光热治疗
纳米技术
光热效应
抗菌剂
谷胱甘肽
纳米颗粒
半胱氨酸
大肠杆菌
细菌
抗菌活性
组合化学
化学
材料科学
生物物理学
生物化学
生物
酶
基因
有机化学
遗传学
作者
Zaoming Li,Zhiqiang Zhao,Shutong Chen,Wenjie Wu,Ying Jin,Junjie Mao,Yuqing Lin,Ying Jiang
标识
DOI:10.1002/adhm.202302480
摘要
Single-atom (SA) nanoparticles exhibit considerable potential in terms of photothermal properties for bactericidal applications. Nevertheless, the restricted efficacy of their targeted and controlled antibacterial activity has hindered their practical implementation. This study aims to overcome this obstacle by employing chemical modifications to tailor SAs, thereby achieving targeted and light-controlled antimicrobial effects. By conducting atomic-level modifications on palladium SAs using glutathione (GSH) and mercaptophenylboronic acid (MBA), their superior targeted binding capabilities toward Escherichia coli cells are demonstrated, surpassing those of SAs modified with cysteine (Cys). Moreover, these modified SAs effectively inhibit wound bacteria proliferation and promote wound healing in rats, without inducing noticeable toxicity to major organs under 808 nm laser irradiation. This study highlights the significance of chemical engineering in tailoring the antibacterial properties of SA nanoparticles, opening avenues for combating bacterial infections and advancing nanoparticle-based therapies.
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