Pseudomonas aeruginosa-targeted mesoporous gold nanorod nanogenerator: NIR laser-triggered alkyl radical generation for enhanced bacterial wound treatment

化学 生物膜 纳米棒 半胱胺 光热效应 细菌生长 铜绿假单胞菌 抗菌活性 光热治疗 烷基 介孔二氧化硅 伤口愈合 抗生素 生物物理学 细菌 微生物学 纳米技术 光催化 抗菌剂 光敏剂 可见光谱 组合化学 庆大霉素 劈理(地质) 表面改性 DNA损伤 赫拉 纳米颗粒 光动力疗法 菌毛 生物结合
作者
Wenkang Liu,Tao Wu,Wenxuan Ye,Ming‐Yang He,Jianfu Zhao,Wei Xue,Siming Yu
出处
期刊:Materials today bio [Elsevier BV]
卷期号:35: 102457-102457
标识
DOI:10.1016/j.mtbio.2025.102457
摘要

Currently, Pseudomonas aeruginosa ( P. aeruginosa ) infections pose a significant threat to public health, owing to the high morbidity, mortality and antibiotic resistance. Alkyl radical (AR)-based photodynamic therapy exhibits great potential in antibacterial applications due to its oxygen-independent advantage. Nevertheless, targeted delivery systems capable of precisely controlling AR release at bacterial infectious foci are still lacking. In the present work, a mesoporous gold nanorod (mGNR)-based multifunctional nanogenerator with P. aeruginosa -targeting and near infrared (NIR) laser-controlled AR release properties was fabricated for enhanced bacterial wound treatment. Herein, mGNR with mild-photothermal therapeutic (MPTT) effect was firstly synthesized and used as a carrier for effective loading of an AR initiator 2, 2′-azobis[2-(2-imidazolin-2-yl)propane]-dihydrochloride (AIPH). Then, cysteamine and polymer of HOOC-PEG 5000 -Mal were added in sequence to functionalize the nanosystem, obtaining nanogenerator of mGNR@AIPH@PEG-Mal. Due to the specific maleimide (Mal) and Type IV Pilus (T4P) reaction, mGNR@AIPH@PEG-Mal displayed high binding efficiency on P. aeruginosa . Upon NIR laser irradiation, mGNR@AIPH@PEG-Mal triggered AIPH cleavage to generate substantial amount of AR, which enabled high-efficient inhibition on P. aeruginosa and biofilms via the synergistic MPTT/AR antibacterial effect. Moreover, mGNR@AIPH@PEG-Mal exhibited excellent antibacterial and wound healing effect on P. aeruginosa infectious rats’ wounds. In-depth mechanism study revealed that the synergistic MPTT/AR therapeutic effect of mGNR@AIPH@PEG-Mal induced P. aeruginosa death by breaking bacterial membrane, triggering ROS boost, GSH depletion and DNA damage, as well as promoted wound healing by repolarizing M2-type macrophages and upregulating CD 31 and α-SMA expressions. In the present work, a maleimide-functionalized mesoporous gold nanorod nanogenerator with precise P. aeruginosa -targeting ability was synthesized. Upon NIR laser irradiation, the nanogenerator exhibited mild-photothermal effect (MPTT) and alkyl radical (AR)-controlled release property, which was capable of high-efficient treatment on P. aeruginosa infectious wound via the synergistic MPTT/AR effect. • A maleimide functionalized nanogenerator with precise P. aeruginosa -targeting activity was synthesized. • The nanogenerator displayed mild-photothermal effect (MPTT) and NIR-controlled alkyl radical (AR)-releasing property. • The synergistic MPTT/AR effect significantly inhibited P. aeruginosa and promoted wound healing. • The synergistic MPTT/AR effect promoted wound healing by repolarizing M2 macrophages and upregulating CD 31 and α-SMA expressions.

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