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Research 91–120 of 1000+
- The Contributory Roles of Th17 Lymphocyte and Cytotoxic T Lymphocyte at the Hair Bulge Region as Well as the Hair Bulb Area in the Chronic Alopecia Areata Patients
- Stepwise acquisition of unique epigenetic signatures during differentiation of tissue Treg cells
- Th22 is the effector cell of thymosin β15-induced hair regeneration in mice
- Alopecia Areata, Primary Sclerosing Cholangitis, and Ulcerative Colitis: Autoimmunity and Apoptosis as Common Links?
- Teriflunomide and Its Mechanism of Action in Multiple Sclerosis
- Langerin+ Dendritic Cells in Cutaneous Fibrosis: The TGF-β1 Signaling Axis
- Tp63-expressing adult epithelial stem cells cross lineages boundaries revealing latent hairy skin competence
- Role of β-Catenin Activation Levels and Fluctuations in Controlling Cell Fate
- The role of B cell-activating factor system in autoimmune diseases: mechanisms, disease implications, and therapeutic advances
- Blocking Potassium Channels (Kv1.3): A New Treatment Option for Alopecia Areata?
- Repigmentation Competence in Vitiligo: Integrating Immune, Regulatory, Regenerative, and Microenvironmental Axes
- Targeting the Hypoxic Microenvironment in Cutaneous Chronic Graft-Versus-Host Disease through PI3Kδ Inhibition
- Prevention of Murine Sclerodermatous Chronic Graft-Versus-Host Disease by Rapamycin
- Frontiers in alopecia areata pathobiology research
- Deciphering the Complex Immunopathogenesis of Alopecia Areata
- From mechanisms to therapies: current advances breakthroughs in alopecia areata immunopathology
- Alopecia Areata and Atopic Dermatitis: Common Mechanisms and Emerging Therapeutics
- What's new in the pathogeneses and triggering factors of bullous pemphigoid
- Hair regrowth in alopecia areata and re‐pigmentation in vitiligo in response to treatment: Commonalities and differences
- Transcutaneous Auricular Vagus Nerve Stimulation Alleviates Monobenzone-Induced Vitiligo in Mice
- Novel potential therapeutic targets of alopecia areata
- Stress-induced sympathetic hyperactivation drives hair follicle necrosis to trigger autoimmunity
- Hair follicle immune privilege and its collapse in alopecia areata
- Alopecia Areata: Current Treatments and New Directions
- Developing stratified epithelia: lessons from the epidermis and thymus
- Selective Janus kinase 1 inhibition resolves inflammation and restores hair growth offering a viable treatment option for alopecia areata
- Lrig1-expression confers suppressive function to CD4+ cells and is essential for averting autoimmunity via the Smad2/3/Foxp3 axis
- Immune niches for hair follicle development and homeostasis
- A transcriptomic map of murine and human alopecia areata
- Commensal Microbes and Hair Follicle Morphogenesis Coordinately Drive Treg Migration into Neonatal Skin