止血剂
止血器
纳米纤维
止血
纤维素
化学
纤维蛋白
凝血酶
凝结
氧化纤维素
体内
生物医学工程
止血剂
全血
静电纺丝
因素十三
化学工程
纳米纤维素
钙
血栓弹性成像
共价键
纳米技术
体外
电解质
高分子化学
材料科学
外科
作者
Zhiping Jin,Lei Chen,Ruicai Xia,Yao Gong,Hua Zhang,Guodong Wang,Qiang Zhang
出处
期刊:Small
[Wiley]
日期:2026-07-29
卷期号:: e74902-e74902
摘要
ABSTRACT Commercial inorganic hemostatic agents such as QuikClot Combat Gauze (QCG) and WoundStat demonstrate strong hemostatic efficacy, yet their clinical utility is limited by issues such as exothermic reaction and foreign body response. To address these limitations, a cellulose nanofiber‐based hemostat was developed to replicate the coagulation mechanism of zeolite. This was achieved by first covalently grafting carboxymethylated cellulose nanofibers (CMCNFs) onto medical gauze to form a stable, negatively charged nanofibrous network. Subsequently, calcium ion (Ca 2+ ) was incorporated into this network via ion exchange, yielding the final Ca 2+ ‐chelated, citrate‐crosslinked CMCNF gauze (CC/Ca‐gauze). The negatively charged surface and chelated Ca 2+ promoted local adsorption of coagulation‐associated proteins and supported thrombin generation and fibrin clot formation. In vitro assays confirmed good hemocompatibility/cytocompatibility and potent procoagulant activity of CC/Ca‐gauze. In vivo evaluations further demonstrated its superior hemostatic performance, achieving faster hemorrhage control and significantly reduced blood loss compared to QCG. These results support CC/Ca‐gauze as a promising cellulose‐based hemostatic platform for rapid hemorrhage control.
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