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磁性复合材料通过微波增强热效应和活性氧快速治疗金黄色葡萄球菌感染性骨髓炎。

Magnetic Composite Rapidly Treats Staphylococcus aureus-Infected Osteomyelitis through Microwave Strengthened Thermal Effects and Reactive Oxygen Species.

机构信息

School of Materials Science & Engineering, the Key Laboratory of Advanced Ceramics and Machining Technology by the Ministry of Education of China, Tianjin University, Yaguan Road 135#, Tianjin, 300072, P. R. China.

School of Materials Science & Engineering, Peking University, Yiheyuan Road 5#, Beijing, 100871, P. R. China.

出版信息

Small. 2022 Oct;18(41):e2204028. doi: 10.1002/smll.202204028. Epub 2022 Sep 11.

DOI:10.1002/smll.202204028
PMID:36089666
Abstract

It is difficult to effectively treat bacterial osteomyelitis using photothermal therapy or photodynamic therapy due to poor penetration of light. Here, a microwave (MW)-excited magnetic composite of molybdenum disulfide (MoS ) / iron oxide (Fe O ) is reported for the treatment of bacteria-infected osteomyelitis. In in vitro and in vivo experiments, MoS /Fe O is shown to effectively eradicate bacteria-infected mouse tibia osteomyelitis, due to MW thermal enhancement and reactive oxygen species (ROS) ( O and ·O ) production under MW radiation. In addition, the mechanism of MW heat generation is proposed by MW network vector analysis. By the density functional theory and finite element method, the ROS generation mechanism is proposed. The synergy or conductive network between dielectric MoS and magnetic Fe O can reach both enhancement of the dielectric and magnetic attenuation capability. In addition, abundant interfaces are generated to enhance the attenuation of electromagnetic waves by MoS and Fe O introducing multiple reflections and interfacial polarization. Therefore, MoS /Fe O has excellent MW absorption ability based on the synergy or conductive network between MoS and magnetic Fe O as well as multiple dielectric reflections and interfacial polarization.

摘要

由于光的穿透力差,用光热疗法或光动力疗法很难有效地治疗细菌性骨髓炎。在这里,我们报告了一种用于治疗细菌感染性骨髓炎的微波(MW)激发的二硫化钼(MoS )/氧化铁(Fe O )磁性复合材料。在体外和体内实验中,由于在 MW 辐射下 MW 热增强和活性氧(ROS)( O 和·O )的产生,MoS /Fe O 被证明能有效地根除感染细菌的小鼠胫骨骨髓炎。此外,通过 MW 网络矢量分析提出了 MW 发热机制。通过密度泛函理论和有限元方法,提出了 ROS 生成机制。介电 MoS 和磁性 Fe O 之间的协同或导电网络可以同时增强介电常数和磁衰减能力。此外,通过 MoS 和 Fe O 引入多次反射和界面极化,会产生丰富的界面来增强电磁波的衰减。因此,基于 MoS 和磁性 Fe O 之间的协同或导电网络以及多次介电反射和界面极化,MoS /Fe O 具有优异的 MW 吸收能力。

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