分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

Microwave-responsive thermoelectric microneedles for efficient biofilm eradication and sustained repair of infected wounds

Zhang Shihao, Lei Jie, Liu Xin, Ou Zixuan, Tong Bide, Liang Huaizhen, Wu Di, Zhang Zhengdong, Wei Junyu, Wang Hongchuan, Xu Hanpeng, Peng Shuchang, Qian Yifan, Chen Zhiquan, Jia Yuyuan, Tan Lei, Xie

Journal:JOURNAL OF NANOBIOTECHNOLOGY

IF:15

DOI:10.1186/s12951-026-04858-5

PMID:

Published:2026-07-31

research field:分子生物学药理学胃肠病学天然产物研究药物发现

Abstract

Infected wounds present a high clinical incidence, and current treatments are inadequate in both effectively eliminating bacterial biofilms and continuously promoting tissue regeneration. To address these challenges, we develop a microwave-responsive thermoelectric nanocomposite of zinc oxide-bismuth telluride (ZnO-Bi 2 Te 3 ) via hydrothermal synthesis for the treatment of biofilm infected wounds. The heterointerface within the nanocomposite enhances phonon scattering, while the ZnO component provides additional charge carrier transport pathways, collectively significantly improving the thermoelectric conversion performance. Under microwave irradiation, the ZnO-Bi 2 Te 3 rapidly generates substantial amounts of reactive oxygen species (ROS), enabling efficient penetration and eradication of biofilms with an antibacterial rate of 99.2%. After irradiation ceases, the ZnO-Bi 2 Te 3 utilizes the wound-environment temperature difference to continuously produce thermoelectric signals. The continuous thermoelectric signals, in synergy with the release of zinc ions, activate the MAPK pathway and promote protein synthesis, processing, and transport, thereby enhancing cell migration, differentiation, and angiogenesis, leading to continuous tissue regeneration. In a mouse model of MRSA-biofilm infected wounds, the ZnO-Bi 2 Te 3 loaded microneedles effectively clear the infection and accelerate healing. This study develops a microwave-responsive thermoelectric system for infected wounds through efficient biofilm clearance and sustained pro-regeneration. Graphical

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