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Research 91–120 of 1000+
- Immune cell regulation of the hair cycle
- 937 Disruption of the innate lymphoid cell network alters the hair cycle during induced anagen
- Exosomes Secreted from Adipose-Derived Stem Cells Are a Potential Treatment Agent for Immune-Mediated Alopecia
- Tracing immune cells around biomaterials with spatial anchors during large-scale wound regeneration
- An immune regulatory CCT repeat containing oligodeoxynucleotide capable of causing hair loss in male mice
- INTERFERONS IN DERMATOLOGY
- The Dynamics of the Skin’s Immune System
- Regulatory T-Cells: Potential Regulator of Tissue Repair and Regeneration
- Unraveling the ECM-Immune Cell Crosstalk in Skin Diseases
- Functional enhancement strategies for immunomodulation of mesenchymal stem cells and their therapeutic application
- Live Imaging of the Skin Immune Responses
- Plasmacytoid dendritic cells in alopecia areata: missing link?
- RNase L represses hair follicle regeneration through altered innate immune signaling
- Modulating the stem cell niche for tissue regeneration
- The Immune Functions of Keratinocytes in Skin Wound Healing
- The Modulatable Stem Cell Niche: Tissue Interactions during Hair and Feather Follicle Regeneration
- The Role of Adipocytes in Tissue Regeneration and Stem Cell Niches
- Epidermal Stem Cells in Hair Follicle Cycling and Skin Regeneration: A View From the Perspective of Inflammation
- Single-cell analysis of temporal immune cell dynamics in alopecia areata reveals a causal role for clonally expanded CD8+ T cells in disease
- Dermal T cell immunity and key regulatory signaling pathways: Implications in immune-mediated alopecia and hair regeneration
- The hair follicle as a neuro-immuno-endocrine organ: Implications in hair disorders and regenerative therapies
- Langerin+ Dendritic Cells in Cutaneous Fibrosis: The TGF-β1 Signaling Axis
- Dandruff lesional scalp skin exhibits epidermal T cell infiltration and a weakened hair follicle immune privilege
- Regulatory T Cells: the Many Faces of Foxp3
- Lichen Planopilaris and Frontal Fibrosing Alopecia as Model Epithelial Stem Cell Diseases
- Resident T cell activation leads to human hair follicle immune privilege loss ex vivo, which is prevented by the DHODH inhibitor farudodstat: relevance for alopecia areata
- Image 1_Resident T cell activation leads to human hair follicle immune privilege loss ex vivo, which is prevented by the DHODH inhibitor farudodstat: relevance for alopecia areata.pdf
- Molecular heterogeneity of quiescent melanocyte stem cells revealed by single-cell RNA-sequencing
- Editor's evaluation: Role of distinct fibroblast lineages and immune cells in dermal repair following UV radiation-induced tissue damage
- Quiescent Tissue Stem Cells Evade Immune Surveillance