鱼精蛋白
肝素
磺达肝素
材料科学
部分凝血活酶时间
等温滴定量热法
聚合物
化学
药理学
凝结
医学
有机化学
外科
生物化学
精神科
血栓形成
静脉血栓栓塞
作者
Furong Lin,Shang‐Bo Yu,Yue‐Yang Liu,Chuan‐Zhi Liu,Shuai Lu,Jinwei Cao,Qiao‐Yan Qi,Wei Zhou,Xiaopeng Li,Yi Liu,Jia Tian,Zhan‐Ting Li
标识
DOI:10.1002/adma.202200549
摘要
Heparins are widely used anticoagulants for surgical procedures and extracorporeal therapies. However, all of them have bleeding risks. Protamine sulfate, the only clinically approved antidote for unfractionated heparin (UFH), has adverse effects. Moreover, protamine can only partially neutralize low-molecular-weight heparins (LMWHs) and is not effective for fondaparinux. Here, an inclusion-sequestration strategy for efficient neutralization of heparin anticoagulants by cationic porous supramolecular organic frameworks (SOFs) and porous organic polymers (POPs) is reported. Isothermal titration calorimetric and fluorescence experiments show strong binding affinities of these porous polymers toward heparins, whereas dynamic light scattering and zeta potential analysis confirm that the heparin sequences are adsorbed into the interior of the porous hosts. Activated partial thromboplastin time, anti-FXa, and thromboelastography assays indicate that their neutralization efficacies are higher than or as high as that of protamine for UFH and generally superior to protamine for LMWHs and fondaparinux, which is further confirmed by tail-transection model in mice and ex vivo aPTT or anti-FXa analysis in rats. Acute toxicity evaluations reveal that one of the SOFs displays outstanding biocompatibility. This work suggests that porous polymers can supply safe and rapid reversal of clinically used heparins, as protamine surrogates, providing an improved approach for their neutralization.
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