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      Bioactives in Nutricosmetics: A Focus on Caffeine from Tea to Coffee

      research Bioactives in Nutricosmetics: A Focus on Caffeine from Tea to Coffee

      August 2024 in “Cosmetics”
      This review highlights caffeine's diverse benefits in cosmetics and nutricosmetics, noting its antioxidant properties, ability to treat skin disorders like androgenic alopecia, and potential to enhance sunscreen effectiveness, though penetration into deeper skin layers remains challenging.

      research An Insight on Ellagic Acid Formulations for the Management of Skin Diseases

      1 citations , November 2025 in “Molecules”
      This review highlights the potential of ellagic acid for treating various skin conditions due to its antioxidant, anti-inflammatory, and depigmenting properties, but notes that novel formulations are needed to overcome its poor solubility and skin permeability to enhance clinical efficacy.

      research Natural Compounds and Biomimetic Engineering to Influence Fibroblast Behavior in Wound Healing

      16 citations , March 2024 in “International Journal of Molecular Sciences”
      This review highlights how natural compounds can enhance wound healing by influencing fibroblast behavior and discusses innovative biomimetic engineering and delivery methods. This source emphasizes combining traditional and modern approaches for effective and scar-free healing, while noting challenges in clinical translation.
      From Plants to Wound Dressing and Transdermal Delivery of Bioactive Compounds

      research From Plants to Wound Dressing and Transdermal Delivery of Bioactive Compounds

      July 2023 in “Plants”
      This review highlights the potential of plant-derived natural compounds as biocompatible and biodegradable materials in dermal and transdermal delivery systems, emphasizing their unexplored benefits and detailing recent advances in isolation techniques and drug delivery technologies.

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      community Keratin microspheres - breakthrough

       14 upvotes 2 years ago
      A gel of keratin microspheres promotes hair follicle growth, showing similar effectiveness to minoxidil in mice. The treatment activates hair growth pathways and reduces inflammation, with potential applications in drug delivery for hair-related disorders.