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

Author:

Qiao Yuqian1,Wu Shuilin1ORCID,Zheng Yufeng1,Wang Chaofeng23,Li Zhaoyang4,Zhang Yu5,Zhu Shengli4,Jiang Hui4,Cui Zhenduo4,Liu Xiangmei23

Affiliation:

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

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

3. Biomedical Materials Engineering Research Center Hubei Key Laboratory of Polymer Materials Ministry‐of‐Education Key Laboratory for the Green Preparation and Application of Functional Materials School of Materials Science and Engineering Hubei University Wuhan 430062 P. R. China

4. School of Materials Science and Engineering The Key Laboratory of Advanced Ceramics and Machining Technology by the Ministry of Education of China Tianjin University Tianjin 300072 P. R. China

5. Department of Orthopedics Guangdong Provincial People's Hospital Guangdong Academy of Medical Sciences Guangzhou 510080 P. R. China

Abstract

AbstractMicrowave (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.

Funder

China National Funds for Distinguished Young Scientists

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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