Ultrasound‐Controlled Electron‐Phonon Coupling Augmenting Catalysis of Piezoelectric‐Based Sonosensitizer Safely Against Osteomyelitis

Author:

Fu Jieni1234,Wu Shuilin12ORCID,Zhu Shengli1,Zheng Yufeng2,Jiang Hui1,Wang Dongbin5,Li Zhaoyang1,Cui Zhenduo1,Liu Xiangmei34

Affiliation:

1. 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 China

2. School of Materials Science & Engineering Peking University Yi‐he‐yuan Road 5# Beijing 100871 China

3. School of Health Science & Biomedical Engineering Hebei University of Technology Xiping Avenue 5340, Beichen District Tianjin 300401 China

4. 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 & Engineering Hubei University Wuhan 430062 China

5. Department of Cardio‐Thoracic Surgery Tianjin Hospital Affiliated to Tianjin University Tianjin 300200 China

Abstract

AbstractThe energy transfer way and efficiency of ultrasound (US) to piezoelectric materials in fluid determines the US catalytic performance of materials and the subsequent sono‐therapeutic effects for deep infection diseases. Herein, on insonation, the microbubble cavitation occurs near the surface of barium orthotitanate/berberine chloride nanoparticles (BTO/Ber NPs), often forming sonoluminescence and high pressure. The light further activates Ber, and the electron transfer happens between activated Ber and changing energy levels of BTO NPs caused by changing pressure. Meanwhile, ultrasound‐driven piezoelectric electron‐phonon coupling simultaneously narrows bandgap and prolongates carrier‐lifetime, leading to more ROS generation. Hence, BTO/Ber NPs show great antibacterial activity against Staphylococcus aureus (99.80 ± 0.09%) by microbubble‐mediated sonoporation and catalysis. Meanwhile, BTO/Ber NPs improve bone regeneration by decreasing the inflammatory response and enhancing osteoblast differentiation. US‐mediated microbubbles may offer a safe and efficient treatment to millions of patients suffering from osteomyelitis and pave the way for the highly safe use of ultrasound in deep infections.

Funder

China National Funds for Distinguished Young Scientists

National Natural Science Foundation of China

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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