April 2026 in “Biomolecules” This study reported that discarded squid ink was used to develop a high-performance, environmentally friendly hair dye that offers a stable deep black color, UV protection, and preserves hair structure, while showing excellent biosafety in lab tests.
July 2024 in “International Journal of Molecular Sciences” Hemp seed biomaterials may reduce hair loss and improve hair growth.
This study found that nanoparticles developed with minoxidil-loaded thiolated β-cyclodextrins showed improved drug retention on hair surfaces and did not cause skin irritation in rabbits, suggesting potential for topical scalp disease treatment.
September 2023 in “International journal of biological macromolecules” This study found that a chitosan/PDRN nanopolyplex significantly improved diabetic wound healing in rats by enhancing cell proliferation, migration, and antimicrobial activities, suggesting its potential as a therapeutic product.
February 2026 in “Apollo (University of Cambridge)” This review highlights the use of droplet microfluidics in microgel fabrication, emphasizing its ability to control microgel properties and discussing applications in areas like drug delivery and tissue engineering, as well as addressing current challenges and future research directions.
January 2016 in “Springer eBooks” New materials and methods could improve skin healing and reduce scarring.
203 citations
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May 2022 in “Pharmaceutics” This review discusses ongoing concerns and advancements in the use of gelatin as a biomaterial in tissue engineering, highlighting improved tissue mimicry through techniques like 3D bioprinting and suggesting a future focus on disease detection and diagnosis rather than treatment.
82 citations
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May 2020 in “International Journal of Molecular Sciences” This narrative review discusses the role of injectable biomaterials in dental tissue regeneration, highlighting their suitability for treating small, hard-to-access oral defects compared to pre-formed scaffolds, and explores the potential use of nanofibers in dental applications.
29 citations
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December 2019 in “Transfusion and Apheresis Science” This review discusses platelet-derived bio-products for tissue regeneration in various medical fields and reports no new clinical results; it highlights the need for a standardized classification to compare clinical outcomes effectively.
25 citations
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November 2022 in “Frontiers in Bioengineering and Biotechnology” This review discusses the integration of biodegradable biomaterials with drugs and stem cells for diabetic wound repair, but reports no new clinical results and highlights the need for further translation to clinical practice.
21 citations
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October 2017 in “Journal of Investigative Dermatology” This review discusses recent advances in understanding the molecular landscape of the dermal papilla, particularly focusing on Blimp1's role in hair follicle development and potential therapeutic targets for hair regeneration, but presents no new clinical results.
20 citations
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January 2022 in “Polymers” In this review, researchers reported that incorporating nanoparticles into natural-based biomaterials enhanced scaffolding properties, cellular interactions, and outcomes in wound healing, with promising implications for tissue engineering and regenerative medicine, although many signaling pathways involved are still not fully understood.
11 citations
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October 2024 in “PLoS ONE” In this study, phage-containing hydrogels were shown to effectively treat wounds infected with E. faecalis by promoting wound healing through controlled phage release, suggesting potential to improve clinical outcomes for such infections.
6 citations
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July 2025 in “Pharmaceuticals” This review highlights the promising biomedical applications of marine-derived polysaccharides, proteins, and peptides, particularly in drug delivery and wound healing. It discusses their potential as biomaterials in creating nanocarriers, hydrogels, and more, alongside fabrication strategies, regulatory challenges, and sustainability considerations.
4 citations
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January 2025 in “Journal of Materials Chemistry B” In this study, researchers developed a multifunctional, injectable hydrogel that adapts to irregularly shaped wounds, enhances healing, and shows potential antibacterial activity without significant toxicity, suggesting promise for treating chronic wounds.
3 citations
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April 2018 in “Therapeutic Delivery” This editorial discusses advances in engineering techniques for hair follicle regeneration and highlights future potential but reports no original research findings.
August 2026 in “Cell Biomaterials” D-chiral biomaterial scaffolds enhance tissue and hair regeneration by activating the body's immune system.
July 2026 in “Organoid Research” In this review, researchers summarize key factors in constructing skin organoids, including cell source and assembly methods, and emphasize advances such as air-liquid interface culture for improving tissue development, aiming to guide standardized protocols and future clinical applications.
June 2025 in “Advances in Clinical and Experimental Medicine” This study highlights keratin biomaterials as a promising biocompatible option for wound healing and tissue regeneration but notes that further clinical studies are necessary to confirm their effectiveness.
256 citations
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October 2013 in “Proceedings of the National Academy of Sciences of the United States of America” This study found that altering cell culture conditions to form three-dimensional papilla spheroids can restore the ability of human dermal papilla cells to induce hair growth in adult skin.
64 citations
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January 2015 in “BioMed Research International” In this study, topical application of fibroblast growth factors was found to promote hair growth by inducing and prolonging the anagen phase in telogenic C57BL/6 mice, suggesting potential as hair growth-promoting agents.
39 citations
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September 2011 in “Tissue Engineering Part B-reviews” This report reviews current advances in hair follicle regeneration for tissue-engineered skin grafts and highlights the feasibility and challenges of creating human hair follicles in this setting, suggesting key bioengineering requirements.
24 citations
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May 2022 in “BMC Veterinary Research” This study identified key mRNAs and lncRNAs, along with related pathways, that play potentially important roles in hair follicle development and cycling in cashmere goats.
16 citations
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August 2019 in “Cell Proliferation” This study found that 3D cultured hair follicle-like constructs, which include keratinocytes and dermal papilla cells, showed improved gene expression and cell interactions relevant to hair follicle development.
11 citations
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October 2021 in “Frontiers in Cell and Developmental Biology” This review summarizes the role of non-coding RNAs in hair follicle regeneration and highlights potential therapeutic strategies, though it reports no new experimental results.
10 citations
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November 2023 in “Frontiers in Pharmacology” In this study, researchers developed a self-assembling hydrogel called RADA-PDGF2 and found it to accelerate wound closure in a mouse model due to its pro-proliferative and pro-migratory properties, without causing cytotoxicity or immunogenicity.
10 citations
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December 2021 in “Frontiers in cell and developmental biology” This study used single-cell RNA sequencing to map the cellular composition of sheep hair follicles, revealing differentiation pathways and potential molecular mechanisms for wool curvature, which may inform sheep breeding.
10 citations
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June 2019 in “Journal of Tissue Engineering and Regenerative Medicine” This study found that cultured mouse dermal papilla (mDP) cells can induce hair follicle neogenesis in de novo regenerated skin tissues grafted onto mice.
6 citations
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February 2025 in “International Journal of Molecular Sciences” This study found that the solid self-nanoemulsifying drug delivery system improved the oral bioavailability of carvedilol significantly compared to the drug alone, enhancing its solubility, dissolution, AUC, and Cmax.
6 citations
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February 2013 in “Journal of Visualized Experiments” This study introduces a method using lentiviral delivery in mice to expedite analysis of factors crucial for hair follicle morphogenesis by enabling rapid gain- or loss-of-function studies.