College of Chemistry and Chemical Engineering, Instrumental Analysis Center, Shandong Sino-Japanese Center for Collaborative Research of Carbon Nanomaterials, Qingdao University, 266071 Qingdao, China.
ACS Nano. 2023 Mar 14;17(5):4102-4133. doi: 10.1021/acsnano.2c10251. Epub 2023 Feb 21.
Sonodynamic therapy (SDT) has emerged as a promising therapeutic modality for anticancer treatments and is becoming a cutting-edge interdisciplinary research field. This review starts with the latest developments of SDT and provides a brief comprehensive discussion on ultrasonic cavitation, sonodynamic effect, and sonosensitizers in order to popularize the basic principles and probable mechanisms of SDT. Then the recent progress of MOF-based sonosensitizers is overviewed, and the preparation methods and properties (e.g., morphology, structure, and size) of products are presented in a fundamental perspective. More importantly, many deep observations and understanding toward MOF-assisted SDT strategies were described in anticancer applications, aiming to highlight the advantages and improvements of MOF-augmented SDT and synergistic therapies. Last but not least, the review also pointed out the probable challenges and technological potential of MOF-assisted SDT for the future advance. In all, the discussions and summaries of MOF-based sonosensitizers and SDT strategies will promote the fast development of anticancer nanodrugs and biotechnologies.
声动力学疗法(SDT)作为一种有前途的癌症治疗方法,已经成为一个前沿的交叉学科研究领域。本综述首先介绍了 SDT 的最新进展,并对超声空化、声动力学效应和声敏剂进行了简要的综合讨论,以普及 SDT 的基本原理和可能的机制。然后综述了基于 MOF 的声敏剂的最新进展,从基本的角度介绍了产品的制备方法和性能(如形态、结构和尺寸)。更重要的是,在抗癌应用中对 MOF 辅助 SDT 策略进行了许多深入的观察和理解,旨在强调 MOF 增强 SDT 和协同治疗的优势和改进。最后但同样重要的是,该综述还指出了 MOF 辅助 SDT 未来发展的可能挑战和技术潜力。总之,MOF 基声敏剂和 SDT 策略的讨论和总结将促进抗癌纳米药物和生物技术的快速发展。