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Advanced biotechnology-assisted precise sonodynamic therapy

Authors
Zhang, YiZhang, XiangqianYang, HuochengYu, LeXu, YunjieSharma, AmitYin, PengLi, XiangyangKim, Jong SeungSun, Yao
Issue Date
18-10월-2021
Publisher
ROYAL SOC CHEMISTRY
Citation
CHEMICAL SOCIETY REVIEWS, v.50, no.20, pp.11227 - 11248
Indexed
SCIE
SCOPUS
Journal Title
CHEMICAL SOCIETY REVIEWS
Volume
50
Number
20
Start Page
11227
End Page
11248
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/136036
DOI
10.1039/d1cs00403d
ISSN
0306-0012
Abstract
Despite significant advances, the therapeutic impact of photodynamic therapy is still substantially hampered by the restricted penetration depth of light and the reactive oxygen species (ROS)-mediated toxicity, which is impeded by the shorter effective half-life and radius of ROS produced during treatment. Sonodynamic therapy (SDT), on the other hand, provides unrivalled benefits in deep-seated tumour ablation due to its deep penetration depth and not totally ROS-dependent toxicity, exhibiting enormous preclinical and clinical potential. In this tutorial review, we highlight imaging-guided precise SDT, which allows choosing the best treatment option and monitoring the therapy response in real-time, as well as recent clinical trials based on SDT. Aside from that, the subtle design strategies of sonosensitizers based on tumour environment shaping and rational structure modification, as well as SDT combination treatment (chemotherapy, chemodynamic therapy, photodynamic therapy, photothermal therapy, gas therapy and immunotherapy), aimed at a more effective treatment outcome, are summarized. Finally, we discussed the future of SDT for personalized cancer and other disease treatments.
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