声动力疗法
脂质体
超声波
化疗
纳米颗粒
纳米技术
材料科学
化学
生物物理学
医学
放射科
内科学
生物
作者
Yanmei He,Hao Zhao,Guangrong Zheng,Ke Sun,Dan Deng,Yi Wang,Ting Gong,Juan Chen,Xin Chen,Haiyan Yang,Hongchun Liao,Yanbing Zhao,Zhigang Wang,Xiaojuan Ji
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-09-23
标识
DOI:10.1021/acs.nanolett.5c03350
摘要
Overcoming hypoxia and enhancing therapeutic precision remain critical challenges for sonodynamic therapy (SDT) in oncology. Herein, we develop a biomimetic liposomal platform (DiR-VT@cmLipo) coencapsulating the sonosensitizer verteporfin (VP) and hypoxia-activated prodrug evofosfamide (TH302), which synergistically inhibits tumor progression via fluorescence imaging-guided ultrasound-activated spatiotemporally selective sonodynamic-chemotherapy. Engineered with natural membrane components, DiR-VT@cmLipo exhibits prolonged systemic circulation while maintaining precise tumor-specific accumulation after intravenous injection. The therapeutic cascade was precisely initiated through an ultrasound-triggered VP-mediated ROS burst, simultaneously consuming intratumoral oxygen. This creates a self-amplifying hypoxia gradient to promote the activation of cytotoxic payload TH302, enhancing SDT efficacy through synergistic mechanisms. This biomimetic nanoplatform represents an innovative strategy for overcoming microenvironmental limitations in SDT, establishing a paradigm for synergistic tumor microenvironment remodeling and precision-controlled combination therapy. The cascaded self-amplifying activation mechanism and spatiotemporally tumor-selective therapeutic amplification position DiR-VT@cmLipo as a promising candidate for clinical translation in solid tumor management.
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