The Global Regulatory Logic Of Organ Regeneration: Circuitry Lessons From Skin And Its Appendages

    Zhicao Yue, Mingxing Lei, Ralf Paus, Cheng‐Ming Chuong
    Studysummary This review discusses molecular regulatory circuitry in organ regeneration, using skin regeneration examples, and reports no new experimental results; the authors propose that understanding this circuitry might aid in developing therapeutic strategies.
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    Research cited in this study 44

    1. Hair Follicle Immune Privilege and Its Collapse in Alopecia Areata Experimental dermatology · 2020
    2. Through the Lens of Hair Follicle Neogenesis: A New Focus on Mechanisms of Skin Regeneration After Wounding Seminars in Cell & Developmental Biology · 2019
    3. CDK4/6 Inhibition Mitigates Stem Cell Damage in a Novel Model for Taxane-Induced Alopecia EMBO Molecular Medicine · 2019
    4. Deciphering the Molecular Morphology of the Human Hair Cycle: Wnt Signalling During the Telogen–Anagen Transformation British Journal of Dermatology · 2019
    5. Injury Modifies the Fate of Hair Follicle Dermal Stem Cell Progeny in a Hair Cycle-Dependent Manner Experimental dermatology · 2019
    6. A Subset of TREM2+ Dermal Macrophages Secretes Oncostatin M to Maintain Hair Follicle Stem Cell Quiescence and Inhibit Hair Growth Cell Stem Cell · 2019
    7. Anagen Hair Follicle Repair: Timely Regenerative Attempts from Plastic Extra-Bulge Epithelial Cells Experimental Dermatology · 2019
    8. Tissue Engineering of Human Hair Follicles Using a Biomimetic Developmental Approach Nature Communications · 2018
    9. Hedgehog Stimulates Hair Follicle Neogenesis by Creating Inductive Dermis During Murine Skin Wound Healing Nature Communications · 2018
    10. Identifying Novel Strategies for Treating Human Hair Loss Disorders: Cyclosporine A Suppresses the Wnt Inhibitor, SFRP1, in the Dermal Papilla of Human Scalp Hair Follicles PLOS Biology · 2018
    11. Diverse Mechanisms for Endogenous Regeneration and Repair in Mammalian Organs Nature · 2018
    12. Macrophages Promote Wound-Induced Hair Follicle Regeneration in a CX3CR1- and TGF-β1-Dependent Manner Journal of Investigative Dermatology · 2018
    13. Hair Disorders in Patients with Cancer Journal of The American Academy of Dermatology · 2018
    14. Emerging Nonmetabolic Functions of Skin Fat Nature Reviews Endocrinology · 2018
    15. Hair Follicle Stem Cell Fate Is Dependent on Chromatin Remodeling Capacity Following Low-Dose Radiation Stem cells · 2017
    16. Mobilizing Transit-Amplifying Cell-Derived Ectopic Progenitors Prevents Hair Loss from Chemotherapy or Radiation Therapy Cancer Research · 2017
    17. Regeneration Genetics: Understanding Tissue Regeneration Mechanisms in Vertebrates Annual Review of Genetics · 2017
    18. Self-Organization Process in Newborn Skin Organoid Formation Inspires Strategy to Restore Hair Regeneration of Adult Cells Proceedings of the National Academy of Sciences of the United States of America · 2017
    19. The Modulatable Stem Cell Niche: Tissue Interactions During Hair and Feather Follicle Regeneration Journal of Molecular Biology · 2015
    20. Feather on the Cap of Medicine Journal of Investigative Dermatology · 2015
    21. Hair Follicle Dermal Stem Cells Regenerate the Dermal Sheath, Repopulate the Dermal Papilla, and Modulate Hair Type Developmental Cell · 2014
    22. Resting No More: Redefining Telogen, the Maintenance Stage of the Hair Growth Cycle Biological Reviews · 2014
    23. Development, Regeneration, and Evolution of Feathers Annual Review of Animal Biosciences · 2014
    24. Testing Chemotherapeutic Agents in the Feather Follicle Identifies a Selective Blockade of Cell Proliferation and a Key Role for Sonic Hedgehog Signaling in Chemotherapy-Induced Tissue Damage Journal of Investigative Dermatology · 2014
    25. Microenvironmental Reprogramming by Three-Dimensional Culture Enables Dermal Papilla Cells to Induce De Novo Human Hair-Follicle Growth Proceedings of the National Academy of Sciences of the United States of America · 2013
    26. Fgf9 From Dermal γδ T Cells Induces Hair Follicle Neogenesis After Wounding Nature Medicine · 2013
    27. Pathobiology of Chemotherapy-Induced Hair Loss The Lancet Oncology · 2013
    28. Sprouty/FGF Signaling Regulates Proximal–Distal Feather Morphology and Dermal Papillae Size Developmental Biology · 2012
    29. Shh Maintains Dermal Papilla Identity and Hair Morphogenesis via a Noggin–Shh Regulatory Loop Genes & Development · 2012
    30. Physiological Regeneration of Skin Appendages and Implications for Regenerative Medicine Physiology · 2012
    31. Hair Cycle Resting Phase Is Regulated by Cyclic Epithelial FGF18 Signaling Journal of Investigative Dermatology · 2012
    32. Bald Scalp in Men with Androgenetic Alopecia Retains Hair Follicle Stem Cells but Lacks CD200-Rich and CD34-Positive Hair Follicle Progenitor Cells Journal of Clinical Investigation · 2011
    33. The Cycling Hair Follicle as an Ideal Systems Biology Research Model Experimental Dermatology · 2010
    34. Beta-Catenin Activity in the Dermal Papilla Regulates Morphogenesis and Regeneration of Hair Developmental Cell · 2010
    35. Modulation of Chemotherapy-Induced Human Hair Follicle Damage by 17-Beta Estradiol and Prednisolone: Potential Stimulators of Normal Hair Regrowth by Dystrophic Catagen Promotion? Journal of Investigative Dermatology · 2008
    36. Dissecting the Impact of Chemotherapy on the Human Hair Follicle ˜The œAmerican journal of pathology · 2007
    37. Wnt-Dependent De Novo Hair Follicle Regeneration in Adult Mouse Skin After Wounding Nature · 2007
    38. Molecular Dissection of Mesenchymal–Epithelial Interactions in the Hair Follicle PLoS biology · 2005
    39. A Guide to Assessing Damage Response Pathways of the Hair Follicle: Lessons From Cyclophosphamide-Induced Alopecia in Mice Journal of Investigative Dermatology · 2005
    40. Morpho-Regulation of Ectodermal Organs ˜The œAmerican journal of pathology · 2004
    41. Topical Estrogen Accelerates Hair Regrowth in Mice After Chemotherapy-Induced Alopecia by Favoring the Dystrophic Catagen Response Pathway to Damage Journal of Investigative Dermatology · 2004
    42. Conditional Disruption of Hedgehog Signaling Pathway Defines Its Critical Role in Hair Development and Regeneration Journal of Investigative Dermatology · 2000
    43. Chemotherapy-Induced Alopecia in Mice: Induction by Cyclophosphamide, Inhibition by Cyclosporine A, and Modulation by Dexamethasone PubMed · 1994
    44. Physiology of Development of the Feather V: Experimental Morphogenesis Physiological zoology · 1941