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丝复合材料界面层结合壳聚糖类止血剂可防止再出血。

Silk composite interfacial layer eliminates rebleeding with chitosan-based hemostats.

机构信息

Department of Materials Engineering, Indian Institute of Science, C.V. Raman Avenue, Bangalore 560012, India.

Fibroheal Woundcare Pvt. Ltd., Yelahanka New Town, Bangalore 560064, India.

出版信息

Carbohydr Polym. 2023 Mar 15;304:120479. doi: 10.1016/j.carbpol.2022.120479. Epub 2022 Dec 27.

Abstract

Chitosan foams are among the approved hemostats for pre-hospital hemorrhagic control but suffer from drawbacks related to mucoadhesiveness and rebleeding. Herein, we have developed a designer bilayered hemostatic foam consisting of a bioactive layer composed of silica particles (≈300 nm) and silk fibroin to serve as the tissue interfacing component on a chitosan foam. The foam composition was optimized based on the in vitro clotting behavior and cytocompatibility of individual components. In vivo analysis in a rat model demonstrated that the developed hemostat could achieve rapid clotting (31 ± 4 s), similar to a chitosan-based hemostat, but the former had significantly lower blood loss. Notably, removal of the bilayered hemostat prevented rebleeding, unlike the chitosan foam, which was associated with markedly higher incidences of rebleeding (50 %) and left behind material residue. Thus, the designer bilayered foam presented here is a potent inducer of blood clotting whilst affording easy removal with minimal rebleeding.

摘要

壳聚糖泡沫是一种已被批准用于院前止血的止血剂,但存在与粘膜粘附性和再出血相关的缺点。在此,我们开发了一种设计双层止血泡沫,由包含二氧化硅颗粒(≈300nm)和丝素蛋白的生物活性层作为壳聚糖泡沫的组织界面组件。根据单独成分的体外凝血行为和细胞相容性对泡沫成分进行了优化。在大鼠模型中的体内分析表明,开发的止血剂可以实现快速凝血(31±4s),类似于基于壳聚糖的止血剂,但前者的失血量明显较低。值得注意的是,与壳聚糖泡沫不同,去除双层止血剂可防止再出血,壳聚糖泡沫与再出血发生率显著升高(50%)和材料残留有关。因此,本文提出的设计双层泡沫是一种有效的血液凝结诱导剂,同时易于去除,再出血风险最小。

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