Zhao Yunchao, Wang Shaobo, Ding Yiming, Zhang Zeyu, Huang Tian, Zhang Yalong, Wan Xingyi, Wang Zhong Lin, Li Linlin
Center on Nanoenergy Research, School of Physical Science and Technology, Guangxi University, Nanning 530004, P.R. China.
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 100140, P.R. China.
ACS Nano. 2022 Jun 28;16(6):9304-9316. doi: 10.1021/acsnano.2c01968. Epub 2022 Jun 14.
Ultrasound (US)-triggered sonodynamic therapy (SDT) based on semiconductor nanomaterials has attracted considerable attention for cancer therapy. However, most inorganic sonosensitizers suffer from low efficiency due to the rapid recombination of electron-hole pairs. Herein, the CuO-BaTiO piezoelectric heterostructure was fabricated as a sonosensitizer and chemodynamic agent, simultaneously, for improving reactive oxygen species (ROS) generation and cancer therapeutic outcome. Under US irradiation, the CuO-BaTiO heterojunction with a piezotronic effect exhibits high-performance singlet oxygen (O) and hydroxyl radical (•OH) generation to enhance SDT. Moreover, it possesses Fenton-like reaction activity to convert endogenous HO into •OH for chemodynamic therapy (CDT). The integration of SDT and CDT substantially boosts ROS generation and cellular mitochondria damage, and the in vitro and in vivo results demonstrate high cytotoxicity and tumor inhibition on murine refractory breast cancer. This work realizes improvement in cancer therapy using piezoelectric heterostructures with piezotronic effects.
基于半导体纳米材料的超声(US)触发声动力疗法(SDT)在癌症治疗方面已引起广泛关注。然而,由于电子 - 空穴对的快速复合,大多数无机声敏剂的效率较低。在此,制备了CuO - BaTiO压电异质结构作为声敏剂和化学动力剂,同时用于提高活性氧(ROS)的产生和癌症治疗效果。在美国照射下,具有压电效应的CuO - BaTiO异质结表现出高性能的单线态氧(O)和羟基自由基(•OH)生成,以增强声动力疗法。此外,它具有类芬顿反应活性,可将内源性H₂O₂转化为•OH用于化学动力疗法(CDT)。声动力疗法和化学动力疗法的结合大大增强了ROS的产生和细胞线粒体损伤,体外和体内结果表明对小鼠难治性乳腺癌具有高细胞毒性和肿瘤抑制作用。这项工作实现了使用具有压电效应的压电异质结构改善癌症治疗。