62 citations
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November 2022 in “Acta Pharmaceutica Sinica B” This study reported that an injectable hydrogel based on platelet-rich plasma and laponite improved wound healing in diabetic and normal rats by enhancing angiogenesis and macrophage polarization.
14 citations
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January 2020 in “Biomaterials Science” Created microspheres show potential for safe and effective use in prostate artery embolization.
18 citations
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January 2024 in “Regenerative Biomaterials” This study developed and tested a new injectable hydrogel for chronic diabetic wounds, reporting significant improvements in wound healing through enhanced angiogenesis, epithelization, and reduction of inflammation and infection in animal models.
June 2026 in “Precision medicine and engineering.” In this study, researchers created a hydrogel that reduces oxidative stress and releases a pro-angiogenic drug in response to enzyme activity, which accelerated healing and improved tissue regeneration in chronic diabetic wounds during in vivo experiments.
116 citations
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April 2022 in “Science Translational Medicine” This study found that the hydrophilic PTK-UR foam with EG7 repeats significantly improved wound healing in porcine skin wounds compared to other scaffolds, suggesting potential for synthetic biomaterial applications.
60 citations
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February 2014 in “Tissue Engineering Part A” This study found that microporous electrospun scaffolds with a 70:30 collagen I to poly(ɛ-caprolactone) ratio significantly accelerated wound closure and dermal regeneration in full-thickness critical-sized skin defects.
2 citations
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December 2025 in “Nano Letters” This study developed a tannin-modified cellulose-polypyrrole dressing that accelerates wound healing by enhancing granulation tissue, optimizing collagen, and stimulating angiogenesis, while providing antibacterial protection against S. aureus and E. coli.
July 2026 in “Advanced Healthcare Materials” This study developed ultrasound-responsive sutures that generate reactive oxygen species to kill bacteria without antibiotics, showing over 80% bacterial reduction and promoting healing in a rat model, though more validation is needed.
10 citations
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September 2024 in “Journal of Nanobiotechnology” This study developed an antimicrobial microneedle patch for delivering apoptotic vesicles to treat infected wounds, which was found to effectively reduce bacterial growth and accelerate scarless healing, including the rapid formation of mature hair follicles in just 8 days, a previously unreported early outcome.
8 citations
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April 2019 in “ACS Biomaterials Science & Engineering” This study found that a new SIS-PEG sponge promoted rapid skin defect healing in mice and showed potential for reconstructing reconstituted skin with regenerated hair.
July 2020 in “CRS 2020 Virtual Annual Meeting” This study found that the newly developed microarray patches for intradermal delivery of finasteride showed high drug content and significantly improved skin deposition compared to existing methods.
November 2025 in “Interdisciplinary materials” This study reports that a silk-based suture with integrated silver nanoparticles and curcumin shows potential for enhanced wound healing and infection prevention, offering multifunctionality and real-time wound monitoring capabilities.
36 citations
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August 2020 in “Polymers” The researchers developed semi-dissolving microneedle patches using TEMPO-oxidized bacterial cellulose nanofibers, which allow effective transdermal drug delivery by forming micro-channels for large drug quantities, overcoming traditional microneedles' low drug loading.
29 citations
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September 2020 in “Polymers” This study found that electrospun poly(ε-caprolactone)/poly(3-hydroxybutyrate) blend fibers demonstrated nanometric dimensions and promising properties for drug delivery, with curcumin release linked to fiber morphology and processing parameters.
49 citations
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January 2024 in “Regenerative Biomaterials” In this study, a novel electrospun dressing patch made with radially oriented PHBV nanofibers and loaded with berberine was shown to significantly accelerate diabetic wound healing in mice, achieving 100% wound closure in 18 days while also demonstrating improved mechanical and anti-inflammatory properties.
6 citations
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May 2024 in “Macromolecular Bioscience” This study synthesized a temperature-sensitive hydrogel with strong antibacterial capabilities against S. aureus and E. coli, demonstrated via in vitro and in vivo tests, suggesting potential for antibiotic-free clinical applications when activated by near-infrared light.
January 2026 in “Journal of Applied Polymer Science” In this study, researchers developed a novel composite fiber by incorporating minoxidil sulfate-loaded ZIF-8 nanoparticles into a polyvinyl alcohol matrix, achieving sustained drug release for up to 220 hours, strong mechanical properties, and the capability for cosmetic applications like wigs.
64 citations
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August 2007 in “Artificial Organs” This study found that PHBV cocultured with epithelial and dermal cells might enhance early-stage wound healing by promoting wound closure and re-epithelization more effectively than PHBV/collagen.
26 citations
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March 2013 in “Journal of Biomedical Materials Research Part A” This study demonstrated that PEGDA hydrogel microwells successfully supported cell survival and proliferation while mimicking hair follicle architecture in vitro, suggesting a potential tool for hair follicle engineering.
23 citations
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July 2021 in “International Journal of Pharmaceutics” This study describes the development of microneedle array patches for finasteride that released the drug over 7 to 14 days in vitro, suggesting a potential alternative to oral treatments for long-term management of benign prostatic hyperplasia and androgenic alopecia.
23 citations
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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.
17 citations
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April 2017 in “International Journal of Biological Macromolecules” This study found that alginate beads containing monoolein demonstrated promising potential for managing wet wounds by better absorbing excess exudate and delivering adenosine locally, favoring drug localization in damaged porcine skin compared to an aqueous solution without affecting skin viability.
87 citations
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August 2017 in “Scientific Reports” This study found that PCL-based nanofiber scaffolds enhanced cell proliferation and extracellular matrix deposition, suggesting they show promise as a cell delivery system for improving skin wound healing.
17 citations
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January 2023 in “Frontiers in Bioengineering and Biotechnology” This study reported that newly developed quaternary ammonium chitosan/carboxymethyl starch/alginate sponges effectively inhibit bacterial growth and promote rapid hemostasis in wound management after tooth extraction in animal models, showing significant promise for clinical use in preventing complications like dry socket.
September 2023 in “International journal of biological macromolecules” This study found that a chitosan/PDRN nanopolyplex significantly improved diabetic wound healing in rats by enhancing cell proliferation, migration, and antimicrobial activities, suggesting its potential as a therapeutic product.
In this study, researchers developed a multifunctional hydrogel for wound healing, incorporating antibacterial and antioxidant properties that demonstrated significant inflammation reduction and tissue regeneration in animal models, with high antibacterial efficacy against E. coli and S. aureus.
61 citations
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January 2013 in “International Journal of Biological Macromolecules” This study found that applying both dehydrothermal treatment and carbodiimide crosslinking improved the mechanical properties of porcine acellular dermal matrix scaffolds without added cytotoxicity, suggesting potential applications in tissue engineering.
12 citations
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January 2018 in “Biomaterials Science” This study observed that dermal papilla cell aggregates showed increased viability and gene expression on softer 3D substrates, indicating the importance of substrate stiffness in cellular behavior.
January 1997 in “Medical Journal Armed Forces India” This study found that RADA-PRG hydrogels enhanced skin-derived precursor cell proliferation and improved hair follicle neogenesis in mice, suggesting potential use as a scaffold material in tissue engineering.
September 2026 in “Mendeley Data” This study found that the polyurethane-cellulose acetate scaffold containing plasma rich in growth factors enhanced gene expression linked to wound healing compared to controls.