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Research 30 of 895
- Garlic Exosomes Promote Hair Growth Through the Wnt/β-catenin Pathway and Growth Factors
- Ayurvedic Medicinal Plants and Plant-Derived Extracellular Vesicles: Current Evidence and Future Perspectives
- ROS-scavenging microneedles loaded with <i>Portulaca oleracea</i> L.-derived exosomes for atopic dermatitis therapy
- Plant-derived exosome-like nanovesicles: a novel therapeutic perspective for skin diseases
- Plant-Derived Exosomes: Nano-Inducers of Cross-Kingdom Regulations
- Exosomes Secreted from Adipose-Derived Stem Cells Are a Potential Treatment Agent for Immune-Mediated Alopecia
- Mechanistic Insights into Plant-Derived Exosomes, Their Cross-Kingdom Effects, and Potential Biomedical Applications in Skin Wounds Repair
- Stem Cell-Derived and Plant-Derived Exosomes: Promising Therapeutics for Skin Healing and Regeneration
- Traditional Chinese medicine derived exosome-like nanovesicles in wound repair and skin regeneration
- Platelet-rich plasma-derived exosomes stimulate hair follicle growth through activation of the Wnt/β-Catenin signaling pathway
- Gentamicin-loaded exosomes from IMMUNEPOTENT CRP enhance healing of infected diabetic wound in mice
- Hair Regeneration Methods Using Cells Derived from Human Hair Follicles and Challenges to Overcome
- The Potential Application of Exosomes as Therapeutic Agents, Carriers, and Biomarkers in Skin Diseases
- Herbal Approaches for the Management of Premature Hair Greying: Mechanisms, Phytoconstituents and Delivery Strategies
- Exploring the reality of exosomes in dermatology
- Past, Present, and Future of Plant-Derived Extracellular Vesicles in Biomedical Applications
- Citrus limon-Derived Extracellular Vesicles Promote Hair Growth
- Engineered Exosomes Co-Delivering EGF and FGF Ameliorate Androgenetic Alopecia in a Mouse Model
- Macrophage-Derived Extracellular Vesicle Promotes Hair Growth
- Engineered Exosomes Biopotentiated Hydrogel Promote Hair Follicle Growth via Reprogramming the Perifollicular Microenvironment
- Gallic Acid Nanocrystal Hydrogel: A Novel Strategy for Promoting Wound Healing and Inhibiting Scar Formation
- Green Nanodrugs: Research Progress and Challenges of Plant-Derived Nanovesicles in Tumor Treatment
- The Future of Alopecia Treatment: Plant Extracts, Nanocarriers, and 3D Bioprinting in Focus
- Natural Compounds and Biomimetic Engineering to Influence Fibroblast Behavior in Wound Healing
- Evaluation of the Hair Growth-Promoting Effects of Combined Treatment with Hair Growth Stimulants
- Recent Advances in the Role of Fibroblast Growth Factors in Hair Follicle Growth
- The multifaceted regulatory effect of icariin on macrophages: a mini-review
- Bioinspired engineering of Polygonum multiflorum root nanovesicles regulates dermal papilla cells in vitro and stimulates human hair follicle growth ex vivo
- Biopolymer-Based Hydrogels for Wound Healing: Advances in Cellulose, Chitosan, Alginate, and Hyaluronic Acid from Design to Clinical Translation
- Pharmacological and Biological Efficacy of Chitosan-Based Materials