光热治疗
溶栓
组织纤溶酶原激活剂
生物医学工程
生物医学中的光声成像
医学
磁共振成像
材料科学
放射科
内科学
纳米技术
光学
心肌梗塞
物理
作者
Xiaolei Cai,Aishwarya Bandla,Can Wang,Yuhang Liu,Chan Kim Chuan,Yu Xu,Xingang Liu,Shidang Xu,Wenbo Wu,Nitish V. Thakor,Bin Liu
标识
DOI:10.1002/sstr.202100118
摘要
Ischemic stroke is a highly prevalent cause of mortality and morbidity. The only FDA‐approved treatment is thrombolysis using tissue plasminogen activator (tPA), which possesses a short effective time window. Real‐time recanalization monitoring is crucial to establish successful reperfusion and serves as a strong predictor of clinical outcomes. First‐line clinical imaging techniques, such as computed tomography and magnetic resonance imaging, are limited in their soft‐tissue resolution, scanning speed, and accessibility. Transcranial doppler ultrasound, the current gold standard for recanalization monitoring, is a blind technique and highly operator dependent. Herein, a photothermal‐activatable liposome carrying tPA for photoacoustic (PA) image‐guided therapy for real‐time and precise recanalization monitoring of ischemic stroke is designed. The liposome containing an organic molecule with propeller structures exhibits excellent photothermal properties and significantly amplified PA signals as compared with the widely used polymer nanoparticles. Near‐infrared (NIR) laser triggers rapid release of tPA for quick blood clot lysis in vitro. Administration of the liposome in a rat photothrombotic ischemia model facilitates high‐resolution PA imaging for precise real‐time recanalization assessment. Precisely controlled tPA release at the ischemic region is achieved by PA image‐guided NIR laser irradiation, which successfully dissolves the blood clot and restores perfusion, making this design promising for translational applications.
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