24 citations
,
January 2019 in “Biomaterials Science” This study demonstrated that a bio-3D printed artificial skin scaffold, seeded with adipose-derived mesenchymal stem cells, showed promising wound healing properties by enhancing cell recruitment, migration, and gene expression related to tissue regeneration.
5 citations
,
December 2021 in “Journal of Investigative Dermatology” This study observed that Hedgehog signaling in reticular and papillary fibroblast lineages plays different roles in wound repair and de novo hair follicle formation.
2 citations
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February 2024 in “International Journal of Molecular Sciences” This study reported that in a mouse model, Negative Pressure Wound Therapy promotes wound healing by modulating inflammatory responses and increasing dickkopf-related protein 1, which encourages the differentiation of Hair Follicle Stem Cells into epidermal cells.
March 2026 in “International Journal of Molecular Sciences” This study found that Grateloupia angusta extract improved wound healing by promoting matrix production and pro-angiogenic activity in cell cultures and enhanced early wound repair in a mouse skin incision model.
January 2026 in “Burns & Trauma” This study reported that NLRP3 plays complex roles in wound healing by initially promoting inflammation and delaying repair, but later enhancing structural restoration through distinct signaling pathways, highlighting its potential as a therapeutic target for controlling inflammation and regeneration phases.
12 citations
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September 2022 in “Frontiers in Immunology” This study found that soluble CD83 (sCD83) accelerated chronic and hard-to-heal wound healing and improved inflammatory and pro-resolving cytokine profiles, suggesting potential for therapeutic use.
213 citations
,
September 2020 in “Journal of Functional Biomaterials” This review discusses bio-based polymers, highlighting their potential in wound healing applications, but reports no new clinical results.
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.
March 2024 in “Advanced science” This study observed that a novel extracellular matrix hydrogel made from human fibroblast-derived matrix improved wound healing in animal models, showing significant effects such as hair follicle formation, reduced inflammation, enhanced pro-healing growth factor levels, and interaction with macrophages, compared to traditional collagen hydrogels.
20 citations
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July 2019 in “Stem cell investigation” This study found that the combination of stromal vascular fraction and platelet-rich plasma accelerated wound healing in rats more effectively than either treatment alone or saline.
1 citations
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October 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” This study demonstrated that intraoperative bioprinting using a bioink with human adipose-derived extracellular matrix and stem cells achieved successful reconstruction of full-thickness craniomaxillofacial skin defects in rats, promoting wound closure, adipogenesis, and hair follicle-like structure formation within two weeks.
September 2025 in “Biological Procedures Online” This study presented a refined surgical protocol for a fetal mouse model that improves pregnancy success, reduces fetal loss, and allows for consistent phenotypic outcomes, enhancing research in scarless skin regeneration.
41 citations
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August 2015 in “The FASEB Journal” The researchers reported that topical application of small-molecule Wnt inhibitors significantly reduced fibrosis and promoted regenerative wound healing in mice.
49 citations
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March 2014 in “Journal of Investigative Dermatology” This study demonstrated that combining AMD3100 with low-dose tacrolimus in a stem cell mobilization approach significantly reduced wound healing time and improved scar and hair follicle regeneration in full-thickness skin wounds.
April 2025 in “Frontiers in Bioengineering and Biotechnology” This research explores the potential of Gel-SHP hydrogels in tissue regeneration, suggesting they could contribute to new methodologies and understanding in wound healing and dermal shell formation, but results are not detailed.
48 citations
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March 2021 in “Frontiers in Cell and Developmental Biology” This review discusses the use of human mesenchymal stem cells (hMSCs) for treating skin diseases and suggests they show promise for improving conditions like wounds and scleroderma, but more research is needed due to varied study designs and endpoints.
54 citations
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January 2023 in “Signal Transduction and Targeted Therapy” This review examines integrins as pharmacological targets, discussing current integrin-based therapies and emphasizing the need to understand integrin mechanisms for successful drug development, without reporting new clinical results.
March 2026 in “Research Square” This study developed a novel regenerative platform using nanozyme-enabled materials combined with exosomes and laser stimulation to enhance wound healing in a mouse model, which more effectively regulated reactive oxygen species and improved early angiogenesis and collagen organization compared to conventional methods.
3 citations
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August 2025 in “Advanced Therapeutics” This review explores advancements in cytokine engineering for regenerative medicine, highlighting the development of modified cytokines with enhanced stability and tissue-targeting, potentially improving treatments for chronic wounds and fibrotic diseases by promoting tissue healing and minimizing inflammation, while adapting concepts from cancer immunotherapy.
October 2025 in “Clinical Cosmetic and Investigational Dermatology” This study synthesizes knowledge of how dendritic cell signals, epithelial integrins, and fibroblast activity converge on TGF-β1 to maintain or disrupt skin healing, contrasting normal and fibrotic scar formation and suggesting possible integrin and immune-targeted treatments for skin fibrosis.
October 2025 in “International Journal of Molecular Sciences” This study demonstrated that a novel hydrogel combining extracellular vesicles from chemically induced mammary epithelial cells with chitosan significantly enhanced skin wound healing in a rat model.
September 2025 in “Frontiers in Pharmacology” This study found that the meropenem-loaded spanlastic formulation showed strong potential as an effective topical therapy for bacterial skin infections in non-diabetic mice, demonstrating superior therapeutic activity and wound healing compared to free meropenem.
October 2024 in “Biomedical Reports” In this study, BALB/c mice with burn injuries treated with SES-low or SES-low combined with a gel showed better wound healing and organization compared to placebo and common treatments like silver sulfadiazine, highlighting SES-low's effectiveness in promoting favorable healing outcomes.
October 2025 in “Preprints.org” This research concludes that adipose mesenchymal stem cells are uniquely evolved to manage skin inflammation in newborns and their released molecules are the safest and most effective for skin therapeutics.
April 2019 in “Journal of Investigative Dermatology” This study found that DPP4 is significantly involved in matrix deposition and fibrosis in human skin fibroblasts, although the exact functions of DPP4 remain unclear.
April 2016 in “The journal of investigative dermatology/Journal of investigative dermatology” This study suggests that infiltrating M2 macrophages promote wound-induced hair neogenesis in mice by producing growth factors that activate the wnt signaling pathway during the late phase of wound healing.
January 2026 in “RSC Advances” The hydrogel helps heal wounds without scars by releasing two drugs gradually.
48 citations
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March 2019 in “Frontiers in Physiology” This review discusses the typical wound healing process in skin and the oral cavity, and emphasizes the research focus on achieving scarless healing in adult skin, but reports no new clinical results.
12 citations
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February 2025 in “Scientific Reports” This study found that extracellular vesicles derived from mesenchymal stem cells and umbilical cord blood plasma enhanced wound healing and reduced scar formation in mice, suggesting their potential as therapeutic agents for skin repair.
1160 citations
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November 2018 in “Physiological Reviews” This review discusses the potential of single cell technologies to improve understanding and treatment of impaired wound healing and reports no new clinical results.