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具有独特物理化学性质和结构特征的无机化学活性纳米声敏剂,用于多功能声动力纳米疗法。

Inorganic chemoreactive nanosonosensitzers with unique physiochemical properties and structural features for versatile sonodynamic nanotherapies.

作者信息

Dong Caihong, Hu Hui, Sun Liping, Chen Yu

机构信息

Department of Ultrasound, Zhongshan Hospital, Fudan University, and Shanghai Institute of Medical Imaging, Shanghai 200032, People's Republic of China.

Medmaterial Research Center, Jiangsu University Affiliated People's Hospital, Zhenjiang 212002, People's Republic of China.

出版信息

Biomed Mater. 2021 Apr 21;16(3). doi: 10.1088/1748-605X/abef58.

DOI:10.1088/1748-605X/abef58
PMID:33725684
Abstract

The fast development of nanomedicine and nanobiotechnology has enabled the emerging of versatile therapeutic modalities with high therapeutic efficiency and biosafety, among which nanosonosensitizer-involved sonodynamic therapy (SDT) employs ultrasound (US) as the exogenous activation source for inducing the production of reactive oxygen species (ROS) and disease therapy. The chemoreactive nanosonosensitizers are the critical components participating in the SDT process, which generally determine the SDT efficiency and therapeutic outcome. Compared to the traditional and mostly explored organic sonosensitizers, the recently developed inorganic chemoreactive nanosonosensitizers feature the distinct high stability, multifunctionality and significantly different SDT mechanism. This review dominantly discusses and highlights two types of inorganic nanosensitizers in sonodynamic treatments of various diseases and their underlying therapeutic mechanism, including US-activated generation of electrons (e) and holes (h) for facilitating the following ROS production and delivery of organic molecular sonosensitizers. Especially, this review proposes four strategies aiming for augmenting the SDT efficiency on antitumor and antibacterial applications based on inorganic sonosensitizers, including defect engineering, novel metal coupling, increasing electric conductivity and alleviating tumor hypoxia. The encountered challenges and critical issues facing these inorganic nanosonosensitzers are also highlighted and discussed for advancing their clinical translations.

摘要

纳米医学和纳米生物技术的快速发展催生了具有高治疗效率和生物安全性的多种治疗方式,其中涉及纳米声敏剂的声动力疗法(SDT)利用超声波(US)作为外源激活源来诱导活性氧(ROS)的产生并进行疾病治疗。具有化学活性的纳米声敏剂是参与SDT过程的关键成分,其通常决定了SDT的效率和治疗效果。与传统的且大多被研究的有机声敏剂相比,最近开发的无机化学活性纳米声敏剂具有明显的高稳定性、多功能性以及显著不同的SDT机制。本综述主要讨论并重点介绍了两类无机纳米声敏剂在各种疾病的声动力治疗中的应用及其潜在的治疗机制,包括通过超声激活产生电子(e)和空穴(h)以促进随后的ROS生成以及有机分子声敏剂的递送。特别是,本综述提出了四种基于无机声敏剂提高抗肿瘤和抗菌应用中SDT效率的策略,包括缺陷工程、新型金属偶联、提高电导率和缓解肿瘤缺氧。还强调并讨论了这些无机纳米声敏剂在推进其临床转化过程中所面临的挑战和关键问题。

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