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◆ Journal of Controlled Release2025-12-17· Chemistry

Combined M1 macrophage inhibition and thermotherapy for controlled fibroplasia and accelerated wound repair via an oxygenating ROS-responsive hydrogel

Yuewen Zhu, Jiachen Li, Samin Abbaszadeh, Fatemeh Ghorbani-Bidkorpeh, Gésinda Geertsema‐Doornbusch, Idaira Pacheco‐Fernández, Raquel Bártolo, Marc C. A. Stuart, Wenguo Cui, Hélder A. Santos, Mohammad‐Ali Shahbazi

原始摘要(英文原文)· Original abstract
crosslinked Farsi gum-hyaluronic acid (FH) network. The hydrogel exhibits excellent photothermal conversion efficiency, catalase-like activity, and antioxidant capacity, enabling synergistic redox modulation and immune microenvironment regulation. Taurine is responsively released under high reactive oxygen species (ROS) conditions, contributing to the attenuation of inflammation and the suppression of macrophages M1 phenotype polarization. Moreover, the near-infrared (NIR)-responsive property allows mild photothermal therapy (PTT) to further stimulate fibroblast migration and tissue remodeling. In vivo, FH-PMC-T combined with NIR irradiation accelerates wound closure and enhances both structural and functional skin regeneration. This study proposes a hybrid photothermal-immunoregulatory hydrogel that orchestrates oxygenation, redox balance, and immune modulation for accelerated and restorative wound repair.
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Combined M1 macrophage inhibition and thermotherapy for controlled fibroplasia and accelerated wound repair via an oxygenating ROS-responsive hydrogel — 科研速览 Science Skim