August 2023 in “Drug Design Development and Therapy” This study found that minoxidil may treat androgenetic alopecia by affecting hormonal and enzymatic pathways, identifying new targets CYP17A1 and CYP19A1 and demonstrating its inhibition of androgenic receptors.
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.
7 citations
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August 2021 in “ChemEngineering” This study found that Soluplus and L-ascorbyl 2,6-dipalmitate nanoparticles may improve minoxidil's skin permeability through stable hydrophobic interactions, enhancing its potential for targeted skin application.
September 2023 in “Pharmaceuticals” This study found that nanoparticles containing minoxidil and betamethasone improved drug delivery to hair follicles, with lipidic nanoparticles significantly enhancing minoxidil and betamethasone penetration compared to control, making them a promising option for alopecia areata treatment with reduced side effects.
32 citations
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March 2013 in “Journal of Pharmaceutical Sciences” This study observed that iontophoresis significantly improved the delivery of minoxidil sulfate to hair follicles compared to passive methods, suggesting potential benefits for alopecia treatment.