Mechanical and Immunological Regulation in Wound Healing and Skin Reconstruction

    Shun Kimura, Takashi Tsuji
    Studysummary This review discusses recent advances in scarless wound healing research, focusing on the roles of mechanobiology and immunology, and reports no new clinical results; the authors highlight the potential of next-generation human skin equivalents in understanding these mechanisms.
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    Research cited in this study 12

    1. Tissue-Scale Tensional Homeostasis in Skin Regulates Structure and Physiological Function Communications Biology · 2020
    2. Toward Understanding Scarless Skin Wound Healing and Pathological Scarring F1000Research · 2019
    3. Wound Healing: A Cellular Perspective Physiological Reviews · 2018
    4. Mechanical Forces in Skin Disorders Journal of Dermatological Science · 2018
    5. Next Generation Human Skin Constructs as Advanced Tools for Drug Development Experimental Biology and Medicine · 2017
    6. Bioengineering a 3D Integumentary Organ System from iPS Cells Using an In Vivo Transplantation Model Science Advances · 2016
    7. Integrin Signaling Regulates YAP/TAZ to Control Skin Homeostasis Development · 2016
    8. Skin Shedding and Tissue Regeneration in African Spiny Mice (Acomys) Nature · 2012
    9. Fully Functional Hair Follicle Regeneration Through the Rearrangement of Stem Cells and Their Niches Nature Communications · 2012
    10. New Hair From Healing Wounds Nature · 2007
    11. Wnt-Dependent De Novo Hair Follicle Regeneration in Adult Mouse Skin After Wounding Nature · 2007
    12. Integument Pattern Formation Involves Genetic and Epigenetic Controls: Feather Arrays Simulated by Digital Hormone Models ˜The œInternational journal of developmental biology · 2004