19 citations
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January 2022 in “Journal of Nanomaterials” This study concluded that an adapalene nanohydrogel containing Tween-80 could be a promising and stable topical treatment option for acne vulgaris due to enhanced skin permeability and stability compared to other formulations.
March 2024 in “International journal of nanomedicine” This review discusses recent advancements in the development and use of polymer-based nanohydrogels for topical drug delivery, noting their potential to enhance drug loading, release control, and skin penetration for treating dermatological conditions.
March 2025 in “BioNanoScience” The new minoxidil hydrogel improves delivery and is safe for treating hair loss.
16 citations
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March 2024 in “International Journal of Molecular Sciences” This review highlights how natural compounds can enhance wound healing by influencing fibroblast behavior and discusses innovative biomimetic engineering and delivery methods. This source emphasizes combining traditional and modern approaches for effective and scar-free healing, while noting challenges in clinical translation.
1 citations
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February 2023 in “International Journal of Molecular Sciences” This review summarizes the research on bioactive materials that modulate the skin microenvironment to promote wound healing and highlights the essential role of the fascial layer, without presenting new experimental results.
January 2026 in “Anti-Infective Agents” This study developed a nanohydrogel containing itraconazole and mometasone for treating scalp and beard fungal infections, demonstrating improved antifungal efficacy, longer retention, and better patient acceptance compared to conventional treatments.
January 2026 in “Preprints.org” This review highlights recent advancements in nanotechnology-based approaches for treating androgenetic alopecia, focusing on enhancing drug delivery to hair follicles, controlled release, and follicular microenvironment modulation, while addressing safety, manufacturing, and regulatory challenges for clinical application.
June 2026 in “International Journal of Drug Delivery Technology” This study developed EGCG-loaded nanohydrogels using ethyl cellulose and polyvinyl alcohol to enhance the stability and delivery of the hydrophilic drug in aloe vera gel, optimizing encapsulation efficiency and drug release properties.
28 citations
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May 2023 in “Current Opinion in Colloid & Interface Science”
This study introduced a rapid rehydration approach for creating customizable, multifunctional hydrogel sensors, enabling precise detection of surface deformations and easy integration of layers, highlighting its potential for standardized and adaptable manufacturing of wearable devices.
35 citations
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November 2024 in “Gels” This review discusses hydrogel-forming microneedles for non-invasive drug delivery in dermatology and reports no new clinical results, emphasizing their promise in improving treatment adherence and patient comfort.
28 citations
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October 2023 in “Trends in biotechnology”
October 2022 in “ACS Applied Materials & Interfaces” This study reports that the newly developed SA-Ca(II) hydrogel has tunable mechanical properties, high biocompatibility, and potential applications in wearable protections and stimuli-responsive electronics.
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.
1 citations
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February 2026 in “ACS Nano” This study developed the TLMG hydrogel, a seamless in situ biointerface platform, demonstrating robust adhesion, high conductivity, and therapeutic effects for intelligent wound management in complex animal models and human tests, indicating its promise for integrated bioelectronic medicine.
March 2025 in “Frontiers in Pharmacology” This study developed a hydrogel dressing incorporating angelica polysaccharides, demonstrating enhanced wound healing properties in a mouse model by promoting rapid hemostasis, tissue healing, and new blood vessel formation compared to Tegaderm™ film.
In this study, researchers developed a versatile sprayable hydrogel that promotes wound healing in mice by facilitating rapid gelation, reducing inflammation, and accelerating tissue regeneration, with potential applications in chronic wound treatment and beyond.
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.
62 citations
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November 2016 in “Nanoscale” In this study, researchers developed thermoresponsive nanogels that effectively penetrate hair follicles and release a model drug when triggered by temperature, demonstrating greater penetration for medium to large nanogels (300–500 nm) compared to smaller ones.
31 citations
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August 2023 in “ACS Applied Bio Materials” This study developed granular hydrogels with reversible interparticle cross-linking, finding they offer high mechanical stability and enhance cell recruitment, making them promising for injectable and 3D printable scaffolds in tissue engineering and therapeutic delivery.
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.
14 citations
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December 2024 in “Pharmaceutics” This review examines hydrogel microneedles for transdermal drug delivery, discussing their applications and challenges but reports no new clinical results.
July 2026 in “Journal of Drug Delivery Science and Technology”
4 citations
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May 2023 in “Composites Part B: Engineering” In this study, a novel nanocomposite hydrogel was developed for diabetic wound care, demonstrating superior tissue adhesion, antibacterial properties, and healing capabilities in vivo and in vitro, while also allowing real-time pH monitoring to aid clinical management.
August 2026 in “Molecular Biomedicine” This review outlines the design and engineering of multifunctional hydrogels, emphasizing their evolving biomedical applications, notably in controlled drug delivery, tissue support, and disease management, and discusses their potential for clinical translation.
April 2026 in “Microsystems & Nanoengineering” This study developed HA-gel-dex hydrogels with enhanced ECM-like properties and functionality, showing promise for 3D bioprinting, tissue repair, and as wound dressings due to improved cell interaction, cytocompatibility, antimicrobial synergy, and wound healing in mice compared to traditional ECM bio-inks.
January 2016 in “Frontiers in Bioengineering and Biotechnology” This study developed keratin-based hydrogels with improved water solubility and tunable properties, demonstrating excellent cytocompatibility, suggesting potential for biomedical applications.
143 citations
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January 2012 in “Cell and Tissue Research” August 2026 in “Acta Biomaterialia” 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.