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research Live imaging of Smad2/3 signaling in mouse skin wound healing
Smad2/3-dependent TGF-β signaling increases during wound healing.
research Reduced SMAD2/3 activation independently predicts increased depth of human cutaneous squamous cell carcinoma
Lower SMAD2/3 activation predicts more severe skin cancer.
research Kaempferol enhances hair growth by regulating JAK3/STAT6 and TGF-β/Smad signaling in human dermal papilla cells and a C57BL/6 mousemodel
Kaempferol promotes hair growth and could be a natural treatment for hair loss.
research From hair to liver: emerging application of hair follicle mesenchymal stem cell transplantation reverses liver cirrhosis by blocking the TGF-β/Smad signaling pathway to inhibit pathological HSC activation
Hair follicle stem cell transplants can reverse liver cirrhosis by blocking harmful cell activation.
research The Role of Smads in Skin Development
Smad-4 and Smad-7 are key in hair follicle development, with other Smads being less important.
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5 / 1000+ resultscommunity My understanding of how androgenetic alopecia works (plus FIN and DUT)
community Pelage have presented only phase 2a. The rest of phase 2 for PP405 will be presented at a later medical meeting
PP405's phase 2a trial results were presented, focusing on safety and pharmacokinetics, with a future meeting planned to share the full dataset. The trial includes a randomized controlled portion and an open-label extension, with no indication of phase 2B completion.
community [Nov 2019] The peptide AC 2 isolated from Bacillus-treated Trapa japonica fruit extract rescues DHT (dihydrotestosterone)-treated human dermal papilla cells and mediates mTORC1 signaling for autophagy and apoptosis suppression
A peptide from Japanese water chestnut fruit may help with hair loss by suppressing DHT's effect on hair follicle cell death, potentially serving as a finasteride alternative. The treatment's effectiveness and safety in humans remain uncertain.
community Setipiprant/PGE2 feedbacks?
community Adipocyte lipolysis activates epithelial stem cells for hair regeneration through fatty acid metabolic signaling
Fatty acid metabolic signaling can activate epithelial stem cells for hair regeneration. Oleic and palmitoleic acids showed the best results, but practical application on humans remains uncertain.