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research A Simple Non-Invasive Approach toward Efficient Transdermal Drug Delivery Based on Biodegradable Particulate System
A new method for delivering drugs through the skin using biodegradable particles was found to be effective.
research Targeted delivery of extracellular vesicles: the mechanisms, techniques and therapeutic applications
Engineered extracellular vesicles show promise for targeted therapy but need more research for clinical use.
research Trends in Nanotechnology for Practical Applications
Nanotechnology is improving drug delivery and targeting, with promising applications in cancer treatment, gene therapy, and cosmetics, but challenges remain in ensuring precise delivery and safety.
research Mechanistic study of decreased skin penetration using a combination of sonophoresis with sodium fluorescein-loaded PEGylated liposomes with D-limonene
Sonophoresis reduces skin absorption of sodium fluorescein in certain liposomes.
research Targeted gene delivery to skin cells in vivo: A comparative study of liposomes and polymers as delivery vehicles
Nonionic liposomes are the best for delivering genes to skin cells.
research Cationic Ionic Liquid-Liposome Nanoplatform for Transdermal asiRNA Delivery: A Unified Therapy for Androgen-Dependent Dermatoses
research Transdermal delivery of mixnoxidil with block copolymer nanoparticles
Smaller nanoparticles improve minoxidil delivery through hair follicles.
research Ionizable Coenzyme‐Engineered Lipid/Fiber Microplexes Boost Ribosomal Translation to Improve mRNA Therapy for Degenerative Diseases
New lipid/fiber microplexes improve mRNA therapy for degenerative diseases by enhancing cell function and treatment effectiveness.
research Elaboration of hollow mesoporous organosilica nanospheres of various sizes
Hollow mesoporous organosilica nanoparticles are promising for biomedical use.
research Dendritic polyglycerol and N-isopropylacrylamide based thermoresponsive nanogels as smart carriers for controlled delivery of drugs through the hair follicle
Medium to larger nanogels effectively deliver drugs through hair follicles when heated.
research Advances in Chitosan-Based Nanoparticles for Drug Delivery
Chitosan, a natural substance, can be used to create tiny particles that effectively deliver various types of drugs, but more work is needed to improve stability and control of drug release.
research The penetration efficiency of a dissolved model drug into hair follicles depends on the concentration of added nanoparticles
A 4% nanoparticle concentration and 4 Hz massage improve drug delivery into hair follicles.
research Microneedles mediated bioinspired lipid nanocarriers for targeted treatment of alopecia
A new hair loss treatment uses tiny needles to deliver a drug-loaded lipid carrier, promoting hair growth more effectively than current treatments.
research Multifunctional nanomedicine targeting the 'seed-and-soil' of hair follicles via simultaneous alleviation of oxidative stress and activation of autophagy for androgenetic alopecia therapy
TFC-loaded microneedles effectively promote hair regrowth in androgenetic alopecia.
research Recent Advances in Polymer Microneedles for Drug Transdermal Delivery: Design Strategies and Applications
Polymer microneedles are a promising, painless alternative to traditional needles for delivering drugs through the skin.
research Nobiletin-loaded composite penetration enhancer vesicles restore the normal miRNA expression and the chief defence antioxidant levels in skin cancer
Nobiletin-loaded vesicles effectively treat skin cancer by restoring normal miRNA and antioxidant levels.
research Optical Studies of Nanodiamond-Tissue Interaction: Skin Penetration and Localization
Diamond nanoparticles can penetrate skin and reach hair follicles, useful for imaging applications.
research Fast-Embeddable Grooved Microneedles by Shear Actuation for Accurate Transdermal Drug Delivery
New microneedles deliver drugs through the skin accurately and effectively.
research Author response: Arabidopsis formin 2 regulates cell-to-cell trafficking by capping and stabilizing actin filaments at plasmodesmata
Arabidopsis Formin 2 stabilizes actin filaments, affecting cell-to-cell movement and virus susceptibility.
research Lipid-based nanoparticles for topical delivery of hair growth therapeutic molecules
Lipid-based nanoparticles are effective for applying hair growth treatments to the skin.
research Surfactants' Role in Nanovesicles Drug Delivery System
Surfactants in spanlastics improve drug delivery by making nanovesicles more flexible and stable for painless administration through the mouth.
research Microneedle mediated transdermal delivery of β-sitosterol loaded nanostructured lipid nanoparticles for androgenic alopecia
The microneedle system effectively promotes hair growth for treating androgenic alopecia.
research Recent progress of polymeric microneedle-assisted long-acting transdermal drug delivery
Polymeric microneedles offer a less invasive, long-lasting drug delivery method that improves patient compliance and reduces side effects.
research Development and Evaluation of a Niosome-Integrated Microneedle System for Targeted Follicular Delivery of Ketoconazole in Alopecia Therapy
A new microneedle system may improve hair loss treatment by delivering ketoconazole directly to hair follicles.
research Cyproterone acetate-loaded nanostructured lipid carriers: effect of particle size on skin penetration and follicular targeting
Smaller particles of the drug carrier penetrated skin better, with 300 nm size being best for targeting hair follicles.
research Advances in precise cell manipulation
Precise cell manipulation technologies are advancing but still face challenges in improving accuracy for medical use.
research P.08: Development of dissolving microneedles containing finasteride with improved permeability and bioavailability.
Dissolving microneedles with finasteride improve drug delivery for hair loss treatment.
research Nanotechnology in Cosmetics: An Overview
Nanotechnology improves cosmetics by enhancing ingredient delivery and effectiveness.
research Hair follicles as a target structure for nanoparticles
Nanoparticles around 600-700 nm can effectively enter and stay in hair follicles for days, which may help in delivering drugs to specific cells.