声动力疗法
青蒿琥酯
化学
光动力疗法
酞菁
结合
组合化学
医学
有机化学
病理
数学
数学分析
疟疾
恶性疟原虫
作者
Penghui Zhao,Yulin Wu,Xueyan Li,Linlin Feng,Ling Zhang,Biyuan Zheng,Mei‐Rong Ke,Jian‐Dong Huang
标识
DOI:10.1002/anie.202113506
摘要
Abstract The clinical prospect of sonodynamic therapy (SDT) has not been fully realized due to the scarcity of efficient sonosensitizers. Herein, we designed phthalocyanine–artesunate conjugates (e.g. ZnPcT 4 A), which could generate up to ca. 10‐fold more reactive oxygen species (ROS) than the known sonosensitizer protoporphyrin IX. Meanwhile, an interesting and significant finding of aggregation‐enhanced sonodynamic activity (AESA) was observed for the first time. ZnPcT 4 A showed about 60‐fold higher sonodynamic ROS generation in the aggregated form than in the disaggregated form in aqueous solutions. That could be attributed to the boosted ultrasonic cavitation of nanostructures. The level of the AESA effect depended on the aggregation ability of sonosensitizer molecules and the particle size of their aggregates. Moreover, biological studies demonstrated that ZnPcT 4 A had high anticancer activities and biosafety. This study thus opens up a new avenue the development of efficient organic sonosensitizers.
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