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Snake-fangs-bioinspired intelligently-responsive two-stage AIE gen-containing microneedle-based platform for integrated photodynamic infected-wound management and visual therapeutic diagnosis

光动力疗法 材料科学 明胶 纳米技术 生物医学工程 治疗效果 治疗方法 计算机科学 图层(电子) 生物传感器 治疗窗口 过程(计算) 医学
作者
Lijuan Chen,Xiaomin Luo,Hao Yang,Ying Liu,Jiamin Zhang,Qian Zhang,Fengqian Yang,Xinhua Liu,Huie Jiang
出处
期刊:Bioactive Materials [Elsevier BV]
卷期号:54: 886-900 被引量:1
标识
DOI:10.1016/j.bioactmat.2025.09.013
摘要

The efficient treatment of prevalent drug-resistant (DR) bacteria-infected wounds caused by the clinical use of conventional antibiotics remains a significant challenge. Here, a well-integrated intelligent drug-releasing, photodynamic therapy, and visual therapeutic diagnosis strategy combining burgeoning aggregation-induced emission luminogen (AIE-gen) and microneedling technology is innovatively proposed for advanced infected-wound management. This strategy is based on an intelligently responsive two-stage AIE-gen-containing microneedle-based platform (AIE-film/TS-MN) with a double-layer structure. The uppermost layer comprises an on-demand pH-responsive AIE-photosensitizer (AFPP)-based film (AIE-film). This layer is designed to achieve the precise release of reactive oxygen species (ROS) or nitrocefin, which responds to β -lactamase in DR bacteria. The basal layer is a two-stage microneedle (TS-MN) patch with a “core-shell” structure bio-inspired by snake fangs, providing outstanding anti-migratory origins and acid-responsive drug-releasing properties through crustaceous gelatin loaded with Fe-carbenicillin frameworks (Fe-MOF). AFPP and nitrocefin in AIE-film accurately respond to acidic wound-microenvironment and β -lactamase, colorfully changing from yellow and green to orange and red, respectively. This indicates that AIE-film/TS-MN exhibits significant potential as a novel biosensor to record the color-change semiquantitatively at wound-sites through smartphone analysis, visually achieving significantly infected wound-diagnosis/-assessment to facilitate the therapeutic efficacy. Additionally, the smart multiple drug-releasing synergistically eliminates DR-bacteria, including carbenicillin from Fe-MOF and AFPP-activating ROS. Comprehensive in vitro and in vivo experiments confirm that the telemedicine AIE-film/TS-MN offers advanced integrated therapeutic effects for active infected wound management. Additionally, it reduces antibiotic abuse and provides an innovative and promising strategy for visual medical diagnostics and therapeutic interventions. • A snake-fangs bio-inspired two-stage AIE gen-containing microneedle was proposed for advanced infected-wound management. • AIE-film/TS-MN can record the color-changes at wound-sites, visually achieving significantly infected wound-diagnosis/-assessment. • The bio-inspired micro-structure endows AIE-film/TS-MN with excellent anti-migratory properties and acid-responsive drug release. • The smart multiple drug-releasing of AIE-film/TS-MN synergistically eliminates drug-resistant. • AIE-film/TS-MN offers integrated photodynamic infected-wound management and visual therapeutic diagnosis.
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