光热治疗
化学
溶栓
血小板
血小板活化
生物化学
纳米技术
组合化学
生物物理学
癌症研究
药理学
医学
材料科学
内科学
生物
心肌梗塞
作者
Mi‐Kyung Song,Wenxi Yang,Lingxin Peng,Changan Ren,Jinghua Chen,Yan Zhang
出处
期刊:ChemBioChem
[Wiley]
日期:2025-06-26
卷期号:26 (15): e202500253-e202500253
被引量:1
标识
DOI:10.1002/cbic.202500253
摘要
Thrombotic disorders represent a significant global health burden, with conventional thrombolytic therapies often limited by systemic bleeding risks and inadequate thrombus specificity. To address these challenges, a biomimetic glycopolymer‐based nanomicelle system is developed for precision thrombosis management. Utilizing reversible addition–fragmentation chain‐transfer polymerization, a type of cationic glycopolymer is synthesized from dimethylaminoethyl methacrylate and fucose monomers, which self‐assembles into core‐shell nanomicelles. The hydrophilic corona features multivalent fucose clusters that selectively bind to P‐selectin on activated platelets within the thrombi, enabling targeted accumulation, while the hydrophobic core encapsulates the photothermal agent indocyanine green (ICG), enhancing its aqueous solubility and photostability. Upon near‐infrared (NIR) laser irradiation, the ICG‐loaded glycopolymeric nanomicelle, ICG@D 20 F 20 exhibits efficient photothermal conversion, generating localized hyperthermia to disrupt fibrin networks. This platform offers several advantages, including precise targeting, synergistic thrombolysis, and enhanced biocompatibility, thereby overcoming the limitations of traditional thrombolytics and providing a novel approach for minimally invasive, image‐guided cardiovascular interventions.
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