光热治疗
材料科学
光敏剂
生物医学工程
磁性纳米粒子
纳米技术
血栓
纳米颗粒
化学
医学
外科
有机化学
作者
Yanzhen Song,Juanfeng Ou,Jiajun Miao,Xiaoting Zhang,Jiamiao Jiang,Hao Tian,Fei Peng,Yingfeng Tu
出处
期刊:Small
[Wiley]
日期:2024-08-16
卷期号:20 (47): e2403440-e2403440
被引量:12
标识
DOI:10.1002/smll.202403440
摘要
Current thrombolytic drugs exhibit suboptimal therapeutic outcomes and potential bleeding risks due to their limited circulation time, inadequate thrombus penetration, and off-target biodistribution. Herein, a photosensitizer-loaded, red cell membrane-encapsuled multiple magnetic nanoparticles aggregate is successfully developed for integrated mechanical/photothermal/photodynamic thrombolysis. Red cell membrane coating endows magnetic particles with prolonged blood circulation and superior biocompatibility. Under a preset rotating magnetic field (RMF), the aggregate with asymmetric magnetic distribution initiates rolling motion toward the blood clot interface, and because of magnetic dipole-dipole interactions, the aggregate tends to self-assemble into longer, flexible chain-like microrobotic swarm with powerful mechanical stir forces, thereby facilitating thrombus penetration and mechanical thrombolysis. Moreover, precise magnetic control enables targeted photosensitizer accumulation, allowing effective conversion of near-infrared (NIR) light into heat and reactive oxygen species (ROS) for thrombus phototherapy. In thrombolysis assays, the weight of thrombi is massively reduced by ≈90%. The work presents a safer and more promising combination of magnetic microrobotic technology and phototherapy for multi-modality thrombolysis.
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