Vacancy Augmented Piezo‐Sonosensitizer for Cancer Therapy
作者:Qingyuan Wu, Jie Zhang, Xueting Pan, Zhijun Huang, Haoyuan Zhang, Juan Guo, Yun Xue, Rui Shi, Huiyu Liu · 发表于:Advanced Science · 年份:2023 · DOI:10.1002/advs.202301152 · 被引用次数:45 · 研究领域:Nanoplatforms for cancer theranostics、Advanced Sensor and Energy Harvesting Materials
Abstract Sonodynamic therapy (SDT) has been widely reported as a noninvasive and high‐penetration therapy for cancer; however, the design of an efficient sonosensitizer remains an urgent need. To address this issue, molybdenum disulfide nanoflowers (MoS 2 NF) as piezo‐sonosensitizers and introduced sulfur vacancies on the MoS 2 NF (Sv‐MoS 2 NF) to improve their piezoelectric property for cancer therapy are designed. Under ultrasonic mechanical stress, the Sv‐MoS 2 NF resulted in piezoelectric polarization and band tilting, which enhanced the charge carrier separation and migration. This resulted in an improved catalytic reaction for reactive oxygen species (ROS) production, ultimately enhancing the SDT performance. Thanks to the high efficiency of ROS generation, the Sv‐MoS 2 NF have demonstrated a good anticancer effect in vitro and in vivo. Following a systematic evaluation, Sv‐MoS 2 NF also demonstrated good biocompatibility. This novel piezo‐sonosensitizer and vacancy engineering strategy provides a promising new approach for achieving efficient SDT.