光热治疗
微气泡
药物输送
光动力疗法
吲哚青绿
癌症研究
靶向给药
生物医学工程
化学
药品
脂质体
肿瘤缺氧
医学
癌症治疗
分子成像
超声波
癌症
抗癌药
毒品携带者
乳腺癌
输送系统
光学成像
病理
常用化疗药物
作者
Zhiqiang Zhang,Chenxi Fang,Yingjie Ma,A Li,Yunfeng Dai,Lukui Chen,Jungang Ren,Meitao Duan,Ming Chen,Wang Li,Chen Wang
标识
DOI:10.1021/acs.molpharmaceut.5c01844
摘要
The treatment of superficial tumors is often limited by poor drug targeting and a lack of real-time visualization of drug distribution. To address these challenges, we developed an RGD-modified microbubble system (TF/ICG-MB@RGD) for ultrasound/near-infrared (NIR) dual-modal imaging-guided chemo-photothermal-photodynamic combination therapy. The microbubbles coloaded tegafur (TF), a chemotherapeutic agent, and indocyanine green (ICG), a photothermal and photosensitizing agent, within a lipid shell surrounding a sulfur hexafluoride (SF6) core. The surface was functionalized with cyclic RGD peptides to achieve active targeting to tumor vasculature. Upon intravenous administration, the system allowed real-time visualization of accumulation in tumor tissue via Doppler ultrasound and NIR imaging. Based on the imaging feedback, an 808 nm laser was applied to trigger rapid release of TF and ICG, simultaneously inducing chemotherapy, hyperthermia, and reactive oxygen species generation. In a 4T1 murine breast cancer model, this strategy resulted in a tumor inhibition rate of 72.76% with minimal systemic toxicity. This integrated approach provides a promising theranostic platform for precision treatment of superficial tumors.
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