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Research 271–300 of 1000+
- Cuantificación, caracterización química y biológica del contenido saponósido de Sida cordifolia L. (escobilla)
- The in vitro plasticity of hair follicle dermal and mesenchymal stem cells
- Book Reviews
- Hair Restoration: Answered Questions
- Cutaneous signals of immune system disease
- Vitamin D metabolism and function in the skin
- SOX11 and SOX4 drive the reactivation of an embryonic gene program during murine wound repair
- Spontaneous tumour regression in keratoacanthomas is driven by Wnt/retinoic acid signalling cross-talk
- Anti-aging Properties of Conditioned Media of Epidermal Progenitor Cells Derived from Mesenchymal Stem Cells
- Stem cells and aberrant signaling of molecular systems in skin aging
- Effect of bioclimatic area and season on phenolics and antioxidant activities of rosemary (<i>Rosmarinus officinalis</i> L.) leaves
- Reconstruction of the Scalp, Calvarium, and Frontal Sinus
- A comparative analysis of immune privilege in pregnancy and cancer in the context of checkpoint blockade immunotherapy
- Standards of Care for the Health of Transsexual, Transgender, and Gender-Nonconforming People, Version 7
- The human keratins: biology and pathology
- Wound Healing: A Cellular Perspective
- The Biology of Hair Follicles
- Polycystic ovary syndrome
- Steroid Sulfatase: Molecular Biology, Regulation, and Inhibition
- Pharmacology of anabolic steroids
- Evidence-Based and Potential Benefits of Metformin in the Polycystic Ovary Syndrome: A Comprehensive Review
- Aging and Immortality: Quasi-Programmed Senescence and Its Pharmacologic Inhibition
- Leucine-Rich Repeat-Containing G-Protein-Coupled Receptors as Markers of Adult Stem Cells
- Wnt Signaling in Skin Development, Homeostasis, and Disease
- Genetic, hormonal and metabolic aspects of PCOS: an update
- Polycystic Ovary Syndrome
- <i>Hoxc13</i> mutant mice lack external hair
- Cutaneous Androgen Metabolism: Basic Research and Clinical Perspectives
- Balding hair follicle dermal papilla cells contain higher levels of androgen receptors than those from non-balding scalp
- Cultured Peribulbar Dermal Sheath Cells Can Induce Hair Follicle Development and Contribute to the Dermal Sheath and Dermal Papilla