, researchers found that activating PKM2-mediated glycolysis and Wnt/β-catenin signaling, particularly via combined treatments, significantly accelerated wound healing and induced angiogenesis in wound beds.
10 citations
,
September 2021 in “International Journal of Nanomedicine” This review explores the potential diagnostic and therapeutic applications of extracellular vesicles in treating various skin conditions but reports no new clinical study results.
5 citations
,
May 2024 in “Journal of Cosmetic Dermatology” In this study, treatment with cell-derived nanovesicles from hair follicle mesenchymal stem cells improved photoaging signs in UVB-exposed mice and human dermal fibroblasts by reducing oxidative stress, enhancing cell proliferation, and promoting extracellular matrix production.
4 citations
,
November 2023 in “Nano biomedicine and engineering” This review highlights the potential of nanomaterials in revolutionizing wound healing and infection control by promoting antibacterial, anti-inflammatory, and angiogenic activities, thereby enhancing the wound healing process and offering novel therapeutic strategies.
3 citations
,
April 2022 in “F1000Research” This review discusses the roles of various biological mediators in the stages of skin regeneration, without providing new results, and suggests that understanding their mechanisms could improve treatment of skin wounds.
2 citations
,
September 2025 in “International Journal of Nanomedicine” This review discusses the roles of extracellular vesicles in skin health and disease and reports no clinical results; the authors highlight potential therapeutic uses and call for more research.
1 citations
,
August 2023 in “Gels” This study found that a chitosan-based hydrogel containing silver nanoparticles and ibuprofen demonstrated strong antibacterial activity and accelerated wound healing in vivo, suggesting its potential use in wound dressings.
This review categorizes contractile hydrogels by their contraction mechanisms and explores their role in advanced wound management, emphasizing mechanical and biochemical signaling in healing, but also notes challenges like force transmission and clinical applicability.
February 2026 in “Molecular and Cellular Probes” This systematic review synthesizes evidence from the past 20 years to highlight the potential of exosome-based therapies from stem cells and plants in improving cutaneous repair, skin aging, and challenging dermatological conditions through mechanisms like immunomodulation and collagen remodeling.
December 2025 in “eScience” This study presents a new wireless bioelectronic system powered by ambient Wi-Fi signals that enhances wound healing by providing electrical stimulation and real-time monitoring, offering a promising solution for at-home treatment and regenerative therapy.
May 2025 in “International Journal of Molecular Sciences” This study found that exosomes and secretome derived from rat hair follicle stem cells show promising potential for wound healing and tissue repair, demonstrating significant wound closure and suggesting their broader applicability in regenerative medicine.
January 2025 in “PLoS ONE” This study found that aligned electrospinning membranes enhance skin wound healing by upregulating MMP12 expression and inhibiting fibroblast migration, which results in reduced scar formation, providing valuable insights for developing more effective biological dressings.
February 2024 in “Advanced Science” This study highlights that a novel radially aligned nanofiber scaffold with dual growth factor gradients significantly enhances wound healing, promoting cell migration, epidermal regeneration, and angiogenesis, ultimately leading to improved wound closure, immune regulation, and tissue remodeling compared to other groups.
August 2020 in “Research Square (Research Square)” This study found that physoxia improved hair follicle functions in co-cultures of dermal papilla cells and melanocytes by enhancing their biological activities and promoting hair growth and pigmentation.
60 citations
,
July 2014 in “Autophagy” This study found that autophagy is impaired in Birt-Hogg-Dubé syndrome-associated renal tumors and identified that the FLCN protein interacts with key autophagy components regulated by ULK1.