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激光介导二价铁离子释放的 FeS 纳米粒子修饰的碳球用于抗菌治疗。

Ultrasmall FeS Nanoparticles-Decorated Carbon Spheres with Laser-Mediated Ferrous Ion Release for Antibacterial Therapy.

机构信息

Department of Pharmacology, School of Medicine, Institute of Translational Medicine, Yangzhou University, Yangzhou, 225009, China.

Jiangsu Key Laboratory of Integrated Traditional Chinese and Western Medicine for Prevention and Treatment of Senile Diseases, Yangzhou, 225009, China.

出版信息

Small. 2021 Apr;17(13):e2005473. doi: 10.1002/smll.202005473. Epub 2021 Mar 4.

Abstract

Recent progress in nanotechnology and the ancient use of sulfur in treating dermatological disorders have promoted the development of nano-sulfides for antimicrobial applications. However, the variable valences and abundant forms of nano-sulfides have complicated investigations on their antibacterial activity. Here, carbon nanospheres (CNSs) with decoration of ultrasmall FeS nanoparticles (CNSs@FeS ) is synthesized, and their antibacterial ability and mechanism are explored. The CNSs@FeS released Fe and sulfur ions simultaneously through dissolution and disproportionation. In vitro study indicated that the released Fe killed bacteria by increasing the oxidative state of bacterial surfaces and intracellular molecules. Importantly, the released sulfur exhibited a protective effect on Fe , ensuring the stable existence of Fe to continuously combat bacteria. Moreover, the carbon shells of CNSs@FeS not only prevented the aggregation of FeS but also accelerated the release of Fe through photothermal effects to achieve synergistic hyperthermia/Fe therapy. In vivo experiments indicated that treatment with CNSs@FeS resulted in a marked reduction in bacterial number and improvement in survival in an acute peritonitis mouse model, and antibacterial wound experiments demonstrated high efficacy of CNSs@FeS -enabled synergistic hyperthermia/Fe therapy. Thus, this study clarifies the antibacterial mechanism of FeS and offers a synergetic therapeutic platform with laser-mediated Fe release for antibacterial applications.

摘要

近年来,纳米技术的进步和硫磺在治疗皮肤病方面的古老应用促进了纳米硫化物在抗菌应用方面的发展。然而,纳米硫化物的可变价态和丰富形态使得其抗菌活性的研究变得复杂。在这里,合成了具有超小 FeS 纳米粒子(CNSs@FeS)装饰的碳纳米球(CNSs),并探索了其抗菌能力和机制。CNSs@FeS 通过溶解和歧化同时释放 Fe 和硫离子。体外研究表明,释放的 Fe 通过增加细菌表面和细胞内分子的氧化状态来杀死细菌。重要的是,释放的硫对 Fe 表现出保护作用,确保 Fe 的稳定存在,以持续对抗细菌。此外,CNSs@FeS 的碳壳不仅防止了 FeS 的聚集,而且通过光热效应加速了 Fe 的释放,从而实现协同的热疗/Fe 治疗。体内实验表明,用 CNSs@FeS 治疗可显著减少急性腹膜炎小鼠模型中的细菌数量并提高存活率,抗菌伤口实验表明 CNSs@FeS 介导的协同热疗/Fe 治疗具有很高的疗效。因此,本研究阐明了 FeS 的抗菌机制,并为抗菌应用提供了具有激光介导 Fe 释放的协同治疗平台。

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