Piezocatalytic Schottky Junction Treats Atherosclerosis by a Biomimetic Trojan Horse Strategy

Author:

Cheng Jingyun1,Pan Wenqi1,Zheng Yi1,Zhang Jingyi2,Chen Liang3,Huang Hui3,Chen Yu345ORCID,Wu Rong1

Affiliation:

1. Department of Ultrasound Shanghai General Hospital Shanghai Jiao Tong University School of Medicine Shanghai 200080 P. R. China

2. Department of Radiology Huashan Hospital State Key Laboratory of Medical Neurobiology Fudan University Shanghai 200040 P. R. China

3. Materdicine Lab School of Life Sciences Shanghai University Shanghai 200444 P. R. China

4. Oujiang Laboratory (Zhejiang Lab for Regenerative Medicine Vision and Brain Health) Wenzhou Institute of Shanghai University Wenzhou Zhejiang 325088 P. R. China

5. Shanghai Institute of Materdicine Shanghai 200051 P. R. China

Abstract

AbstractThe atherosclerotic vulnerable plaque is characterized by the foamy macrophage burden, involving impaired cholesterol efflux and deficient efferocytosis. Correspondingly, piezocatalytic therapy is an emerging solution for eliminating the foamy macrophage burden with satisfactory spatiotemporal controllability and deep penetration depth. Herein, a biomimetic Trojan horse (Au‐ZnO@MM) is engineered by coating the macrophage membrane (MM) onto the surface of a rod‐like Au‐ZnO Schottky Junction to effectively relieve the atherosclerotic progression. These Trojan horses with the coating of MM are actively transported into subsistent foamy macrophages and generate abundant reactive oxygen species (ROS) via ultrasound‐activated piezocatalysis. ROS‐initiated autophagy and mitochondrial dysfunction induce substantial cell apoptosis, alleviating the burden of subsistent foamy macrophages. The resulting apoptotic fragments further significantly facilitate cholesterol excretion and trigger efferocytosis of intraplaque fresh macrophages. Ultimately, the biomimetic Au‐ZnO@MM piezocatalyst not only inhibits the foaming capacity of macrophages, but also improves the function of removing cell debris, which can stabilize atherosclerotic vulnerable plaque. Meanwhile, the plasmon resonance effect of integrated gold nanoparticles enables favorable photoacoustic molecular imaging for real‐time image‐guided atherosclerotic therapy. This proposed biomimetic Trojan horse strategy provides the paradigm of employing ultrasound‐activated piezocatalytic methodology for enhanced atherosclerotic theranostics.

Funder

National Natural Science Foundation of China

Science and Technology Commission of Shanghai Municipality

Shanghai Municipal Education Commission

Publisher

Wiley

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