Image

    Embryonic NIPP1 Depletion in Keratinocytes Triggers a Cell-Cycle Arrest and Premature Senescence in Adult Mice

    Marloes Jonkhout, Tijs Vanhessche, Mónica Ferreira … Mathieu Bollen
    Studysummary In this study, the deletion of NIPP1 in keratinocytes led to chronic skin inflammation and epidermal changes in mice, with early cell-cycle arrest and premature senescence observed, potentially contributing to reduced mutagen sensitivity.
    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 jidonline.org →
    Discuss this study in the Community →

    Research cited in this study 9

    1. Studying Hair Growth Cycle and Its Effects on Mouse Skin Journal of Investigative Dermatology · 2023
    2. SIRT7 Activates Quiescent Hair Follicle Stem Cells to Ensure Hair Growth in Mice EMBO journal · 2020
    3. Phosphatase Regulator NIPP1 Restrains Chemokine-Driven Skin Inflammation ˜The œjournal of investigative dermatology/Journal of investigative dermatology · 2020
    4. New Activators and Inhibitors in the Hair Cycle Clock: Targeting Stem Cells’ State of Competence Journal of Investigative Dermatology · 2012
    5. Hair Cycle Resting Phase Is Regulated by Cyclic Epithelial FGF18 Signaling Journal of Investigative Dermatology · 2012
    6. EZH1 and EZH2 Co-Govern Histone H3K27 Trimethylation and Are Essential for Hair Follicle Homeostasis and Wound Repair Genes & Development · 2011
    7. Epidermal Patterning and Induction of Different Hair Types During Mouse Embryonic Development Birth defects research · 2009
    8. The Hair Follicle as a Dynamic Mini-Organ Current Biology · 2009
    9. The Hair Cycle Journal of Cell Science · 2006

    Related research 6

    1. Morphogenesis, Growth Cycle, and Molecular Regulation of Hair Follicles Frontiers in Cell and Developmental Biology · 2022
    2. Dermal Papilla-Derived Wnt Ligands Are Required for Adult Hair Follicle Growth Journal of Investigative Dermatology · 2016
    3. Putting the Human Hair Follicle Cycle on the Map Journal of Investigative Dermatology · 2016
    4. Hair Cycle Resting Phase Is Regulated by Cyclic Epithelial FGF18 Signaling Journal of Investigative Dermatology · 2012
    5. Biology of the Hair Follicle: The Basics Seminars in Cutaneous Medicine and Surgery · 2006
    6. 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