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5 / 1000+ resultsresearch Tissue-engineered dermal substitutes constructed by human embryonic stem cell-derived fibroblasts facilitate the repair of skin wounds
This study demonstrates that human embryonic stem cell-derived fibroblasts (hESC-Fbs) can be effectively used to construct tissue-engineered dermal substitutes for skin wound repair. By directly inducing hESCs to differentiate into mesenchymal stem cells and then into fibroblasts without the embryoid body stage, researchers achieved high efficiency and purity. The hESC-Fbs expressed growth factors and extracellular matrix components similar to human skin fibroblasts, and successfully repaired mouse skin wounds by day 20 post-transplantation. This EB-free induction strategy shows promise for clinical applications in treating large-area skin wounds.
research Hypoxia enhances the hair growth-promoting effects of embryonic stem cell-derived mesenchymal stem cells via NADPH oxidase 4
Low oxygen conditions improve how well certain stem cells from embryos can make hair grow longer and faster.
research Hair follicle-derived mesenchymal cells support undifferentiated growth of embryonic stem cells
Hair follicle cells can help keep embryonic stem cells undifferentiated.
research Generation of human-induced pluripotent stem cell-derived adherent 3-dimensional skin hair-follicle organoids
A new method was developed to efficiently grow skin hair follicles from stem cells, potentially aiding alopecia treatment.
research Effect of conditioned media collected from human amniotic fluid-derived stem cells (hAFSCs) on skin regeneration and photo-aging
Conditioned media from human amniotic fluid-derived stem cells helps skin heal and protects against aging from sun exposure.
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5 / 1000+ resultscommunity New and Interesting HairLoss Studies/Papers/Reviews
Hair loss treatments discussed include Dutasteride with Ketoconazole, tissue engineering strategies, and androgenetic alopecia therapies. Massage doubles follicular retention, improving treatment effectiveness.
community Hair and normal skin created from human pluripotent stem cells for the first time
Human pluripotent stem cells have been used to create hair and skin, potentially offering a new solution for baldness. A user also mentioned starting finasteride but experiencing unexpected hair thinning.
community Why does this industry still revolve around 5-AR inhibitors?
Hair loss treatments still rely heavily on minoxidil, finasteride, and RU58841, with little innovation. Future treatments like stem cell therapy and RNA technology show promise but are not yet available.
community I Guess balding is cured so should we close subreddit and move to hairstyling photos 😁 Botox-like nerve blocking reveals potential way to fully regenerate skin without scarring
Baldness is difficult to cure because current treatments like finasteride, dutasteride, and minoxidil only prevent hair shedding, and new developments are mostly ineffective. Botox shows potential in aiding skin regeneration and hair growth, but maintenance therapy with treatments like dutasteride and minoxidil may still be necessary.
community Verteporfin and Microneedling
Clinical studies by Dr. Barghouthi and Dr. Bloxham indicate that Verteporfin, when used with FUE and FUT hair transplantation methods, shows promise in hair follicle regeneration and minimal scarring due to its ability to inhibit Yes-associated protein (YAP). Microneedling at depths of 3-3.5mm, combined with Verteporfin, could potentially reactivate dormant follicles, although the optimal dosage and application method are still under investigation. Concerns remain about the DHT sensitivity of regenerated follicles, highlighting the need for further research to optimize trauma levels and Verteporfin concentrations to achieve effective and scar-free hair regeneration.