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Ultrasound-Responsive Hydrogels for Accelerated Wound Healing through Programmable Microenvironment Modulation
Yue Ming1,2, Weixing Chen1, Bo Jia2
1School of Materials Science and Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai200237, China.
Abstract:
Wound healing involving persistent inflammation and fibrosis is driven by reactive oxygen species (ROS) and Yes-associated protein (YAP), often leading to scars. A polyvinyl alcohol/alginate ultrasound-responsive hydrogel was developed, containing free epigallocatechin gallate (EGCG) in the matrix and EGCG-verteporfin (VP) nanoparticles embedded in the hydrogel network. Free EGCG is released rapidly, whereas EGCG-VP nanoparticles release is triggered by ultrasound. In vitro, this system reduced ROS by ∼69%. Western blot revealed ∼71% reduction in α-smooth muscle actin and ∼47% in YAP. In vivo, it promoted wound closure in rats. This system enables programmable modulation of the wound microenvironment.