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30 / 1000+ resultsresearch Targeted expression of activated erbB-2 to the epidermis of transgenic mice elicits striking developmental abnormalities in the epidermis and hair follicles.
Activated erbB-2 in mice skin causes severe skin and hair abnormalities.
research Targeted Expression of Human Vitamin D Receptor in the Skin Promotes the Initiation of the Postnatal Hair Follicle Cycle and Rescues the Alopecia in Vitamin D Receptor Null Mice
Vitamin D receptor is crucial for starting hair growth after birth.
research Targeted expression of SV40 T antigen in the hair follicle of transgenic mice produces an aberrant hair phenotype
SV40 T antigen in hair follicles causes abnormal hair and health issues in mice.
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.
research Hoxc13 polyglycine repeat gain-of-function drives mammalian integument evolution by altering targeted genes and interactions
The polyG fragment in Hoxc13 protein helps evolve mammalian skin and hair by enhancing gene interactions.
research Erosive Pustular Dermatosis of the Scalp Mimicking Squamous Cell Carcinoma: Can Dermoscopy Be Helpful?
Biopsy is crucial to accurately distinguish Erosive Pustular Dermatosis of the Scalp from Squamous Cell Carcinoma.
research Erosive Pustular Dermatosis of the Scalp Mimicking Squamous Cell Carcinoma: Can Dermoscopy Be Helpful?
Biopsy is crucial for accurately diagnosing EPDS to avoid mistaking it for SCC.
research Triggered release of model drug from AuNP-doped BSA nanocarriers in hair follicles using IRA radiation
Infrared light can trigger drug release from gold nanoparticle carriers in hair follicles.
research The Emerging Structural Pharmacology of ATP-Sensitive Potassium Channels
KATP channels are important for energy balance and are targeted by drugs for diabetes, hypoglycemia, hypertension, and hair loss.
research Comparative Analysis of Plant Exosomes and Human-Derived Exosomes: Structural Differences and Emerging Applications
Human exosomes are effective for targeted treatments but face scalability issues, while plant exosomes are cost-effective for cosmetics.
research Penetration and storage of particles in human skin: Perspectives and safety aspects
Particles around 100 nm can penetrate and stay in hair follicles without passing through healthy skin, making them safe for use in topical products and useful for targeted drug delivery.
research Effect of Disulfide Bonds in Human Hair Fibers on the Melting Behavior of Their Crystalline Structure
Changing disulfide bonds in human hair affects its melting behavior and thermal stability.
research Skin Structure, Physiology, and Pathology in Topical and Transdermal Drug Delivery
Improving drug delivery through the skin requires understanding skin and using enhancers.
research Engineering of Recombinant Fortilin for Structure Activity Studies
The research developed new fortilin protein constructs for potential heart disease treatments.
research 612 Targeted hair follicle delivery of hydrophilic molecules
Researchers developed a new method to deliver molecules to hair follicles to manage hair growth without damaging surrounding skin.
research Niosomes: A Novel Targeted Drug Delivery System
Niosomes are a promising method for delivering drugs directly to targeted areas in the body.
research Faculty Opinions recommendation of Targeted skin overexpression of the mineralocorticoid receptor in mice causes epidermal atrophy, premature skin barrier formation, eye abnormalities, and alopecia.
Overexpression of a specific receptor in mice skin causes skin thinning, early skin barrier formation, eye issues, and hair loss.
research Niosomes as Efficient Nanocarriers for Targeted Drug Delivery
Niosomes are effective carriers for targeted drug delivery, improving drug stability and efficiency.
research Cholecalciferol-grafted hollow mesoporous silica nanoparticles for targeted and sustained caffeine delivery in alopecia therapy
Vitamin D3-coated nanoparticles effectively deliver caffeine for alopecia treatment with minimal side effects.
research Probing neuronal functions with precise and targeted laser ablation in the living cortex
The laser system helps study brain cell functions by precisely removing specific cells and observing changes.
research Nanostructured lipid carriers loaded with an association of minoxidil and latanoprost for targeted topical therapy of alopecia
A new treatment for hair loss uses tiny lipid carriers to deliver a mix of minoxidil and latanoprost directly to hair follicles, promoting hair growth and being well tolerated by the skin.
research Nanostructured Lipid Carriers Loaded with an Association of Minoxidil and Latanoprost for Targeted Topical Therapy of Alopecia
The new treatment using tiny lipid carriers to deliver minoxidil and latanoprost directly to hair follicles shows promise for alopecia.
research Anatomy and Function of the Skin
The skin is the largest organ, protecting the body, regulating temperature, and producing hormones.
research Hair Follicles: Strategic Targets for Promoting Hair Growth
Targeting hair follicles can effectively promote hair growth and treat hair disorders.
research Dissecting the Heterogeneity of Skin Gene Expression Patterns in Systemic Sclerosis
Systemic sclerosis skin shows varied gene patterns, suggesting potential for personalized treatment.
research Advances and Prospects for Hydrogel-Forming Microneedles in Transdermal Drug Delivery
Hydrogel-forming microneedles are promising for safe, efficient, and controlled drug delivery through the skin.
research Nanocarrier Systems for Transdermal Drug Delivery
Nanocarriers could improve how drugs are delivered through the skin but require more research to overcome challenges and ensure safety.
research Bioengineered microneedles and nanomedicine as therapeutic platform for tissue regeneration
Bioengineered microneedles and nanomedicine offer promising, precise treatments for tissue regeneration.
research Nanomaterials in Hair Care and Treatment: Current Advances and Future Perspectives
Nanomaterials can make hair care products work better and safer.