血液灌流
肝素
化学
全血
吸附
体外
微球
败血症
凝结
药理学
色谱法
免疫系统
肾
微生物学
组蛋白
透析
中和
血细胞
作者
Cheng Yu,Yu Chen,Tao Song,Luojia Jiang,Yejun He,Yupei Li,Weifeng Zhao,Baihai Su
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2025-09-25
卷期号:26 (10): 6787-6801
被引量:2
标识
DOI:10.1021/acs.biomac.5c01085
摘要
Endotoxin and circulating histones form a pathogenic loop, driving immune dysregulation in sepsis. A multitargeted extracorporeal blood purification combining endotoxin adsorption with histone neutralization may represent a critical therapeutic approach to improve the clinical outcomes of septic patients. However, existing hemoperfusion adsorbents are often heparin-dependent and single-target and exhibit limited hemocompatibility. Herein, we developed self-anticoagulant heparin-grafted chitosan/cellulose composite microspheres (CSCEHEP) for the simultaneous adsorption of endotoxin and circulating histones. The obtained CSCEHEP microspheres significantly prolonged plasma coagulation time while maintaining excellent hemocompatibility, owing to the heparin coating. In vitro, CSCEHEP microspheres exhibited adsorption capacities of 251.0 EU/g (81.8% clearance) for endotoxin and 288.6 μg/g (62.8% clearance) for histones, respectively. Meanwhile, CSCEHEP microspheres effectively adsorbed histones in whole blood and counteracted histone-induced endothelial and kidney epithelial cytotoxicity, erythrocyte fragility, and thrombocytopenia. In conclusion, CSCEHEP microspheres are promising adsorbents for hemoperfusion to simultaneously remove endotoxins and circulating histones in septic blood.
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