School of Chemical and Biomedical Engineering , Nanyang Technological University , Singapore , 637459.
Langmuir. 2019 Aug 6;35(31):10106-10115. doi: 10.1021/acs.langmuir.9b00795. Epub 2019 May 13.
For over a decade, advancements in ultrasound-enhanced drug delivery strategies have demonstrated remarkable success in providing targeted drug delivery for a broad range of diseases. In order to achieve enhanced drug delivery, these strategies harness the mechanical effects from bubble oscillations (i.e., cavitation) of a variety of exogenous cavitation agents. Recently, solid cavitation agents have emerged due to their capacity for drug-loading and sustained cavitation duration. Unlike other cavitation agents, solid cavitation agents stabilize gaseous bubbles on hydrophobic surface cavities. Thus, the design of these particles is crucial. In this Review, we provide an overview of the different designs for solid cavitation agents such as nanocups, nanocones, and porous structures, as well as the current status of their development. Considering the numerous advantages of solid cavitation agents, we anticipate further innovations for this new type of cavitation agent across a broad range of biomedical applications.
十多年来,超声增强药物传递策略的进步在为广泛的疾病提供靶向药物传递方面取得了显著的成功。为了实现增强的药物传递,这些策略利用了各种外源性空化剂的气泡振荡(即空化)的机械效应。最近,由于其载药能力和持续空化时间,固体空化剂已经出现。与其他空化剂不同,固体空化剂在疏水性表面腔室上稳定气体气泡。因此,这些颗粒的设计至关重要。在这篇综述中,我们概述了不同设计的固体空化剂,如纳米杯、纳米锥和多孔结构,以及它们目前的发展状况。考虑到固体空化剂的众多优势,我们预计这种新型空化剂将在广泛的生物医学应用中得到进一步创新。