1 citations
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November 2023 in “Journal of cosmetic dermatology” This study developed a novel antidandruff shampoo with ketoconazole-coated zinc oxide nanoparticles that showed enhanced antifungal activity against Malassezia furfur compared to standard ketoconazole treatments, suggesting it could be a more effective alternative for dandruff management.
January 2025 in “RSC Advances” This study reported that a new formulation of finasteride solid lipid nanoparticles, combined with LPC and NTC, enhanced hair growth in mice without visible skin reactions, suggesting it could effectively manage androgenetic alopecia.
2 citations
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October 2021 in “Egyptian Journal of Chemistry” In this study, researchers used pumpkin aqueous extract to create iron nanoparticles, finding them effective at inhibiting harmful bacteria found in burn and wound infections, as well as promoting burn healing and hair growth in a laboratory mouse model.
July 2024 in “Journal of Investigative Dermatology”
July 2026 in “International Journal of Drug Delivery Technology” This review highlights novel drug delivery systems for alopecia that enhance localization in the pilosebaceous unit, reduce systemic exposure, and support sustained drug release, with a focus on optimized follicular carriers ranging from 100-300 nm for improved drug residence compared to conventional methods.
12 citations
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July 2020 in “International Journal of Pharmaceutics” This study found that finasteride- and dutasteride-loaded iron oxide nanoparticles improved drug penetration in the skin, suggesting they may be promising for topical alopecia therapies.
July 2024 in “ACS Biomaterials Science & Engineering” In this study, researchers used a 3D in vitro organ culture system to show that rifampicin-loaded lipid nanocapsules can penetrate hair follicles more effectively than free rifampicin, highlighting the potential advantage of nanocarrier-based antibiotic treatments for follicular infections.
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.
June 2026 in “International Journal of Drug Delivery Technology” In this review, researchers discussed various novel drug delivery systems, including lipid nanocarriers and polymeric nanoparticles, that may enhance treatment for alopecia by improving drug localization in hair follicles and reducing systemic exposure, potentially offering better outcomes than conventional treatments.
1 citations
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October 2025 in “Beni-Suef University Journal of Basic and Applied Sciences” This study reviews lipid-based nanocosmeceuticals and reports that they enhance therapeutic effectiveness in dermatological applications by improving skin hydration, reducing wrinkles, and effectively managing conditions like psoriasis and eczema, though further large-scale trials and regulatory alignment are needed for clinical use.
2 citations
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January 2008 in “Journal of Society of Cosmetic Chemists of Japan” PMS nanoparticles improve damaged hair by protecting and restoring its surface and color.
365 citations
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March 2021 in “Frontiers in Bioengineering and Biotechnology” This review discusses the potential of nanocarriers to enhance transdermal drug delivery and the combination of these carriers with physical methods, but it reports no new experimental results.
January 2022 in “DOAJ (DOAJ: Directory of Open Access Journals)” This study found that the optimized nanostructured lipid carrier formulation effectively enabled caffeine to penetrate and accumulate in hair follicles, suggesting potential for intrafollicular delivery in treatments for hair loss.
January 2017 in “Elsevier eBooks” This chapter discusses charnolopharmacotherapeutics for various medical conditions and suggests antioxidant-loaded nanoparticles may improve treatment by enhancing central nervous system delivery and inducing charnolophagy.
August 2024 in “Journal of Controlled Release” In a study using an AGA mouse model, researchers observed that a novel topical gel combining hybrid extracellular vesicles, gold nanoparticles, and finasteride accelerated hair regrowth and improved hair quality more effectively than conventional minoxidil treatment, presenting a promising option with fewer side effects.
March 2014 in “DOAJ (DOAJ: Directory of Open Access Journals)” This study suggests that novel lipid nanoparticle formulations may be suitable for delivering anti-alopecia compounds like minoxidil and finasteride, although their skin penetration was limited.
In this study, researchers developed a novel bio-patch from decellularized freeze-dried tumor tissues and hair melanin nanoparticles, which demonstrated enhanced wound healing in vivo by reducing oxidative stress, suppressing inflammation, and promoting angiogenesis.
February 2024 in “Current Bioactive Compounds” This study explored a novel finasteride-loaded nanoparticle gel for treating alopecia areata, finding that it significantly increased hair follicle number and size without causing skin irritation, presenting an effective alternative to traditional minoxidil treatments.
In this study, researchers developed a novel gel formulation combining zinc oxide nanoparticles and finasteride-loaded nanostructured lipid carriers, which showed promising results for topical delivery and effective skin penetration, potentially offering a new treatment approach for androgenic alopecia.
This study investigated a novel treatment for androgenetic alopecia, combining nanotechnology with a substance called β-sitosterol and laser therapy, and found that this combination showed promise in promoting hair growth without causing irritation or cytotoxicity.
4 citations
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October 2022 in “Cell Reports Physical Science” This study developed a novel mineralization strategy using metal-polyphenol coordination for dynamic control of nano-scale processes, enhancing hydrogels that support wound healing with antibacterial and angiogenesis-promoting properties.
40 citations
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June 2013 in “Molecular Pharmaceutics” This study demonstrates that transfected epidermal stem cells using a novel 3D transfection system significantly enhanced wound healing and may serve as an effective therapeutic agent and gene delivery method for wound treatment.
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.
November 2023 in “Materials Today Bio” In this study, researchers developed a novel temperature-sensitive biopolymer-based drug delivery system that enhanced the transdermal delivery of ISX9, a neurogenesis inducer, resulting in more effective hair follicle regrowth and signal pathway activation in vivo compared to traditional topical application.
18 citations
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February 2023 in “PLoS ONE” This study developed a triple drug delivery system using nanoparticles loaded with 5-fluorouracil, curcumin, and piperine to target breast tumors, demonstrating notable in vitro cytotoxicity and anti-metastatic potential in 3D tumor spheroids which suggests its promise for further preclinical evaluation.
2 citations
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January 2023 In a mouse model, this study found that nano-sized molybdenum accelerated hair growth and reduced oxidative stress markers, with enhancements observed when combined with minoxidil. It suggests potential for this combination as a novel topical treatment for hair loss, pending further clinical validation.
January 2026 in “E3S Web of Conferences” This study found that silver nanoparticles synthesized using Mitracarpus scaber extract showed potential hepatoprotective and anti-hyperplastic effects in rats, suggesting novel therapeutic strategies for managing liver injury and benign prostatic hyperplasia.
17 citations
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October 2016 in “Artificial Cells Nanomedicine and Biotechnology” This study found that arginine-loaded lipidic nanoparticles improved hair follicle growth in male hamsters more effectively than an aqueous arginine solution.
4 citations
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November 2023 in “Nano biomedicine and engineering” This review highlights the potential of nanomaterials in revolutionizing wound healing and infection control by promoting antibacterial, anti-inflammatory, and angiogenic activities, thereby enhancing the wound healing process and offering novel therapeutic strategies.
7 citations
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October 2024 in “Pharmaceutics” This study found that clindamycin-loaded PHA nanoparticles showed potent antibacterial effects against MRSA and enhanced wound healing in a mouse model of MRSA-infected wounds, indicating their potential as a novel treatment for these infections.