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Research 31–60 of 787
- Regulatory T Cells: the Many Faces of Foxp3
- Stimulation of Hair Growth by Small Molecules that Activate Autophagy
- Overactivated sonic hedgehog signaling aggravates intrauterine adhesion via inhibiting autophagy in endometrial stromal cells
- Birt–Hogg–Dubé syndrome: from gene discovery to molecularly targeted therapies
- Human TSC2-null fibroblast-like cells induce hair follicle neogenesis and hamartoma morphogenesis
- Premature aging syndromes: From patients to mechanism
- Disruption of tubular Flcn expression as a mouse model for renal tumor induction
- Drug repositioning using <i>in silico</i> compound profiling
- Sesn2/AMPK/mTOR signaling mediates balance between survival and apoptosis in sensory hair cells under stress
- Engineered Hair Follicle Mesenchymal Stem Cells Overexpressing Controlled-Release Insulin Reverse Hyperglycemia in Mice with Type l Diabetes
- Cutaneous Toxicities From Transplantation-Related Medications
- mTORC1 activity negatively regulates human hair follicle growth and pigmentation
- The PI3K-Akt-mTOR and Associated Signaling Pathways as Molecular Drivers of Immune-Mediated Inflammatory Skin Diseases: Update on Therapeutic Strategy Using Natural and Synthetic Compounds
- Impact of mTORC1 inhibition on keratinocyte proliferation during skin tumor promotion in wild‐type and BK5.Akt<sup>WT</sup> mice
- Shedding Light on the Effects of Calorie Restriction and Its Mimetics on Skin Biology
- Folliculin Deficient Renal Cancer Cells Show Higher Radiosensitivity through Autophagic Cell Death
- Dermatologic Care of the Transplant Patient
- 602 mTORC1 activity controls human scalp hair follicle pigmentation and growth
- A97 TACROLIMUS-ASSOCIATED HEMOLYTIC UREMIC SYNDROME IN A PEDIATRIC LIVER TRANSPLANT RECIPIENT
- Emerging pharmacotherapies for Androgenetic Alopecia
- ТУБЕРОЗНЫЙ СКЛЕРОЗ (БУРНЕВИЛЛЯ-ПРИНГЛА). ОБЗОР ЛИТЕРАТУРЫ
- Preliminary study on platelet-rich plasma enhancing autophagy level and promoting hair growth in androgenetic alopecia model mice
- Corticotropin-releasing hormone inhibits autophagy by suppressing PTEN to promote apoptosis in dermal papilla cells
- Nanoparticle Adjuvants Incorporating Haptens Drive Potent Immune Tolerance to Accelerate Hair Regrowth
- Corticotropin-releasing hormone inhibits autophagy by suppressing PTEN to promote apoptosis in dermal papilla cells
- Corticotropin-releasing hormone inhibits autophagy by suppressing PTEN to promote apoptosis in dermal papilla cells
- 686 Topical melatonin unfolds differential anti-aging effects in human skin by inhibiting mTORC1 activity via TSC2 stimulation
- Autophagy induces hair follicle stem cell activation and hair follicle regeneration by regulating glycolysis
- Activating autophagy promotes skin regeneration induced by mechanical stretch during tissue expansion
- Autophagy induces hair follicle stem cell activation and hair follicle regeneration by regulating glycolysis