5 citations
,
April 2018 in “Chem” This study introduced a novel graphene-based hair dye that is non-reactive, non-invasive, and eliminates toxic chemicals, while providing durable color, antistatic properties, and efficient heat dissipation, even after 30 washes.
This study suggests that human hair keratin-based gradient hydrogels incorporating silver ions may serve as promising dermal templates for wound healing, demonstrating favorable mechanical properties, cell interaction, and antibacterial activity.
47 citations
,
August 2024 in “Science Advances” This study introduces a new biomimetic double wound mask designed to promote scarless healing by coordinating multiple biological pathways and providing enhanced protection and nourishment to wounds.
7 citations
,
January 2023 in “Frontiers in cell and developmental biology” This study found that Celsr1, not Celsr2, is the primary protein involved in establishing planar cell polarity and hair follicle polarization in the epidermis of mice.
This study found that selective adhesion to type IV collagen successfully enriched human hair follicle stem cells based on distinct adhesion properties and marker expressions.
55 citations
,
April 2018 in “Advanced Healthcare Materials” This review discusses recent advances in scarless wound healing, focusing on strategies to create pro-regenerative scaffolds for repairing damaged skin, and reports no new clinical results.
3 citations
,
July 2023 in “International Journal of Biological Macromolecules” In this study, the researchers developed a hydrogel mimicking the fetal environment that significantly accelerated wound healing and hair follicle regeneration in vivo, with over 94% wound closure in 14 days, surpassing hydrogels lacking certain additives.
This study found that elastin-like recombinamer (ELR) wound dressings promote tissue regeneration and stability without rejection in ex vivo and in vivo models, indicating potential for hard-to-heal wound treatment.
January 1974 in “Almogaren” This study developed a microdroplet technology to produce cell microspheres that successfully induced hair follicle regeneration in a mouse model, suggesting potential improvements in hair loss treatments.
July 2026 in “Advanced Biology” This study introduces novel wound dressings with hydrophobic properties, highlighting their ability to enhance hemostasis, improve wound adhesion, reduce bacterial adherence, and facilitate exudate removal, and discusses advancements in the development and application of such composite dressings for antibacterial hemostatic purposes.
4 citations
,
December 2024 in “Gels” This study observed that a dual-loaded niosomal in situ gel delivered effective antimicrobial and antioxidant properties for potential ophthalmic applications, showing superior inhibition of methicillin-resistant Staphylococcus aureus adhesion.
13 citations
,
April 2025 in “International Journal of Nanomedicine” In this study, a hydrogel with anti-inflammatory, antibacterial, antioxidant, and wound tissue adhesion properties was developed, showing significant potential for wound healing and suggesting it could offer a new and effective treatment option in clinical settings.
January 2024 in “Indonesian Journal of Pharmaceutical Education” In this experimental laboratory study, three cream formulations containing 1% Caffeine Herbasome® were developed and evaluated for stability, homogeneity, pH, dispersion, and adhesion, with results showing satisfactory stability and suitable adhesion properties for skin application.
4 citations
,
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.
In this study, a novel CT@GA-gel hybrid hydrogel was developed for diabetic wound treatment, demonstrating improved mechanical properties, tissue adhesion, and chronic wound healing benefits, including immune regulation and re-epithelialization, due to enhanced crosslinking and ROS scavenging by incorporated carbon dots.
104 citations
,
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.
80 citations
,
August 2022 in “Materials Today Bio” This study developed a double-network hydrogel using polyacrylamide and catechol-chitosan to enhance mechanical properties and promote drug release, aiding in inflammation regulation and wound healing for chronic wounds with challenging microenvironments.
128 citations
,
February 2023 in “Molecules” This review article discusses recent progress in chitosan-based hemostatic hydrogels, highlighting their unique properties, such as biocompatibility and enhanced hemostatic performance, compared to traditional materials. The authors summarize their hemostatic mechanisms and future potential in improving emergency bleeding control.
March 2026 in “Tissue Engineering and Regenerative Medicine” In this review, the authors discuss recent advancements in underwater adhesion technologies, specifically highlighting mussel-inspired catechol-based adhesives, which offer strong underwater bonding through various interfacial interactions and the influence of dopamine-modified polymeric tissue adhesives.
22 citations
,
April 2006 in “Journal of Dermatological Science” This study reports that versican expression plays a crucial role in maintaining the anagen phase and hair inductive properties, as shown in a transgenic mouse model and hair growth assays.
19 citations
,
March 2013 in “Biology Letters” This study found that the main structural proteins of tree frog toe pads, which aid in their adhesive properties, are alpha keratins that have evolutionary origins in early tetrapods.
2 citations
,
January 2024 in “Pakistan Journal of Life and Social Sciences (PJLSS)” This study examines the use of emulgel-based systems as drug delivery vehicles for hydrophobic medications, noting their potential benefits in dermatological applications due to properties like easy spreadability, non-greasy texture, and prolonged shelf life.
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.
78 citations
,
February 2024 in “ACS Omega” This study developed a bilayer material combining poly(vinyl alcohol) and bacterial cellulose with a gelatin-poly(vinyl alcohol) hydrogel, showing strong potential as a wound dressing due to its good antibacterial properties, cell viability, and sustained drug release.
June 2025 in “Materials Today Bio” In diabetic mice, this study reported that the multifunctional hydrogel CPGel achieved complete wound closure in 21 days, showing promise in improving chronic wound healing through antibacterial, antioxidative, and tissue regeneration properties.
120 citations
,
September 2022 in “Materials Today Bio” This review summarizes numerous studies on adhesive hydrogels with natural antibacterial agents for wound dressings, highlighting their potential as effective treatments with strong antibacterial properties, biocompatibility, and mechanical performance, while minimizing reliance on antibiotics.
49 citations
,
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.
July 2026 in “Regenerative Biomaterials” This study found that modifying biphasic calcium phosphate/poly(methyl methacrylate) bone cement with human hair keratin improves its hydrophilicity, mechanical properties, and supports bone repair in rats, indicating potential for orthopedic applications.
8 citations
,
October 2022 in “Frontiers in Bioengineering and Biotechnology” This study found that HFV70 cryogels, made from Flammulina velutipes extract and hydroxyethyl cellulose, effectively promoted rapid hemostasis and tissue regeneration in full-thickness skin defects in rats, demonstrating improved hemocompatibility, cytocompatibility, antimicrobial, and antioxidant properties.
4 citations
,
August 2023 in “Materials” This review highlights that synthetic biodegradable polymers like PVA, PCL, PLA, PLGA, PU, and PEO/PEG can address the limitations of natural polymers in wound healing, offering improved mechanical properties and slower degradation, thereby enhancing their application as wound dressings.