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◆ ACS applied materials & interfaces2026-08-26

Pop Rocks-Inspired Bubble Driven Exosome Propulsion via Microneedles for Synergistic Wound Healing.

Lei Wu, Weigang Hu, Liwei Zhang, Bo Zhou, Qiang He, Haifeng Ye, Wenke Guo

原始摘要(英文原文)· Original abstract
Chronic nonhealing wounds remain a critical clinical challenge due to persistent bacterial infection, tissue hypoxia, and impaired cellular regeneration. Herein, inspired by the "popping" mechanism of Pop Rocks candy, we developed a multifunctional microneedle (MN) patch (Exo/ONB-MN) that integrates antibacterial hyperbranched polymer (HBPLT), mesenchymal stem cell-derived exosomes (MSC-Exos), and oxygen nanobubbles (ONBs) into a single dissolvable platform. The HBPLT component provides potent broad-spectrum antibacterial activity through physical membrane disruption. Upon application, ONBs embedded in the needle bases explosively release oxygen, generating a directional pressure wave that actively propels exosomes from the needle tips deep into the wound bed-a mechanism termed bubble-driven exosome propulsion. Concurrently, oxygen release alleviates local hypoxia, enhancing exosome uptake and amplifying their proregenerative effects. In vitro studies demonstrated that the Exo/ONB-MN patch significantly promoted fibroblast proliferation and migration while achieving near-complete eradication of Staphylococcus aureus and Escherichia coli. In an S. aureus-infected full-thickness wound mouse model, the patch accelerated wound closure to nearly 100% within 14 days, promoted organized collagen deposition, reduced pro-inflammatory cytokine expression, and induced a phenotypic switch from M1 to M2 macrophages. This Pop Rocks-inspired platform addresses the key pathological barriers of chronic wounds-infection, hypoxia, and impaired healing-through a synergistic, all-in-one strategy, offering a promising and translatable approach for advanced wound management.
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Pop Rocks-Inspired Bubble Driven Exosome Propulsion via Microneedles for Synergistic Wound Healing. — 科研速览 Science Skim