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通过界面限制增强超小二维 MOF 的表面态的微波动态效应,用于无抗生素治疗。

Enhancing Microwave Dynamic Effects via Surface States of Ultrasmall 2D MOF Triggered by Interface Confinement for Antibiotics-Free Therapy.

机构信息

School of Materials Science and Engineering, Peking University, Beijing, 100871, P. R. China.

School of Health Science and Biomedical Engineering, Hebei University of Technology, Xiping Avenue 5340, Beichen District, Tianjin, 300401, P. R. China.

出版信息

Adv Sci (Weinh). 2023 Jul;10(21):e2300084. doi: 10.1002/advs.202300084. Epub 2023 May 18.

Abstract

Microwave (MV)-trigged dynamic therapy based on MV-responsive materials is promising for treating deep infection diseases that cannot be effectively treated by antibiotics, like life-threatening osteomyelitis. Surface states of materials affect the generation of free charges under the excitation source with energy less than the band gap, consequently influencing the MV dynamic effects. Herein, an MV responsive system with interface confined 2D metal-organic framework (2D MOF) on oxidized carbon nanotube (CNT) is prepared, in which the ultrasmall Cu-based 2D MOF possesses sufficient surface/interface defects, endowing the system a large number of surface states. Under MV irradiation, the synthesized CNT-2D MOF not only efficiently absorbs and converts the microwave into heat for microwaveocaloric therapy (MCT) via enhanced hetero-interfacial polarization, but also generates excited electrons via surface state for microwave dynamic therapy (MDT). This biocompatible CNT-2D MOF exhibits highly effective broad-spectrum antimicrobial activity against seven pathogenic bacteria, including Gram-negative and Gram-positive pathogens, under 7 min MV irradiation. And this system is proven to efficiently eradicate Staphylococcus aureus infected rabbit tibia osteomyelitis. Significantly, MV-excited MCT and MDT of CNT-CuHHTP developed in this study makes a major step forward in antibiotic-free MV therapy in deep tissue bacterial infection diseases.

摘要

基于微波响应材料的微波触发动态治疗对于治疗抗生素无法有效治疗的深部感染疾病(如危及生命的骨髓炎)具有广阔的应用前景。材料的表面状态会影响能量低于带隙的激发源下自由电荷的产生,从而影响微波动态效应。本文制备了一种具有界面受限二维金属有机骨架(2D MOF)的微波响应体系,其中基于铜的超小 2D MOF 具有充足的表面/界面缺陷,赋予了体系大量的表面态。在微波辐照下,所合成的 CNT-2D MOF 不仅通过增强的异质界面极化高效地吸收并将微波转化为热能,用于微波热疗(MCT),而且通过表面态产生受激电子,用于微波动力治疗(MDT)。在 7 分钟的微波辐照下,这种生物相容性的 CNT-2D MOF 对包括革兰氏阴性和革兰氏阳性病原体在内的七种致病菌表现出高效广谱的抗菌活性。并且该体系被证明可以有效地消除金黄色葡萄球菌感染的兔胫骨骨髓炎。重要的是,本研究中开发的 CNT-CuHHTP 的微波激发 MCT 和 MDT 在治疗深部组织细菌感染疾病的无抗生素微波治疗方面迈出了重要的一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2761/10375132/4307df23d35f/ADVS-10-2300084-g007.jpg

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