The Historical Studies Underpinning the Concept of Hair Follicle Neogenesis

    January 2022 in “ Springer eBooks ”
    Claire A. Higgins, Colin A.B. Jahoda
    Studysummary This review discusses the potential of the hair follicle dermis to direct hair development and explores concepts related to hair growth and androgenetic alopecia, without reporting new clinical results.
    Automatically generated from the study's abstract, not written by a person, and not a review of the full paper. Not medical advice or a treatment recommendation. Read the original study, and consult a qualified healthcare professional before changing treatment. Full disclaimer
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    Research cited in this study 52

    1. A Bald Statement: Current Approaches to Manipulate Miniaturization Focus Only on Promoting Hair Growth Experimental Dermatology · 2018
    2. Hierarchical Patterning Modes Orchestrate Hair Follicle Morphogenesis PLoS Biology · 2017
    3. Methods for the Isolation and 3D Culture of Dermal Papilla Cells from Human Hair Follicles Experimental Dermatology · 2017
    4. Epithelial-Mesenchymal Micro-Niches Govern Stem Cell Lineage Choices Cell · 2017
    5. Induction of Hair Follicle Dermal Papilla Cell Properties in Human Induced Pluripotent Stem Cell-Derived Multipotent LNGFR(+)THY-1(+) Mesenchymal Cells Scientific Reports · 2017
    6. Differential Expression Between Human Dermal Papilla Cells from Balding and Non-Balding Scalps Reveals New Candidate Genes for Androgenetic Alopecia Journal of Investigative Dermatology · 2016
    7. Fate of Prominin-1 Expressing Dermal Papilla Cells During Homeostasis, Wound Healing, and Wnt Activation Journal of Investigative Dermatology · 2015
    8. An Integrated Transcriptome Atlas of Embryonic Hair Follicle Progenitors, Their Niche, and the Developing Skin Developmental cell · 2015
    9. Oxidative Stress-Associated Senescence in Dermal Papilla Cells of Men with Androgenetic Alopecia Journal of Investigative Dermatology · 2015
    10. Hair Follicle Dermal Stem Cells Regenerate the Dermal Sheath, Repopulate the Dermal Papilla, and Modulate Hair Type Developmental Cell · 2014
    11. Macroenvironmental Regulation of Hair Cycling and Collective Regenerative Behavior Cold Spring Harbor Perspectives in Medicine · 2014
    12. Regionalization of the Skin Seminars in cell & developmental biology · 2013
    13. Distinct Fibroblast Lineages Determine Dermal Architecture in Skin Development and Repair Nature · 2013
    14. Hair Follicle Signaling Networks: A Dermal Papilla–Centric Approach Journal of Investigative Dermatology · 2013
    15. Fgf9 From Dermal γδ T Cells Induces Hair Follicle Neogenesis After Wounding Nature Medicine · 2013
    16. Position Effect on FGF13 Associated with X-Linked Congenital Generalized Hypertrichosis Proceedings of the National Academy of Sciences of the United States of America · 2013
    17. Dermal Papilla Cell Number Specifies Hair Size, Shape, and Cycling, and Its Reduction Causes Follicular Decline Development · 2013
    18. Mesenchymal–Epithelial Interactions During Hair Follicle Morphogenesis and Cycling Seminars in Cell & Developmental Biology · 2012
    19. Live Imaging of Stem Cell and Progeny Behavior in Physiological Hair-Follicle Regeneration Nature · 2012
    20. Fully Functional Hair Follicle Regeneration Through the Rearrangement of Stem Cells and Their Niches Nature Communications · 2012
    21. Polyclonal Origin and Hair Induction Ability of Dermal Papillae in Neonatal and Adult Mouse Back Skin Developmental Biology · 2012
    22. New Activators and Inhibitors in the Hair Cycle Clock: Targeting Stem Cells’ State of Competence Journal of Investigative Dermatology · 2012
    23. Dermal β-Catenin Activity in Response to Epidermal Wnt Ligands Is Required for Fibroblast Proliferation and Hair Follicle Initiation Development · 2012
    24. Clonal Growth of Dermal Papilla Cells in Hydrogels Reveals Intrinsic Differences Between Sox2-Positive and Sox2-Negative Cells In Vitro and In Vivo Journal of Investigative Dermatology · 2011
    25. Reprogramming Adult Dermis to a Neonatal State Through Epidermal Activation of Beta-Catenin Development · 2011
    26. Self-Organizing and Stochastic Behaviors During the Regeneration of Hair Stem Cells Science · 2011
    27. 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
    28. Microenvironmental Reprogramming of Thymic Epithelial Cells to Skin Multipotent Stem Cells Nature · 2010
    29. De Novo Production of Dermal Papilla Cells During the Anagen Phase of the Hair Cycle Journal of Investigative Dermatology · 2010
    30. Epidermal Patterning and Induction of Different Hair Types During Mouse Embryonic Development Birth defects research · 2009
    31. Sox2-Positive Dermal Papilla Cells Specify Hair Follicle Type in Mammalian Epidermis Development · 2009
    32. From Telogen to Exogen: Mechanisms Underlying Formation and Subsequent Loss of the Hair Club Fiber Journal of Investigative Dermatology · 2009
    33. BMP2 And BMP7 Play Antagonistic Roles In Feather Induction Development · 2008
    34. Differing Responses of Human Follicular and Nonfollicular Scalp Cells in an In Vitro Wound Healing Assay: Effects of Estrogen on Vascular Endothelial Growth Factor Secretion Wound Repair and Regeneration · 2008
    35. Dynamic Expression of the Zinc-Finger Transcription Factor Trps1 During Hair Follicle Morphogenesis and Cycling Gene Expression Patterns · 2007
    36. A Guide to Assessing Damage Response Pathways of the Hair Follicle: Lessons From Cyclophosphamide-Induced Alopecia in Mice Journal of Investigative Dermatology · 2005
    37. Genetic Variation in the Human Androgen Receptor Gene Is the Major Determinant of Common Early-Onset Androgenetic Alopecia American Journal of Human Genetics · 2005
    38. Transformation of Amnion Epithelium into Skin and Hair Follicles Differentiation · 2004
    39. Cultured Human and Rat Tooth Papilla Cells Induce Hair Follicle Regeneration and Fiber Growth Differentiation · 2004
    40. Transient Activation of Beta-Catenin Signaling in Adult Mouse Epidermis Induces New Hair Follicles, Continuous Activation Maintains Tumors Development · 2004
    41. Cell Movement in the Hair Follicle Dermis: More Than a Two-Way Street? Journal of Investigative Dermatology · 2003
    42. Molecular Control of Epithelial-Mesenchymal Interactions During Hair Follicle Cycling ˜The œjournal of investigative dermatology. Symposium proceedings/˜The œJournal of investigative dermatology symposium proceedings · 2003
    43. Plasticity and Cytokinetic Dynamics of the Hair Follicle Mesenchyme During the Hair Growth Cycle: Implications for Growth Control and Hair Follicle Transformations ˜The œjournal of investigative dermatology. Symposium proceedings/˜The œJournal of investigative dermatology symposium proceedings · 2003
    44. Molecular Mechanisms Regulating Hair Follicle Development ˜The œjournal of investigative dermatology/Journal of investigative dermatology · 2002
    45. Possible Mechanisms of Miniaturization During Androgenetic Alopecia or Pattern Hair Loss Journal of The American Academy of Dermatology · 2001
    46. The Role of the Hairless (Hr) Gene in the Regulation of Hair Follicle Catagen Transformation American Journal Of Pathology · 1999
    47. Human Hair Follicle Regeneration Following Amputation and Grafting into the Nude Mouse Journal of Investigative Dermatology · 1996
    48. A Comparison of the Culture and Growth of Dermal Papilla Cells from Hair Follicles from Non-Balding and Balding (Androgenetic Alopecia) Scalp British Journal of Dermatology · 1996
    49. Sheep Vibrissa Dermal Papillae Induce Hair Follicle Formation in Heterotypic Skin Equivalents British Journal of Dermatology · 1994
    50. Retinoic Acid and Mouse Skin Morphogenesis: Expression Pattern of Retinoic Acid Receptor Genes During Hair Vibrissa Follicle, Plantar, and Nasal Gland Development Journal of Investigative Dermatology · 1994
    51. Induction of Follicle Formation and Hair Growth by Vibrissa Dermal Papillae Implanted into Rat Ear Wounds: Vibrissa-Type Fibres Are Specified Development · 1992
    52. Physiology of Development of the Feather V: Experimental Morphogenesis Physiological zoology · 1941

    Related research 8

    1. Reprogramming of Three-Dimensional Microenvironments for In Vitro Hair Follicle Induction bioRxiv (Cold Spring Harbor Laboratory) · 2022
    2. Hedgehog Stimulates Hair Follicle Neogenesis by Creating Inductive Dermis During Murine Skin Wound Healing Journal of Investigative Dermatology · 2019
    3. Hedgehog Stimulates Hair Follicle Neogenesis by Creating Inductive Dermis During Murine Skin Wound Healing Nature Communications · 2018
    4. Interrogating the Integument: The Role of the Epidermis in Hair Induction Experimental dermatology · 2014
    5. Abstract P35 Plastic and Reconstructive Surgery · 2014
    6. Fgf9 From Dermal γδ T Cells Induces Hair Follicle Neogenesis After Wounding Nature Medicine · 2013
    7. Control of Hair Follicle Cell Fate by Underlying Mesenchyme Through a CSL–Wnt5a–FoxN1 Regulatory Axis Genes & development · 2010
    8. Molecular Control of Epithelial-Mesenchymal Interactions During Hair Follicle Cycling ˜The œjournal of investigative dermatology. Symposium proceedings/˜The œJournal of investigative dermatology symposium proceedings · 2003