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30 / 821 resultsresearch Vestibular Hair Cell Regeneration and Restoration of Balance Function Induced by Math1 Gene Transfer
Gene therapy with the Math1 gene helped regenerate balance-related cells and improve balance in mice.
research Development of Gene Therapy for Inner Ear Disease: Using Bilateral Vestibular Hypofunction as a Vehicle for Translational Research
Gene therapy, especially using atoh1, shows promise for creating functional sensory hair cells in the inner ear, but dosing and side effects need to be managed for clinical application.
research A Locus on Distal Chromosome 10 (Ahl4) Affecting Age-Related Hearing Loss in A/J Mice
Scientists found a gene in mice that causes early hearing loss.
research Hair Bundle Defects and Loss of Function in the Vestibular End Organs of Mice Lacking the Receptor-Like Inositol Lipid Phosphatase PTPRQ
Mutations in the PTPRQ gene cause significant balance issues in mice due to hair bundle defects in the inner ear.
research Evidence for Multiple, Developmentally Regulated Isoforms of Ptprq on Hair Cells of the Inner Ear
Ptprq has multiple forms that change during inner ear development.
research Rps14 Upregulation Promotes Inner Ear Progenitor Proliferation and Hair Cell Regeneration in the Neonatal Mouse Cochlea
Increasing Rps14 helps grow more inner ear cells and repair hearing cells in baby mice.
research Autophagy-Related Protein 12 Associates With Anti-Apoptotic B Cell Lymphoma-2 to Promote Apoptosis in Gentamicin-Induced Inner Ear Hair Cell Loss
Blocking autophagy increases survival of inner ear hair cells exposed to gentamicin.
research Cell-Free Fat Extract Restores Hair Loss: A Novel Therapeutic Strategy for Androgenetic Alopecia
A substance called Cell-free fat extract can effectively treat common hair loss by increasing hair growth and density.
research Visible-To-Near IR Quantum Dot-Based Hypermulticolor High-Content Screening of Herbal Medicines for Efficacy Monitoring of Hair Growth Promotion and Hair Loss Inhibition
Some herbal extracts can promote hair growth and prevent hair loss.
research Diversification and Specialization of Touch Receptors in Skin
Skin has specialized touch receptors that can tell different sensations apart.
research Drug Delivery System Based On Minoxidil Nanoparticles Promotes Hair Growth In C57BL/6 Mice
Minoxidil nanoparticles can potentially be a more effective treatment for hair growth than current treatments.
research Mechanism of Action of Herbs and Their Active Constituents Used in Hair Loss Treatment
Some herbs and their components might help treat hair loss by affecting various biological pathways, but more research and regulation are needed.
research Tissue Homeostasis and Regeneration: Human Limitations and Potential
Humans have limited regenerative abilities, but new evidence shows the adult brain and heart can regenerate, and future treatments may improve this by mimicking stem cell environments.
research Cleave But Not Leave: Astrotactin Proteins in Development and Disease
Astrotactin proteins are important for brain and skin development and are linked to several neurodevelopmental disorders.
research Calcium Channel Inhibitor and Extracellular Calcium Improve Aminoglycoside-Induced Hair Cell Loss in Zebrafish
Certain substances can protect against ear damage from some antibiotics in zebrafish.
research Celsr1 And Celsr2 Exhibit Distinct Adhesive Interactions And Contributions To Planar Cell Polarity
Celsr1 is crucial for skin cell alignment, while Celsr2 has little effect on this process.
research Minoxidil Delivered Via a Stem Cell Membrane Delivery Controlled Release System Promotes Hair Growth in C57BL/6J Mice
A new method using stem cell membranes to deliver Minoxidil improved hair growth in mice better than Minoxidil alone.
research Genetic Association of Wool Quality Characteristics in United States Rambouillet Sheep
Certain genetic markers linked to wool quality in Rambouillet sheep were identified, which can guide better breeding choices.
research Using Light to Study Sound: Stimulating Hair Cells With Photonic Pressure
Light can be used to stimulate ear hair cells, improving speed and consistency over previous methods.
research Hair Cell Toxicology: With the Help of a Little Fish
Zebrafish larvae are used to study and find treatments for ear cell damage because they are easier to observe and test than mammals.
research Spatiotemporal Dynamics of Sensory Neuron and Merkel-Cell Remodeling During Epidermal Homeostasis
Sensory neurons and Merkel cells remodel at different rates during normal skin maintenance.
research Spatiotemporal Dynamics of Sensory Neuron and Merkel-Cell Remodeling During Epidermal Homeostasis
Sensory neuron changes and Merkel-cell changes in the skin happen independently during normal skin maintenance.
research Spatiotemporal Dynamics of Sensory Neuron and Merkel-Cell Remodeling During Epidermal Homeostasis
Sensory neuron remodeling and Merkel-cell changes in the skin happen independently.
research Spatiotemporal Dynamics of Sensory Neuron and Merkel-Cell Remodeling During Epidermal Homeostasis
Sensory neuron remodeling and Merkel-cell changes happen independently during skin maintenance.
research Spatiotemporal Dynamics of Sensory Neuron and Merkel-Cell Remodeling During Epidermal Homeostasis
Sensory neuron and Merkel-cell changes in the skin happen independently during normal skin maintenance.
research Spatiotemporal Dynamics of Sensory Neuron and Merkel-Cell Remodeling During Epidermal Homeostasis
Sensory neuron and Merkel cell changes in the skin happen independently during normal skin maintenance.
research Spatiotemporal Dynamics of Sensory Neuron and Merkel-Cell Remodeling During Epidermal Homeostasis
Sensory neuron and Merkel cell changes in the skin happen independently during normal skin maintenance.
research Melatonin Protects Cochlear Hair Cells from Nicotine-Induced Injury Through Inhibiting Apoptosis, Inflammation, Oxidative Stress, and Endoplasmic Reticulum Stress
Melatonin may protect ear cells from damage caused by nicotine.
research Natural Bisbenzylisoquinoline Derivatives Protect Zebrafish Lateral Line Sensory Hair Cells from Aminoglycoside Toxicity
Some natural compounds can protect fish ear cells from damage by certain antibiotics without affecting the antibiotics' ability to fight infections.