16 citations
,
December 2018 in “ACS Biomaterials Science & Engineering” This research found that a biodegradable fibrous membrane incorporating fibroblast-derived ECM accelerated wound healing and improved neovascularization in a mouse model.
28 citations
,
December 2016 in “Journal of Biomedical Materials Research Part A” This study found that mesenchymal progenitor cells from human hair roots seeded onto polymer scaffolds stimulated the production of mineralized proteins, enhancing bone-like structures, with optimal results at a pore size of 35 µm.
71 citations
,
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.
54 citations
,
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.
This study describes a system called FOLLYSIS©, which uses mathematics and image analysis to optimize Follicular Unit Extraction hair transplants, showing high accuracy in measuring donor area density and reducing donor site injury.
3 citations
,
January 2022 in “Biomaterials Science” This study found that bioinspired conductive dressings with aligned wrinkles can monitor joint motion and significantly accelerate wound healing in mice by promoting collagen deposition, hair follicle regeneration, and epithelialization.
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.
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.
August 2025 in “Biomacromolecules” This study presents a novel composite hydrogel dressing with berberine-loaded silk fibroin microspheres and Calotropis gigantea fibers, demonstrating enhanced antibacterial activity, mechanical strength, and wound healing capabilities in treating chronic and infected wounds.
57 citations
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July 2018 in “Scientific Reports” This study found that prevascularizing dermal matrices with adipose tissue-derived microvascular fragments improved vascularization and allowed earlier successful skin grafting in a bradythrophic wound model.
This study found that a skin-like structure can be generated in vitro by implanting early passage hair follicle bulb cells into collagen/chitosan porous scaffolds.
January 2012 in “Zhongguo shengwuzhipinxue zazhi” This study found that a complex filling material made from autologous skin fibroblasts and hair keratin significantly improved the appearance of facial wrinkles, suggesting potential for clinical cosmetic applications.
13 citations
,
March 1998 in “Journal of Biomedical Materials Research” This study found that island grafting in guinea pigs enabled the isolated study of early skin regeneration processes, distinguishing them from natural wound closure mechanisms like epithelialization and contraction.
6 citations
,
April 2001 in “The Anatomical Record” This study introduces a method for determining the orientation of collagen fibers in skin by analyzing the anisotropic shape of hair pores, which may aid in skin grafting procedures.
April 2024 in “Molecules/Molecules online/Molecules annual” The researchers reported that sulfated chitosan-containing sponges can modulate macrophage activity in diabetic wounds, reducing inflammation and promoting angiogenesis and tissue regeneration, which may enhance wound healing outcomes.
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.
January 2017 in “DR-NTU (Nanyang Technological University)” This study observed that keratin sponges showed comparable biocompatibility to a commercial positive control in mice, but keratin gels had slightly inferior biocompatibility.
18 citations
,
February 2024 in “ACS Polymers Au” This review highlights silk fibroin and its nanocomposites as promising materials for wound healing, addressing challenges in chronic wound treatment, especially in developing countries, and examines the obstacles in bringing silk-based products to market.
In this study, the researchers developed a biomimetic multilayer composite scaffold combining a decellularized amniotic membrane, fibroblast-laden collagen gel, and epidermal stem cells, which healed full-thickness skin wounds more quickly and effectively by regenerating hair follicles without scarring compared to Moropicin ointment.
May 2015 in “Plastic and Reconstructive Surgery” This article introduces a novel, inexpensive hair preparation technique using glove-finger sheaths to secure and protect hair during calvarial surgery, reducing procedure time and hair damage without the need for full scalp shaving.
September 2026 in “Mendeley Data” This study found that a polyurethane-cellulose acetate scaffold with plasma rich in growth factors may enhance gene expression related to wound healing in an experimental setting.
4 citations
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August 2018 in “Journal of Cosmetic Dermatology” In this study, wound closure tension following strip surgery for hair restoration varied by strip width, highlighting the importance of minimizing tension to achieve better scarring outcomes.
3 citations
,
November 2022 in “Facial plastic surgery & aesthetic medicine” In this study, researchers introduced an ultrasound-guided technique for injecting hyaluronic acid fillers into the temple area to enhance safety and precision by visualizing filler placement in the interfascial space.
89 citations
,
April 2020 in “Advanced Healthcare Materials” In this study, MSC-laden silk nanofiber hydrogels accelerated wound healing and enabled scarless skin regeneration with hair follicles, outperforming MSC-free hydrogels in repairing full-thickness skin defects.
1 citations
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January 1996 in “Aesthetic Plastic Surgery” This study suggests that the tumescent technique can improve hair micrografting by effectively providing anesthesia and reducing bleeding without the need for multiple needle injections or nerve blocks.
August 2026 in “Acta Biomaterialia” 1 citations
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August 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” This study presents a composite hydrogel dressing with berberine-loaded silk fibroin microspheres and Calotropis gigantea fibers that demonstrates effective antibacterial properties, enhanced mechanical strength, and promotes wound healing.
12 citations
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September 2020 in “Stem cell research & therapy” This study concluded that early-stage tissue-engineered skin substitutes, developed using skin progenitor cells, had a better graft efficiency and supported hair follicle formation, which may improve wound healing outcomes.
1 citations
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October 2023 in “bioRxiv (Cold Spring Harbor Laboratory)” This study demonstrated that intraoperative bioprinting using a bioink with human adipose-derived extracellular matrix and stem cells achieved successful reconstruction of full-thickness craniomaxillofacial skin defects in rats, promoting wound closure, adipogenesis, and hair follicle-like structure formation within two weeks.
January 2026 in “SSRN Electronic Journal”