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- Feasibility of repairing skin defects by VEGF<sub>165</sub> gene‐modified iPS‐HFSCs seeded on a 3D printed scaffold containing astragalus polysaccharide
- 592 Cross-interactions of BMP and WNT signaling pathways attenuate androgen effect on HFSC differentiation
- Synergism between Tocotrienol and i-PRF in HFSCs proliferation: an in-vitro study
- Fabricating Composite Cell Sheets for Wound Healing: Cell Sheets Based on the Communication Between BMSCs and HFSCs Facilitate Full-Thickness Cutaneous Wound Healing
- Nerve-Derived Sonic Hedgehog Defines a Niche for Hair Follicle Stem Cells Capable of Becoming Epidermal Stem Cells
- Paracrine TGF-β Signaling Counterbalances BMP-Mediated Repression in Hair Follicle Stem Cell Activation
- Pioneer factors govern super-enhancer dynamics in stem cell plasticity and lineage choice
- Hair Follicle Stem Cells Provide a Functional Niche for Melanocyte Stem Cells
- A family business: stem cell progeny join the niche to regulate homeostasis
- Transforming growth factor-β in stem cells and tissue homeostasis
- Hair follicle aging is driven by transepidermal elimination of stem cells via COL17A1 proteolysis
- Stem cell dynamics, migration and plasticity during wound healing
- Lactate dehydrogenase activity drives hair follicle stem cell activation
- Genome-wide Maps of Histone Modifications Unwind In Vivo Chromatin States of the Hair Follicle Lineage
- In vivo transcriptional governance of hair follicle stem cells by canonical Wnt regulators
- A matter of life and death: self‐renewal in stem cells
- From Hair to Cornea: Toward the Therapeutic Use of Hair Follicle-Derived Stem Cells in the Treatment of Limbal Stem Cell Deficiency
- Stretching the limits: from homeostasis to stem cell plasticity in wound healing and cancer
- A Subset of TREM2+ Dermal Macrophages Secretes Oncostatin M to Maintain Hair Follicle Stem Cell Quiescence and Inhibit Hair Growth
- TGF-β Family Signaling in Epithelial Differentiation and Epithelial–Mesenchymal Transition
- Hardwiring Stem Cell Communication through Tissue Structure
- <i>Sept4/</i> ARTS Regulates Stem Cell Apoptosis and Skin Regeneration
- Corticosterone inhibits GAS6 to govern hair follicle stem-cell quiescence
- Cell Types Promoting Goosebumps Form a Niche to Regulate Hair Follicle Stem Cells
- Exosomal Micro RNAs Derived from Dermal Papilla Cells Mediate Hair Follicle Stem Cell Proliferation and Differentiation
- mTOR signaling promotes stem cell activation via counterbalancing BMP-mediated suppression during hair regeneration
- Dermal Papilla Cells Improve the Wound Healing Process and Generate Hair Bud-Like Structures in Grafted Skin Substitutes Using Hair Follicle Stem Cells
- Stem cell quiescence acts as a tumour suppressor in squamous tumours
- Hedgehog signaling maintains hair follicle stem cell phenotype in young and aged human skin
- Hair follicle stem cell cultures reveal self‐organizing plasticity of stem cells and their progeny