声动力疗法
栓塞
材料科学
自愈水凝胶
生物相容性材料
生物医学工程
微球
栓塞
超声波
经动脉栓塞
纳米技术
凝固性坏死
动脉栓塞
纳米颗粒
放射科
正弦波
高强度聚焦超声
作者
Wei Xia,Zeyan Zhou,Rongrong Liu,Yangzhen Hou,Ruiwen Cheng,Yaheng Cao,Xiaojun Jiang,Kang Jiang,Yilong Jing,Baojun Li,Menghui Liu,Weihua Liao,Qunhong Weng
标识
DOI:10.1002/adma.202518664
摘要
Transcatheter arterial embolization (TAE) has been clinically approved as an effective and minimally invasive treatment for hypervascular tumors. However, the available embolic TAE agents usually face notable limitations and sometimes fatal risks, including embolism displacement, recanalization, and toxicity, among others. Therefore, the development of injectable and biosafe hydrogels for operando embolization represents an alternative smart route to solve the critical TAE agent problems, although tremendous challenges still exist. Here, we report a biocompatible liquid metal microsphere-embedded hydrogel, which is sensitive to ultrasound to operando induce gelation and crosslinking in a short time and small intravascular spaces. By this strategy, the Gallium microspheres (GaMSs) serve multiple roles, including as a sonodynamic catalyst for fast gelation, sustained Ga ion release to form a secondary crosslinking structure and a tough hydrogel, as well as a better radiopaque agent. This TAE agent demonstrates excellent on-demand embolization performances with superior mechanical properties, biocompatibility, radiopacity, and remarkable spatiotemporal responses, offering a promising TAE solution for effective and durable tumor treatments with no occurrences of any ectopic embolization or recanalization.
科研通智能强力驱动
Strongly Powered by AbleSci AI