September 2025 in “ACS Applied Polymer Materials” This study reported that a composite hydrogel made with Chlorella-derived extracellular polysaccharide–selenium nanoparticles showed strong antibacterial and anti-inflammatory effects in vitro and significantly accelerated wound healing in vivo, offering potential for managing infected wounds and monitoring healing progression.
June 2025 in “Biomacromolecules” In this study, researchers developed a GelMA-based gradient pH hydrogel that effectively reduced bacterial load and promoted fibroblast and endothelial cell proliferation, macrophage polarization, neovascularization, and hair follicle regeneration, offering a promising treatment for bacterially infected skin wounds.
October 2023 in “Journal of Drug Delivery and Therapeutics” This study evaluated niosome-based gels for delivering salicylic acid topically to treat acne vulgaris and found that the formulation SANG5, using Carbopol 940 and nutmeg oil, demonstrated the best drug release profile.
January 2025 in “SSRN Electronic Journal” This study developed a bioinspired hydrogel (BD@HH6) that exhibited strong antimicrobial and antioxidant properties, accelerated wound healing in mice by promoting angiogenesis and reducing inflammation, and represents a potential new approach for managing chronic wound infections without relying on antibiotics.
March 2025 in “Wound Repair and Regeneration” In a study using mouse models, researchers developed a gelatin methacryloyl scaffold with calcium-doped silica nanoparticles loaded with deferoxamine, which significantly improved skin flap survival and hair follicle growth, suggesting potential clinical applications in tissue regeneration.
June 2026 in “Chemical Engineering Journal” 75 citations
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September 2015 in “Acta biomaterialia” This study found that alkylation of kerateine cysteine residues created a cell-compatible method for controlling hydrogel erosion rates and therapeutic agent release in keratin-based systems.
January 2018 in “Refubium (Universitätsbibliothek der Freien Universität Berlin)” This thesis developed stimuli-responsive nanocarriers, demonstrating their potential for targeted genetic material delivery with reduced toxicity and diagnostic applications, and explored pH-sensitive nanogels for effective skin drug delivery and monitoring.
16 citations
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January 2021 in “International Journal of Medical Sciences” This study found that gelatin microspheres loaded with platelet-rich plasma enhanced wound healing in rats by improving inflammatory and angiogenic responses compared to untreated wounds or PRP alone.
October 2022 in “Regenerative Biomaterials” This study demonstrated that fibrin hydrogels support skin-derived precursors in hair follicle neogenesis in mice, with new hair growth and regeneration of blood vessels and sebaceous glands observed.
June 2022 in “Farmacevtičnij časopis” This study developed a technology for a combined gel named "Biosedum Plus" intended for treating and preventing radiation skin damage, detailing its formulation and critical processing parameters.
7 citations
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April 2020 in “Applied Sciences” In this study, ultrasound was found to alter the distribution of fibronectin in collagen hydrogels, leading to enhanced microtissue formation, suggesting potential applications in tissue engineering.
26 citations
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September 2024 in “National Science Review” This review outlines guidelines for designing Janus hydrogel bioadhesives, highlighting their potential to enhance clinical applications in tissue repair and regenerative medicine by mimicking natural biological barriers, although challenges remain in optimizing their asymmetric surface designs.
February 2025 in “International Journal of Biological Macromolecules” This study developed a NIR light-triggered NO-releasing hydrogel that promotes angiogenesis, repairs damaged dermal papilla cells, reduces inflammation, and improves the nutrient supply and follicular environment in animal models, offering a promising treatment strategy for androgenic alopecia.
1 citations
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May 2025 in “European Polymer Journal” This study developed a multifunctional dressing with the MeGel-SFSR composition, which showed faster healing and better tissue regeneration in diabetic wounds compared to controls, by utilizing a herbal compound and enhanced mechanical support, promoting hair follicle regeneration, collagen deposition, reduced inflammation, and vascularization in vivo.
14 citations
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February 2023 in “Frontiers in Bioengineering and Biotechnology” This review details various components used in hydrogel composites for treating chronic diabetic ulcers and highlights potential future materials but reports no new empirical findings.
May 2026 in “International Journal of Biological Macromolecules”
18 citations
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April 2022 in “Frontiers in bioengineering and biotechnology” This study found that gelatin microspheres delivering adipose-derived stem cells significantly accelerated diabetic wound healing in rats, suggesting a promising approach for enhancing cell-based therapies.
1 citations
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January 2021 in “JIFFK Jurnal Ilmu Farmasi dan Farmasi Klinik” In this study, the researchers found that while the chitosan-alginate gel base supported hair growth, the addition of 0.5% celery extract did not enhance growth, likely due to its low concentration.
May 2024 in “Journal of colloid and interface science” This study developed a bilayer bionic skin scaffold that mimics the skin's structure to resist microbial invasion and enhance wound healing, with in vivo animal studies showing improved collagen deposition, neovascularization, and hair follicle formation.
November 2025 in “Preprints.org” This pilot study found that an 8-week treatment with a hyaluronic acid and hydrogen peroxide gel improved folliculitis symptoms and patient satisfaction, supporting its potential use in dermatologic practice and future trials.
14 citations
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April 2023 in “International Journal of Molecular Sciences” In a study using female Wistar rats, the researchers found that a liquid allantoin-enriched pectin hydrogel significantly improved wound healing, achieving a 71.43% reduction in healing time and complete wound closure in 15 days.
January 2016 in “Frontiers in Bioengineering and Biotechnology” In this study, a porous keratin hydrogel derived from wool hair demonstrated strong mechanical properties and supported the growth of various animal cells, indicating potential as a scaffold in tissue engineering.
54 citations
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May 2021 in “Chemical Engineering Journal” This study found that a novel hybrid bilayer scaffold system enhanced wound healing in an in-vivo model by promoting cell viability, migration, and preventing infection, showing potential as an advanced dressing for cutaneous wounds.
1 citations
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September 2023 in “International Journal of Biological Macromolecules” This study found that a novel in-situ crosslinked self-healing hydrogel made from oxidized Bletilla striata polysaccharide and cationic gelatin enhanced wound healing and showed strong hemostatic performance in animal models, suggesting its potential as an effective wound dressing for skin trauma.
January 2025 in “Catalysts” This study investigated the production of β-cyclodextrin from ginkgo seeds, finding that a pretreatment scheme involving high-temperature gelatinization significantly improved the conversion rate to 72.63%, highlighting the industrial potential of underutilized ginkgo seed powder for sustainable applications.
June 2024 in “Advanced therapeutics” In this study, a novel hydrogel dressing combining photodynamic therapy with organic semiconductor nanoparticles and silk fibroin demonstrated effective antibacterial action and enhanced wound healing and hair follicle regeneration in a mouse model, showing promise as an advanced wound care solution.
July 2021 in “Clinical Case Reports and Clinical Study” This article discusses the formulation and potential benefits of herbal hair gels, highlighting their moisturizing properties and fewer side effects compared to marketed synthetic alternatives, but reports no experimental results.
January 2026 in “Journal of Materials Chemistry B” In this study, a newly engineered SFCC hydrogel in animal models demonstrated promising potential for skin reconstruction, promoting hair follicle regeneration, enhancing collagen and cellular proliferation, and accelerating burn healing by supporting favorable immune responses and tissue repair.
This study evaluated amphiphilic self-assembling peptides as drug delivery systems and found they effectively ensured prolonged release and therapeutic efficacy for timolol in glaucoma and for chemotherapy agents in cancer treatment, with significant tumor size reduction observed in animal models.