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research Possible Role of ILC1 in the Pathogenesis of Alopecia Areata
ILC1 cells contribute to hair loss in alopecia areata.
research Vitamin D and Alopecia Areata: Possible Roles in Pathogenesis and Potential Implications for Therapy
Vitamin D might be involved in the development of alopecia areata and could help in its treatment.
research Elucidating the Role of the Skin and Gut Microbiome in the Development and Pathogenesis of Alopecia Areata
Differences in skin and gut bacteria may contribute to alopecia areata.
research Alopecia Areata and the Gut: The Link Opens Up for Novel Therapeutic Interventions
Gut health may influence Alopecia Areata, suggesting new treatments.
research Does Complement Have a Role in the Pathogenesis of Alopecia Areata?
The complement system might be involved in the development of alopecia areata and could lead to new treatments.
research Cytokine Targeted Therapeutics for Alopecia Areata: Lessons from Atopic Dermatitis and Other Inflammatory Skin Diseases
Targeted cytokine treatments may help with alopecia areata, but more research is needed.
research Pigmentation and Autophagy in Alopecia Areata Pathogenesis
Reduced Stx17 expression may contribute to Alopecia Areata.
research Exploring the Role of MicroRNAs in Alopecia Areata
Certain microRNAs may protect against hair loss in alopecia areata and could be potential treatment targets.
research Understanding Autoimmunity of Vitiligo and Alopecia Areata
Both vitiligo and alopecia areata involve an immune response triggered by stress and specific genes, with treatments targeting this pathway showing potential.
research The Pathogenesis of Alopecia Areata
Alopecia areata is likely caused by a combination of genetic factors and immune system dysfunction, and may represent different diseases with various causes.
research The Etiology and Pathogenesis of Alopecia Areata
The cause of alopecia areata is likely a mix of genetics, immune system issues, and environmental factors, with more research needed to understand it fully.