6 citations
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December 2022 in “Journal of Materials Chemistry B” This study found that a bilayer wound dressing capable of releasing hydrogen sulfide promoted wound healing in rats by reducing inflammation, enhancing vascularization, and facilitating hair follicle regeneration.
January 2025 in “Biomaterials Research” This study developed a novel zinc-releasing hydrogel, Zn-Gel, which promoted wound healing by controlling zinc ion release and demonstrated excellent compatibility and efficacy in enhancing cell proliferation, blood vessel formation, and tissue regeneration in vitro and in vivo settings.
28 citations
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October 2023 in “Trends in biotechnology” 35 citations
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February 2024 in “Science Advances” This study introduces a magnet-assisted fabrication strategy for creating complex 3D soft bioscaffolds, demonstrating its effectiveness by producing structures with overhangs and supporting biohybrid actuators, promising advancements in biomedical applications.
6 citations
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February 2023 in “Biomaterials Research” This review explores the different types of hydrogels used to repair diabetic ulcers, the mechanisms involved, and the limitations in developing these technologies for clinical use, but it reports no new clinical results.
30 citations
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June 2024 in “Scientific Reports” This study explored a keratin, sodium alginate, and carboxymethyl chitosan hydrogel modified with tannic acid and found it to have promising wound-healing qualities, including similar elasticity to human skin, antimicrobial and antioxidant properties, and effective water retention. These attributes suggest potential applications in biomedical engineering.
2 citations
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June 2023 in “Gels” This study highlights the versatility and potential of injectable hydrogel nanocomposites in biomedical research, emphasizing their roles in controlled drug delivery, tissue regeneration, and treatment of various conditions, such as cardiac issues, joint diseases, and bone regeneration.
January 2026 in “Regenerative Biomaterials” This study highlights that hydrogel formulations unexpectedly prolonged healing in trials, pointing to a need for design based on detailed pathophysiological insights rather than empirical methods, and suggests technologies like AI materials optimization and 3D bioprinting to aid their clinical use for cancer survivors.
September 2025 in “Acta Biomaterialia” In this study, researchers developed injectable micropore-forming hydrogels that enhance tissue adhesion strength and promote wound healing by allowing better cell infiltration and inducing hair follicle regeneration in skin incision wound models.
328 citations
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November 2020 in “Nature Materials” This study found that D-peptide crosslinked MAP hydrogel accelerated material degradation in vivo but significantly enhanced skin regeneration, suggesting an adaptive immune response can drive regenerative healing even with rapid scaffold breakdown.
104 citations
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January 2022 in “Materials Today Bio” This study explored the development of zinc-incorporated gelatin-based hydrogels, which demonstrated strong antibacterial properties and supported skin cell health, ultimately improving the healing process of S. aureus-infected full-thickness wounds, showing promise as wound dressings for infected wounds.
57 citations
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June 2021 in “Polymers” This review discusses photothermal agent hybrids in hydrogels for antibacterial action, angiogenesis, and osteogenesis in tissue engineering, but reports no new experimental findings.
January 2023 in “International Journal of Molecular Sciences” This study found that a double-crosslinked hydrogel using GelMA and sulfhydrylated chitosan showed promising results in healing full-thickness skin wounds in rats by accelerating tissue repair and promoting collagen and blood vessel formation.
January 2026 in “Materials Today Bio” This study demonstrated that a multifunctional hydrogel containing Prussian blue nanozymes and an ultrasound-responsive nitric oxide donor improved healing in diabetic wounds by reducing oxidative stress, promoting angiogenesis, and enhancing tissue repair in animal models.
July 2026 in “Materials Today Bio” This review examines the design and applications of DNA hydrogels in regenerative medicine, discussing their potential for tissue repair in areas like bone and skin, and their role in tumor therapy, while providing insights into their molecular design and construction strategies.
7 citations
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November 2025 in “Journal of Polymer Science” This review highlights recent advances in hydrogel-based wound healing, noting that diverse hydrogel designs enhance healing and suggest potential for clinical translation, albeit with a need for more research on human applications.
August 2025 in “Acta Biomaterialia” This study presents a novel hydrogel scaffold made from tilapia collagen, which when activated by ultrasound, reprograms macrophages to promote wound healing, enhance angiogenesis, and stimulate hair follicle regeneration, offering a potential new method for treating inflammatory wounds.
This review highlights how engineered hydrogels can modulate immune niches and serve as in vivo models to study them, noting collaboration is needed to advance therapeutic outcomes.
71 citations
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September 2013 in “Materials Science and Engineering C” Keratin-based hydrogels from human hair and wool are promising for wound dressings and are more eco-friendly.
This review summarizes the current applications and mechanisms of self-assembled peptide hydrogels in promoting skin, bone, and nerve regeneration, highlighting their potential due to their biocompatibility and supportive role in tissue healing.
1 citations
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June 2025 in “Frontiers in Bioengineering and Biotechnology” This review examines glycopeptide hydrogels as biomimetic materials for tissue regeneration and other biomedical applications, describing their design, properties, and potential uses, and highlighting future advancements in replicating natural tissue environments for precision medicine.
433 citations
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December 2022 in “Materials Today Bio” This review discusses the use of extracellular vesicle-loaded hydrogels in tissue regeneration and reports no clinical results; the authors highlight their potential and suggest future research directions.
10 citations
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January 2025 in “Biomaterials Science” This study found that a multifunctional hydrogel dressing enriched with Cu-MOF and tannic acid significantly improved full-thickness wound healing in rats, reducing the wound area to only 1.6% and promoting re-epithelialization, neovascularization, and hair follicle formation.
7 citations
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January 2025 in “ACS Applied Materials & Interfaces” This study developed a zinc-infused egg white and GelMA hydrogel that enhanced cellular processes crucial for wound healing, including fibroblast proliferation and collagen expression, and demonstrated promising biocompatibility and bioactivity in vivo, suggesting potential effectiveness in repairing damaged tissues.
This study found that an injectable hydrogel, SF-g-SDA, outperformed commercial Tegaderm™ in healing wounds, promoting collagen deposition, and enhancing neovascularization in animal models.
February 2026 in “ACS Omega” This study developed a multifunctional hydrogel, QTMP-Gel, which significantly accelerated wound healing in an oral mucositis hamster model by providing antioxidant and antibacterial effects, reducing inflammation, and controlling infection.
1 citations
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December 2025 in “Journal of Investigative Dermatology” Photocrosslinkable biomaterials can improve wound healing by controlling mechanical environments.
1 citations
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May 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that D-peptide crosslinked MAP hydrogels accelerate skin regeneration and promote adaptive immunity, despite faster scaffold degradation in vivo.
262 citations
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May 2020 in “Advanced Functional Materials” This study demonstrated that a newly developed polypeptide-protein hydrogel with vascularization and antibacterial properties promoted tissue regeneration and hair follicle formation in infected wound healing.