Basonuclin as a Cell Marker in the Formation and Cycling of the Murine Hair Follicle

    October 1998 in “ Differentiation ”
    Lorin Weiner, Howard Green
    Studysummary Basonuclin helps identify and track hair follicle development and cycling in mice.
    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
    Read the full study on sciencedirect.com →
    Discuss this study in the Community →

    Research cited in this study 17

    1. Transforming Growth Factor-β Receptor Type I and Type II Expression During Murine Hair Follicle Development and Cycling Journal of Investigative Dermatology · 1997
    2. Sequences and Differential Expression of Three Novel Human Type-II Hair Keratins Differentiation · 1997
    3. Genomic Characterization of the Human Type I Cuticular Hair Keratin hHa2 and Identification of an Adjacent Novel Type I Hair Keratin Gene hHa5 Journal of Investigative Dermatology · 1996
    4. Association of Basonuclin With the Ability of Keratinocytes to Multiply and Absence of Terminal Differentiation The Journal of Cell Biology · 1994
    5. Cells Within the Bulge Region of Mouse Hair Follicle Transiently Proliferate During Early Anagen: Heterogeneity and Functional Differences of Various Hair Cycles Differentiation · 1994
    6. Mouse Notch: Expression in Hair Follicles Correlates with Cell Fate Determination ˜The œjournal of cell biology/˜The œJournal of cell biology · 1993
    7. The Secret Life of the Hair Follicle Trends in genetics · 1992
    8. Expression of Keratin K14 in the Epidermis and Hair Follicle: Insights Into Complex Programs of Differentiation The Journal of Cell Biology · 1989
    9. A New Look Into an Old Problem: Keratins as Tools to Investigate Determination, Morphogenesis, and Differentiation in Skin Genes & Development · 1989
    10. Patterns of Expression of Trichocytic and Epithelial Cytokeratins in Mammalian Tissues Differentiation · 1988
    11. Patterns of Expression of Trichocytic and Epithelial Cytokeratins in Mammalian Tissues II: Concomitant and Mutually Exclusive Synthesis of Trichocytic and Epithelial Cytokeratins in Diverse Human and Bovine Tissues (Hair Follicle, Nail Bed and Matrix, Lingual Papilla, Thymic Reticulum) Differentiation · 1988
    12. Patterns of Expression of Trichocytic and Epithelial Cytokeratins in Mammalian Tissues: Human and Bovine Hair Follicles Differentiation · 1988
    13. Keratins of the Human Hair Follicle: Hyperproliferative Keratins Consistently Expressed in Outer Root Sheath Cells In Vivo and In Vitro Differentiation · 1987
    14. Acidic and Basic Hair/Nail (Hard) Keratins: Their Colocalization in Upper Cortical and Cuticle Cells of the Human Hair Follicle and Their Relationship to Soft Keratins ˜The œjournal of cell biology/˜The œJournal of cell biology · 1986
    15. Different Keratin Polypeptides in Epidermis and Other Epithelia of Human Skin: A Specific Cytokeratin of Molecular Weight 46,000 in Epithelia of the Pilosebaceous Tract and Basal Cell Epitheliomas The Journal of Cell Biology · 1982
    16. Outer Root Sheath Keratinization in Anagen and Catagen of the Mammalian Hair Follicle: A Seventh Distinct Type of Keratinization in the Hair Follicle - Trichilemmal Keratinization PubMed · 1981
    17. Growth of the Hair Physiological Reviews · 1954

    Related research 6

    1. Possible Cellular Communication with Human Follicle Dermal Papilla Cells via Secretions from Human Hair Follicle Keratinocytes Journal of St. Marianna University · 2022
    2. Hair Follicle Expression of 1,25-Dihydroxyvitamin D3 Receptors During the Murine Hair Cycle British Journal of Dermatology · 2006
    3. Expression of E6 and E7 Papillomavirus Oncogenes in the Outer Root Sheath of Hair Follicles Extends the Growth Phase and Bypasses Resting at Telogen PubMed · 2000
    4. Basonuclin as a Cell Marker in the Formation and Cycling of the Murine Hair Follicle Differentiation · 1998
    5. An Estrogen Receptor Pathway Regulates the Telogen-Anagen Hair Follicle Transition and Influences Epidermal Cell Proliferation Proceedings of the National Academy of Sciences of the United States of America · 1996
    6. Effects of Epidermal Growth Factor on the Morphology and Patterns of DNA Synthesis in Isolated Human Hair Follicles ˜The œjournal of investigative dermatology/Journal of investigative dermatology · 1994