4 citations
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July 2023 in “Pharmaceutics (Basel)” This study reviews various skin models and methodologies used to assess the follicular penetration of nanoparticle-based drugs, highlighting inconsistencies that complicate comparisons and aims to establish more uniform protocols for clearer study outcomes.
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.
3 citations
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January 2025 in “International Journal of Biological Macromolecules” This study found that a microneedle patch containing tofacitinib-loaded nanoparticles significantly increased hair follicle numbers and promoted hair regeneration with less drug compared to daily topical tofacitinib, suggesting it may be an effective strategy for alopecia treatment by reducing dosing frequency and enhancing drug delivery.
2 citations
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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.
2 citations
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January 2012 This study suggests that chitosan-enhanced human serum albumin nanoparticles could serve as a safe and effective carrier for delivering anticancer drugs like tamoxifen.
1 citations
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January 2020 in “Refubium (Universitätsbibliothek der Freien Universität Berlin)” This thesis explored how stratum corneum barrier disruption and pH-sensitive nanoparticles influence drug penetration and release in skin models, highlighting potential applications for treating atopic dermatitis.
July 2026 in “Industrial and Domestic Waste Management” This study synthesized silver nanoparticles using Gandaria stem bark extract, finding that nanoparticles at a 4% concentration were particularly effective for selectively detecting mercury over lead and calcium, making them suitable as preliminary detection materials for mercury in facial whitening creams.
July 2026 in “Regenerative medicine reports .” This study concluded that nanoparticle-based delivery systems may significantly enhance wound healing and tissue regeneration in third-degree burns, though challenges like nanoparticle variability and cytotoxicity remain.
January 2026 in “International Journal of Applied Pharmaceutics” This review discusses the integration of nanoparticles with microneedles to improve drug delivery through enhanced stability, bioavailability, and controlled release, noting ongoing challenges with stability, scalability, and safety.
April 2025 in “BioNanoScience” New methods using biomaterials, stem cells, and nanoparticles show promise for improving hair growth and treating hair loss.
January 2025 in “ACS Applied Materials & Interfaces” In this study, a nanoparticle system codelivering diphenylcyclopropenone and rapamycin successfully induced immune tolerance and promoted hair regrowth in a mouse model of alopecia areata, offering a promising new therapeutic strategy for this autoimmune condition.
January 2020 in “Der Pharmacia Lettre” This review discusses natural remedies and nanoparticle formulations for alopecia management and reports no new clinical results, emphasizing potential benefits of herbal treatments over synthetic therapies.
This summary highlights in vitro and in vivo experiments showing that nano-sized liposomes with bound polihexanide penetrate hair follicles more effectively and may extend antiseptic effects longer than conventional polihexanide solutions.
January 2025 in “International Journal of Molecular Sciences” Nanoparticles have diverse applications, including promising cancer treatments and hair growth solutions.
November 2024 in “International Journal of Molecular Sciences” This study developed caffeine-loaded nanoparticles coated with ultradeformable liposomes for better hair follicle delivery, showing non-cytotoxicity and potential to reduce oxidative stress in DHT-damaged cells, suggesting an alternative treatment for androgenetic alopecia.
May 2024 in “Brazilian Journal of Hair Health” This study reported the successful development of finasteride-loaded poly(lactic-co-glycolic acid) nanoparticles, with varying encapsulation efficiencies, aiming to enhance drug delivery for hair growth while minimizing side effects, and noted that an in vivo study will follow to assess efficacy.
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.
December 2023 in “Pharmaceutics” In this study, nanoparticles developed with Minoxidil-loaded thiolated β-CDs showed promise for topical scalp use, as they significantly improved drug retention on hair and displayed no irritation in rabbits.
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.
August 2021 in “Josai University Repository of Academia (Josai University)” This study found that Sol/ASC-DP nanoparticles could enhance the skin permeability of minoxidil due to improved stability and hydrophobic interactions in the nanoparticle structure.
October 2019 in “DOAJ (DOAJ: Directory of Open Access Journals)” In this study, N-MXD (minoxidil nanoparticles) was shown to deliver more drug into hair bulbs and enhance IGF-1 and VEGF levels more effectively than commercial formulations, resulting in higher therapeutic efficiency for hair growth in C57BL/6 mice.
January 2014 in “SciDok (Saarland University and State Library)” This study demonstrated that in vitro pig ear models effectively predict human follicular uptake of nanoparticles for potential transfollicular vaccination, but massage did not enhance nanoparticle penetration.
This study observed that chitosan-decorated PS404-b-PAA63 nanoparticles may enhance skin retention and reduce permeation flux of finasteride, suggesting potential for improved transdermal delivery.
April 2011 in “HAL (Le Centre pour la Communication Scientifique Directe)” This study suggests that polymersomes decorated with chitosan improve the transdermal delivery of finasteride, providing an alternative drug delivery system with higher drug retention in the skin.
September 2024 in “Journal of Cosmetic Dermatology” This study found that quercetin-loaded solid lipid nanoparticles demonstrated positive protective effects on human hair against UV-B light, as they controlled microscopic surface roughness, reduced chemical changes, and minimized protein loss in vitro compared to other treatments.
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 “bioRxiv (Cold Spring Harbor Laboratory)” This study found that dissolving microneedle array patches containing mesoporous silica nanoparticles can deliver antigen-loaded nanoparticles into mice effectively, inducing strong immune responses similar to traditional subcutaneous injection.
In this study, formulations containing 20% zinc oxide nanoparticles demonstrated stability and improved spreadability without penetrating the deepest skin layers, instead accumulating in skin furrows and hair follicles.
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.
January 2018 in “Refubium (Universitätsbibliothek der Freien Universität Berlin)” This study demonstrated that combining amorphization and nanonization of drugs enhances both saturation solubility and dissolution rate, potentially offering therapeutic benefits for formulations like dermal applications.