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- Lineage commitment of dermal fibroblast progenitors is controlled by Kdm6b‐mediated chromatin demethylation
- The Facial Adipose Tissue: A Revision
- 223 Canonical and Dominant Negative Peroxisome Proliferator-Activated Receptor γ Isoforms are Differentially Expressed in Human Skin and Skin Appendages
- Lineage Commitment of Dermal Fibroblast Progenitors is Mediated by Chromatin De-repression
- Defining dermal adipose tissue
- Quorum sensing and other collective regenerative behavior in organ populations
- A guide to studying human dermal adipocytes in situ
- Skin aging: are adipocytes the next target?
- The metabolic syndrome- associated small G protein ARL15 plays a role in adipocyte differentiation and adiponectin secretion
- The Role of Adipocytes in Tissue Regeneration and Stem Cell Niches
- A review of adipocyte lineage cells and dermal papilla cells in hair follicle regeneration
- Adipocyte-Derived Stem and Regenerative Cells in Facial Rejuvenation
- Skin Adipocyte Stem Cell Self-Renewal Is Regulated by a PDGFA/AKT-Signaling Axis
- Compartmentalized Epidermal Activation of β-Catenin Differentially Affects Lineage Reprogramming and Underlies Tumor Heterogeneity
- The Role of Immature and Mature Adipocytes in Hair Cycling
- Eccrine sweat glands associate with the human hair follicle within a defined compartment of dermal white adipose tissue
- Diversity of Adult Stem Cell Niches in the Dermal Compartment of Skin
- Somatic stem cell heterogeneity: diversity in the blood, skin and intestinal stem cell compartments
- Adipocytes in Skin Health and Disease
- Bone vs. fat: Embryonic origin of progenitors determines response to androgen in adipocytes and osteoblasts
- Body composition changes and inhibition of fat development in vivo implicates androgen in regulation of stem cell lineage allocation
- Environment of the Anagen Follicle
- Fibroblast heterogeneity: implications for human disease
- Epidermal Wnt/β-catenin signaling regulates adipocyte differentiation via secretion of adipogenic factors
- Dermal White Adipose Tissue: A Newly Recognized Layer of Skin Innate Defense
- Macroenvironmental Regulation of Hair Cycling and Collective Regenerative Behavior
- Human Macrophages Preferentially Infiltrate the Superficial Adipose Tissue
- Dermal niche signaling and epidermal stem cells
- Hair follicles’ transit-amplifying cells govern concurrent dermal adipocyte production through Sonic Hedgehog
- Anti-inflammatory role of 15-lipoxygenase contributes to the maintenance of skin integrity in mice