4 citations
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January 2016 in “Elsevier eBooks” This chapter reviews different animal models for evaluating wound healing treatments and provides no new experimental results.
October 2025 in “Advanced Healthcare Materials” In a study on wound healing, researchers described injectable POEGMA‐DA hydrogels as a promising non-toxic alternative to traditional wound closure methods, showing effective tissue adhesion and enhanced regeneration of skin structures in a mouse model without significant inflammation.
January 2023 in “Open veterinary journal” This study observed that applying a cream containing secretome from Bovine Umbilical Vein Endothelial Cells promoted healing and regeneration in burn wounds in rats, particularly at a 15% concentration.
5 citations
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November 2025 in “Cells” This review summarizes the roles of various cells and signaling pathways in skin wound healing, highlights deviations leading to pathological outcomes like chronic wounds, and evaluates cutting-edge approaches such as biomaterials and precision medicine to improve healing and intervention strategies.
34 citations
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March 2012 in “Circulation” This article discusses bridging anticoagulation for patients interrupting warfarin for surgery and highlights the need for the BRIDGE randomized trial to address current uncertainties about its effectiveness and safety.
This study found that stem cells from semi-solid bone marrow improved healing in diabetic incision wounds by enhancing epidermal thickness and blood vessel growth.
April 2026 in “Journal of Drug Delivery Science and Technology” This review highlights the potential of liposomes and nanofibers to enhance wound healing by allowing controlled drug release and supporting natural healing processes, although regulatory challenges remain for their clinical implementation.
6 citations
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July 2025 in “Pharmaceuticals” This review highlights the promising biomedical applications of marine-derived polysaccharides, proteins, and peptides, particularly in drug delivery and wound healing. It discusses their potential as biomaterials in creating nanocarriers, hydrogels, and more, alongside fabrication strategies, regulatory challenges, and sustainability considerations.
1 citations
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July 2021 in “Dermatologic Therapy” 1 citations
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November 2019 in “Dermatologic Therapy” January 2021 in “Dermatologic Therapy” November 2020 in “Dermatologic Therapy” May 2020 in “Dermatologic Therapy” March 2020 in “Dermatologic Therapy” January 2020 in “Dermatologic Therapy”
3 citations
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October 2021 in “PLoS ONE” In this study, topical piperonylic acid was found to improve wound healing in mice by activating EGFR and modulating gene expression related to the healing process.
11 citations
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July 2022 in “Journal of Materials Science: Materials in Medicine” This study found that an optimized hydrogel combined with human umbilical cord-mesenchymal stem cells accelerated wound healing in diabetic mice by improving cell adhesion and reducing inflammation.
13 citations
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February 2018 in “Plastic and Reconstructive Surgery” The study found that a specific signaling pathway helps skin wounds heal faster but may lead to larger scars.
355 citations
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August 2013 in “Acta Biomaterialia” This study found that a nanoparticle-in-nanofiber system significantly accelerated wound healing in rats by promoting angiogenesis and tissue regeneration more effectively than a commercial wound dressing.
February 2026 in “Bioimpacts” This review discusses advancements and challenges in using 3D bioprinting for diabetic foot ulcer treatments, highlighting potential improvements and existing limitations in replicating skin architecture and clinical application.
February 2026 in “Advanced Healthcare Materials” This study proposes a metal-organic gel-encapsulated microneedle system with antibacterial, anti-inflammatory, and pro-angiogenic properties for treating infected wounds, demonstrating potential for precise and adaptive management by targeting various stages of wound healing.
2 citations
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January 2025 in “Advances in Skin & Wound Care” This study from ISTAP emphasizes the importance of preventing skin tears, particularly in vulnerable populations like older adults and neonates, and recommends strategies such as using silicone-based adhesives, emollient therapy, and maintaining a safe environment to reduce the risk of these injuries.
1 citations
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May 2025 in “Carbohydrate Polymers” The new chitosan dressing heals wounds better and faster than current products.
June 2026 in “Materials Today Communications” This study reported that a newly designed multifunctional conductive hydrogel, PrM, combined with electrical stimulation significantly accelerated wound healing, achieving 95.9% healing in a mouse model on day 10, by enhancing regenerative processes and downregulating TNF-α signaling under electrical treatment.
3 citations
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December 2025 in “Biomaterials Research” In this study, researchers developed a new hydrogel incorporating fibroblast growth factor 21 that improved wound healing in diabetic mice by reducing inflammation and enhancing skin repair, suggesting strong potential for future clinical application in diabetic wound management.
24 citations
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January 2023 in “International Journal of Nanomedicine” This review outlines how combining biomembrane-based nanostructures and microstructures with hydrogels can enhance strategies for chronic wound healing, by utilizing the unique properties of both to address metabolic disturbances and severe symptoms in wound care.
49 citations
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January 2017 in “Journal of Materials Chemistry B” This study developed a hydrogel from glycol chitosan and silica nanoparticles, which showed promise in wound healing by supporting microvessel and hair follicle growth in skin defects.
May 2024 in “British Journal of Community Nursing” In this case series, researchers reviewed 38 case studies involving Prontosan® products for chronic lower limb ulcers and found that the treatments significantly improved wound healing and various quality of life outcomes, such as reduced malodour and pain, better mobility, and enhanced social life.
2 citations
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June 2025 in “MedComm – Biomaterials and Applications” This study reviews the potential of antioxidant plant compounds in improving wound healing for diabetic patients by reducing oxidative stress, controlling bacterial infections, and modulating inflammation, thereby promoting tissue regeneration and addressing key challenges in diabetic wound care.
February 2015 in “Journal of Biomedical Materials Research Part B: Applied Biomaterials” This study suggests that 4-META resin may be more effective than cyanoacrylate for promoting wound healing in rats, as the wounds were covered by epithelial tissue faster with 4-META resin.