Solid Lipid Nanoparticles Suspension Versus Commercial Solutions for Dermal Delivery of Minoxidil

    Karine Padois, Céline Cantiéni, Valérie Bertholle … Françoise Falson
    Studysummary This study found that solid lipid nanoparticles with minoxidil were as effective as commercial solutions for skin penetration and were non-corrosive, indicating potential for hair loss treatment.
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    Research cited in this study 12

    1. Selective Follicular Targeting by Modification of the Particle Sizes Journal of Controlled Release · 2011
    2. Follicular and Percutaneous Penetration Pathways of Topically Applied Minoxidil Foam European Journal of Pharmaceutics and Biopharmaceutics · 2010
    3. Transcutol-Containing Vesicles for Topical Delivery of Minoxidil Journal of Drug Targeting · 2010
    4. Penetration Enhancer-Containing Vesicles as Carriers for Cutaneous Delivery of Minoxidil International Journal of Pharmaceutics · 2009
    5. Relative Uptake of Minoxidil Into Appendages and Stratum Corneum and Permeation Through Human Skin In Vitro Journal of Pharmaceutical Sciences · 2009
    6. Formulation and In Vitro Assessment of Minoxidil Niosomes for Enhanced Skin Delivery International Journal of Pharmaceutics · 2009
    7. Follicular Transport Route: Research Progress and Future Perspectives European journal of pharmaceutics and biopharmaceutics · 2009
    8. Hair Follicles, Their Disorders, and Their Opportunities Drug Discovery Today: Disease Mechanisms · 2008
    9. Liposomes And Niosomes As Potential Carriers For Dermal Delivery Of Minoxidil Journal of Drug Targeting · 2007
    10. Minoxidil: Mechanisms of Action on Hair Growth British Journal of Dermatology · 2004
    11. Treatments for Androgenetic Alopecia and Alopecia Areata Drugs · 2001
    12. Penetration of Minoxidil from Ethanol/Propylene Glycol Solutions: Effect of Application Volume and Occlusion Journal of Pharmaceutical Sciences · 1995

    Related research 1

    1. Solid Lipid Nanoparticles Suspension Versus Commercial Solutions for Dermal Delivery of Minoxidil International Journal of Pharmaceutics · 2011