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Research 61–90 of 77
- Double Knockdown of the Androgen Receptor Target Genes DKK1 and SFRP1 Does Not Potentiate the Hair Growth-Promoting Effect of SFRP1 Silencing in Healthy Human Hair Follicles Ex Vivo
- Regenerative Strategies for Androgenetic Alopecia: Evidence, Mechanisms, and Translational Pathways
- Advancements in Bioactive Compounds and Therapeutic Agents for Alopecia: Trends and Future Perspectives
- Technological Advances in Anti-hair Loss and Hair Regrowth Cosmeceuticals: Mechanistic Breakthroughs and Industrial Prospects Driven by Multidisciplinary Collaborative Innovation
- Androgenetic Alopecia: An Update on Pathogenesis and Pharmacological Treatment
- Recent Advances in Drug Development for Hair Loss
- Molecular Signaling Pathways in Wound-Induced Hair-Follicle Neogenesis
- Immune and Non-immune Interactions in the Pathogenesis of Androgenetic Alopecia
- Comparative study between fractional CO2 laser alone versus fractional CO2 laser combined with topical dutasteride in treatment of male androgenic alopecia
- The latest reports on androgenetic alopecia
- <i>In Vitro</i> and <i>In Vivo</i> Models for the Development of Hair Growth Materials By Regulating the <i>β</i>-Catenin Signaling Pathways
- Serum lipidomic changes and sex differences in androgenetic alopecia
- Serum Zinc Concentration in Patients with Alopecia Areata
- Promotion of Hair Regrowth in Androgenetic Alopecia with Supplemented Erzhi Wan: Exploring Its Mechanism Using Network Pharmacology and Molecular Docking
- ISX9, a small molecule targeting Axin, activates Wnt/β-catenin signaling and promotes hair regrowth
- Immune-Epithelial Cross Talk in Regeneration and Repair
- Table_1_Bioinformatics and Network Pharmacology Identify the Therapeutic Role and Potential Mechanism of Melatonin in AD and Rosacea.xlsx
- CXXC5 Mediates DHT-Induced Androgenetic Alopecia via PGD2
- Single-cell analysis reveals fibroblast heterogeneity and myeloid-derived adipocyte progenitors in murine skin wounds
- KY19382, a novel activator of Wnt/β‐catenin signalling, promotes hair regrowth and hair follicle neogenesis
- KY19382, a novel activator of Wnt/β-catenin signaling, promotes hair re-growth and hair follicle neogenesis
- Epidermal Stem Cells in Hair Follicle Cycling and Skin Regeneration: A View From the Perspective of Inflammation
- β-Catenin Signaling Evokes Hair Follicle Senescence by Accelerating the Differentiation of Hair Follicle Mesenchymal Progenitors
- Revolutionary Approaches to Hair Regrowth: Follicle Neogenesis, Wnt/ß-Catenin Signaling, and Emerging Therapies
- The Biology and Genomics of Human Hair Follicles: A Focus on Androgenetic Alopecia
- Wnt/β-catenin signalling: function, biological mechanisms, and therapeutic opportunities
- Scarless wound healing: finding the right cells and signals
- Recent Advances in the Role of Fibroblast Growth Factors in Hair Follicle Growth
- Delivery Strategies of siRNA Therapeutics for Hair Loss Therapy
- Targeting of CXXC5 by a Competing Peptide Stimulates Hair Regrowth and Wound-Induced Hair Neogenesis