31 citations
,
September 2014 in “Journal of Pharmaceutical Sciences” This study found that Er–YAG laser treatment significantly enhanced skin absorption and follicular delivery of antialopecia drugs, suggesting a potential laser-assisted approach to treat alopecia.
28 citations
,
September 2020 in “Pharmaceutics” This review discusses the potential of three-dimensional printed mesoporous scaffolds for drug delivery applications, particularly for bone cells and tissues, but reports no new clinical results.
28 citations
,
September 2015 in “Wiener Klinische Wochenschrift” New skin substitutes for treating severe burns and chronic wounds are being developed, but a permanent solution for deep wounds is not yet available commercially.
27 citations
,
August 2018 in “Therapeutic Delivery” In this study, researchers reviewed recent advances in using nanoencapsulation technology to improve the pharmacological treatment of alopecia, suggesting its potential to enhance drug delivery and reduce adverse effects compared to conventional methods.
25 citations
,
June 2011 in “International journal of pharmaceutics” This study found that polymeric nanoparticle suspensions can deliver poorly water-soluble drugs to hair follicles in animal models, suggesting a promising method for targeted topical treatments.
22 citations
,
September 2019 in “ACS omega” This study found that AGO@HPC nanocomposite films demonstrated enhanced mechanical, anti-ultraviolet, and antibacterial properties, suggesting potential for use in antibacterial packaging and wound-dressing applications.
17 citations
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May 2015 in “Nanomedicine: Nanotechnology, Biology and Medicine” This study found that lipid nanocarriers called squarticles, conjugated with an antibody, enhanced minoxidil uptake in dermal papilla cells, potentially improving alopecia treatments.
13 citations
,
February 2018 in “Bio-medical Materials and Engineering” This study demonstrated that minoxidil-encapsulated PLLGA nanoparticles significantly increased minoxidil delivery to hair follicles compared to a minoxidil aqueous solution in mice.
10 citations
,
April 2016 in “Research and reports in transdermal drug delivery” This review discusses the potential of follicular drug delivery systems to target the pilosebaceous unit and reports no new research findings.
10 citations
,
July 2011 in “Springer eBooks” This review describes the use of carbon dioxide for aesthetic treatments like skin rejuvenation and scar reduction but does not present new clinical findings.
9 citations
,
September 2017 in “Nanoscale Research Letters” This study found that combining TIMP-1 with graphene oxide promoted skin tissue regeneration in rats and provided sustained release of TIMP-1 over 40 days.
8 citations
,
January 2023 in “Journal of Clinical and Translational Hepatology” This study examines the development and application of cultured models for gallbladder carcinoma and highlights innovations and challenges in constructing effective in vitro growth models for cancer research.
5 citations
,
February 2024 in “Frontiers in bioengineering and biotechnology” This research review outlines the challenges of diabetic wounds, such as diabetic foot ulcers, and examines the potential of electrospinning nanofiber scaffolds to improve healing by promoting tissue formation, allowing drug release, and enhancing specific wound healing properties.
5 citations
,
January 2022 in “Proceedings of the Pakistan Academy of Sciences B Life and Environmental Sciences” This review discusses the role of nanoparticles in cancer diagnosis and treatment and outlines their potential to improve outcomes by reducing systemic toxicity and overcoming multidrug resistance, though it reports no new clinical results.
5 citations
,
September 2012 in “Springer eBooks” Nanoparticles can be used to deliver drugs to hair follicles, potentially improving treatments for conditions like acne and alopecia, and could also be used for vaccine delivery and gene therapy.
4 citations
,
January 2022 in “Current pharmaceutical design” This review discusses the benefits and applications of microsponges delivery systems in drug delivery, particularly for topical treatments, and reports no new clinical findings.
4 citations
,
March 2006 in “Archives of Dermatology” This text is not a research abstract but website navigation and policy information; it provides no study results.
2 citations
,
January 2024 in “Pakistan Veterinary Journal” This review highlights the potential of hydrogels in veterinary medicine, emphasizing their advantages over traditional wound dressings and their promising applications in drug delivery and tissue engineering, despite currently limited use in this field.
2 citations
,
September 2023 in “Scientific reports” This study reports that zinc oxide or silver nanoparticles capped with vitamin A or E, incorporated into wheat gluten films, showed significant potential in promoting burn wound healing in mice by facilitating wound contraction, re-epithelialization, and collagen deposition, while also exhibiting antioxidant and antibacterial properties.
2 citations
,
December 2022 in “PÄDI Boletín Científico de Ciencias Básicas e Ingenierías del ICBI” This review provides an overview of composite scaffold materials for skin that mimic natural dermal tissue, and highlights their potential in treating chronic wounds like diabetic foot by promoting cellular growth.
2 citations
,
April 2021 in “International Journal of Pharmaceutics” This study concluded that a liquid serum formulation delivered two fluorescent dyes to deeper follicular regions more effectively than nanoparticle systems.
1 citations
,
January 2026 in “Frontiers in Cell and Developmental Biology” This study reviews the transformative role of artificial intelligence in biomaterial design, highlighting its ability to reduce costs through virtual screening, enhance material performance, and predict biological interactions to advance personalized and precision medicine.
1 citations
,
June 2025 in “Journal of Materials Science Materials in Medicine” This study reports that multifunctional electrospun scaffolds containing silver vanadate, hydroxyapatite, and graphene oxide significantly improved wound healing in a rat model, promoting rapid re-epithelialization, enhanced mechanical properties, and strong antibacterial activity, making them promising candidates for advanced wound care applications.
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.
1 citations
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September 2024 in “Journal of Education Health and Sport” This review evaluates the clinical use of composite dermal-epidermal skin substitutes, with a focus on advancements such as the "BioMask" for facial skin trauma, highlighting the potential of 3D bioprinting and bioengineered skin in improving wound treatment and reconstruction.
1 citations
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January 2019 in “Elsevier eBooks” This chapter reviews the use of electrospun matrices in creating tissue-engineered skin substitutes and reports no new clinical results; it emphasizes the need for a cell-friendly microenvironment.
1 citations
,
January 2019 in “Elsevier eBooks” This review discusses scaffold materials and properties used in epidermal tissue engineering to promote skin regeneration and reports no new research findings.
1 citations
,
November 2014 in “Elsevier eBooks” This chapter reviews traditional and tissue-engineered treatments for skin defects and discusses advances in bioengineered skin constructs, but it presents no new experimental results.
April 2026 in “Nowotwory Journal of Oncology” This review provides a clinical guide for safely using dermo-aesthetic treatments to improve the quality of life for oncology patients dealing with treatment-related side effects, emphasizing the importance of consulting with an oncologist before undergoing such procedures.
April 2026 in “Journal of Pharmaceutical Investigation” This review discusses recent advancements in nanotechnology for treating hypertrophic scarring and atopic dermatitis, highlighting the potential of nanotherapeutic platforms in enhancing therapeutic effects by modulating the skin's microenvironment.