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30-60 / 1000+ resultsresearch Transdermal Delivery of Minoxidil with Block Copolymer Nanoparticles
Smaller nanoparticles improve minoxidil absorption through hair follicles.
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research Nanostructured Drug Delivery Systems for Targeting 5-Alpha-Reductase Inhibitors to the Hair Follicle
Nanostructured delivery systems could potentially improve hair loss treatment by targeting drugs to hair follicles, reducing side effects and dosage, but the best size, charge, and materials for these systems need further investigation.
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research Squarticles as a Lipid Nanocarrier for Delivering Diphencyprone and Minoxidil to Hair Follicles and Human Dermal Papilla Cells
Squarticles effectively deliver hair growth drugs to follicles and dermal papilla cells.
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research Formulation and In Vitro Assessment of Minoxidil Niosomes for Enhanced Skin Delivery
Niosomes improve minoxidil skin delivery for hair loss treatment.
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research Liposomes And Niosomes As Potential Carriers For Dermal Delivery Of Minoxidil
Liposomes better deliver minoxidil for hair loss treatment than niosomes.
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research Accelerated Wound Healing Using Nanoparticles
Nanoparticles can speed up wound healing and deliver drugs effectively but may have potential toxicity risks.
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research Hair Follicle Targeting with Nanoparticles
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.
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research Applications and Implications of Heparin and Protamine in Tissue Engineering and Regenerative Medicine
Heparin and protamine are promising in tissue repair and organ regeneration, including skin and hair.
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research Follicular Transport Route: Research Progress and Future Perspectives
Hair follicles help absorb and store topical compounds, aiding targeted drug delivery.

research Chitosan Nanoparticles for Targeting and Sustaining Minoxidil Sulphate Delivery to Hair Follicles
Chitosan nanoparticles improve minoxidil delivery to hair follicles for better alopecia treatment.
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research The Promoted Synthesis of Minoxidil by Magnetic Nanoparticles of Cobalt Ferrite (CoFe2O4) as a Heterogeneous Reusable Catalyst
Researchers made minoxidil efficiently using cobalt ferrite nanoparticles as a reusable catalyst.

research Iontophoresis on Minoxidil Sulphate-Loaded Chitosan Nanoparticles Accelerates Drug Release, Decreasing Their Targeting Effect to Hair Follicles
Using iontophoresis on minoxidil sulphate-loaded chitosan nanoparticles increases drug release but reduces its targeting to hair follicles.
research A New Mechanism for Resonance Rayleigh Scattering Detection of Minoxidil Based on Catalytic Oxidation of Silver Nanoparticles
A new, quick method detects minoxidil using silver nanoparticles.

research Chitosan and Its Amphiphilic Derivative Nanoparticles Loaded with Minoxidil for Induction of Hair Growth: In Vitro and In Vivo Evaluation
Chitosan nanoparticles loaded with Minoxidil were effective for hair growth but released the drug more slowly than the amphiphilic derivative.

research Development and Characterization of Thiolated Cyclodextrin-Based Nanoparticles for Topical Delivery of Minoxidil
Thiolated cyclodextrin-based nanoparticles effectively deliver Minoxidil for scalp treatment without causing skin irritation.
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research The Effects of Particle Properties on Nanoparticle Drug Retention and Release in Dynamic Minoxidil Foams
Particle properties affect drug retention and release in minoxidil foams, with lipid nanoparticles having higher loading capacity.
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research In Vivo and In Vitro Hair Growth-Promoting Effect of Silver and Iron Nanoparticles Synthesized via Blumea Eriantha DC Plant Extract
Silver nanoparticles can significantly promote hair growth.
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research Fabrication of Silver Nanoparticles from Ziziphus Nummularia Fruit Extract: Effect on Hair Growth Rate and Activity Against Selected Bacterial and Fungal Strains
Silver nanoparticles made from Ziziphus nummularia fruit extract promote hair growth and fight bacteria and fungi.
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research Anti-PDGF Receptor β Antibody-Conjugated Squarticles Loaded with Minoxidil for Alopecia Treatment by Targeting Hair Follicles and Dermal Papilla Cells
Scientists created tiny particles loaded with a hair growth drug, minoxidil, that specifically target hair follicles and skin cells to potentially improve hair growth.
research Chitosan and Aloe Vera Decorated Nanoparticulate System Loaded With Minoxidil as a Suggested Topical Formulation for Alopecia Therapy
The new formulation with minoxidil, chitosan, and Aloe vera improves hair growth and reduces side effects.
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research Cosmetics and Cosmeceutical Applications of Chitin, Chitosan, and Their Derivatives
Chitin and chitosan are useful in cosmetics for oral care, haircare, and skincare, including UV protection and strength improvement.
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research Nanotechnology Advances for Hair Loss
Nanotechnology could make hair loss treatments more effective and reduce side effects, but more research is needed before it's available.
research Nanotechnology-Based Strategies for Hair Follicle Regeneration in Androgenetic Alopecia
Nanotechnology shows promise for better hair loss treatments but needs more research for safety and effectiveness.

research Minoxidil Use in Dermatology, Side Effects, and Recent Patents
Minoxidil treats hair loss, promotes growth, has side effects, and has recent patents.

research In Vitro Performance of Dutasteride-Nanostructured Lipid Carriers Coated with Lauric Acid-Chitosan Oligomer for Dermal Delivery
Dutasteride-loaded nanoparticles coated with Lauric Acid-Chitosan show promise for treating hair loss due to their controlled release, low toxicity, and potential to stimulate hair growth.
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research Microneedling: A Review of the Literature, A Novel Treatment Strategy for Androgenetic Alopecia
Microneedling is a promising, simple, and cost-effective treatment for hair loss that works well with other therapies.

research Preparation and Characterization of Dutasteride-Loaded Nanostructured Lipid Carriers Coated with Stearic Acid-Chitosan Oligomer for Topical Delivery
The new dutasteride formula can be applied to the skin, may promote hair growth, and has fewer side effects.
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research Bioactive Compound-Loaded Nanocarriers for Hair Growth Promotion: Current Status and Future Perspectives
Nanocarriers with plant extracts show promise for safe and effective hair growth treatment.
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research Synthetic Approaches for Pharmacologically Active Decorated Six-Membered Diazines
The document concludes that specific methods for making diazine-based drugs can lead to high yields and are important for creating effective treatments for various diseases.