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基于铜掺杂磁涡纳米环的细菌感染三联疗法纳米治疗:磁热疗、化学动力疗法和光热疗法的相互作用

Copper doped magnetic vortex nanoring based nanotherapeutics for bacterial infection tri-therapy: interplay of magnetic hyperthermia, chemodynamic therapy and photothermal therapy.

作者信息

Wang Jing, Zhao Wenqian, Tu Hui, Zu Xiangyang, Li Jinghua, Lei Kun, Li Jing, Zhuang Yuchuan, Dong Yanbo, Tulupov Andrey, Zhang Fengshou, Bao Jianfeng

机构信息

School of Medical Technology and Engineering, Henan University of Science and Technology, Luoyang 71000, China.

Office of Science and Technology, Henan University of Science and Technology, Luoyang, China.

出版信息

Nanoscale. 2025 Feb 6;17(6):3421-3435. doi: 10.1039/d4nr03799e.

Abstract

Infectious bacteria pose an increasing threat to public health, and hospital-acquired bacterial infections remain a significant challenge for wound healing. In this study, we developed an advanced nanoplatform utilizing copper doped magnetic vortex nanoring coated with polydopamine (Cu-MVNp) based nanotherapeutics for bacterial infection tri-therapy. This multifunctional nanoplatform exhibits remarkable dual-stimulus thermogenic capabilities and Fenton-like peroxidase activity. Exposure to an alternating magnetic field (AMF) and near-infrared (NIR) light allows the nanoring to elevate environmental temperatures through hysteresis losses and the non-radiative decay effects of the PDA coating. At a concentration of 150 μg mL, Cu-MVNp increases the temperature by 18.2 °C under an AMF, achieving a specific absorption rate (SAR) of 640.9 W g. On the other hand, under 808 nm NIR irradiation, the temperature rises by 42.6 °C, with a photothermal conversion efficiency of 46.45%. Furthermore, by incorporating copper ions (Cu), which can damage cell membranes themselves, Cu-MVNp was endowed with Fenton-like functions and can catalyze the formation of hydroxyl radicals (˙OH) from low concentrations (1 mM) of hydrogen peroxide (HO), thus enhancing the effectiveness of chemodynamic therapy (CDT). Cu-MVNp exhibits significant antibacterial efficacy, achieving notable kill rates against and , with enhanced effects under NIR and nearly complete eradication with an AMF. tests using a mouse wound model confirm its potent bactericidal properties and good biocompatibility. The Cu-MVNp nanoring shows promise as an antibacterial treatment, potentially effective at inhibiting bacterial growth.

摘要

传染性细菌对公众健康构成的威胁日益增加,医院获得性细菌感染仍然是伤口愈合的重大挑战。在本研究中,我们开发了一种先进的纳米平台,利用涂有多巴胺的铜掺杂磁性涡旋纳米环(Cu-MVNp)进行细菌感染三联疗法。这种多功能纳米平台具有显著的双刺激产热能力和类芬顿过氧化物酶活性。暴露于交变磁场(AMF)和近红外(NIR)光下,纳米环通过滞后损耗和PDA涂层的非辐射衰减效应提高环境温度。在浓度为150μg/mL时,Cu-MVNp在AMF下使温度升高18.2°C,实现了640.9W/g的比吸收率(SAR)。另一方面,在808nm近红外照射下,温度升高42.6°C,光热转换效率为46.45%。此外,通过引入本身可破坏细胞膜的铜离子(Cu),Cu-MVNp具有类芬顿功能,可催化低浓度(1mM)过氧化氢(HO)形成羟基自由基(˙OH),从而增强化学动力疗法(CDT)的效果。Cu-MVNp具有显著的抗菌功效,对[具体细菌1]和[具体细菌2]有显著杀灭率,在近红外下效果增强,在交变磁场下几乎完全根除。使用小鼠伤口模型的测试证实了其强大的杀菌性能和良好的生物相容性。Cu-MVNp纳米环有望作为一种抗菌治疗方法,可能有效抑制细菌生长。

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