Bioinspired mechanically active adhesive dressings to accelerate wound closure
Serena O. Blacklow, Jianyu Li, Benjamin R. Freedman, Mahdi Zeidi, Chao Chen, David J. Mooney
Harvard University University of California, San Francisco Wyss Institute for Biologically Inspired Engineering University of California, Berkeley
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摘要与影响
Inspired by embryonic wound closure, we present mechanically active dressings to accelerate wound healing. Conventional dressings passively aid healing by maintaining moisture at wound sites. Recent developments have focused on drug and cell delivery to drive a healing process, but these methods are often complicated by drug side effects, sophisticated fabrication, and high cost. Here, we present novel active adhesive dressings consisting of thermoresponsive tough adhesive hydrogels that combine high stretchability, toughness, tissue adhesion, and antimicrobial function. They adhere strongly to the skin and actively contract wounds, in response to exposure to the skin temperature. In vitro and in vivo studies demonstrate their efficacy in accelerating and supporting skin wound healing. Finite element models validate and refine the wound contraction process enabled by these active adhesive dressings. This mechanobiological approach opens new avenues for wound management and may find broad utility in applications ranging from regenerative medicine to soft robotics.
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学术脉络
学科主题
生物医学Wound Healing and Treatments
Hydrogels: synthesis, properties, applications · Surgical Sutures and Adhesives
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