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首页> 外文期刊>Biomaterials >A self-assembling hydrophobically modified chitosan capable of reversible hemostatic action.
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A self-assembling hydrophobically modified chitosan capable of reversible hemostatic action.

机译:具有可逆止血作用的自组装疏水改性壳聚糖。

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摘要

Blood loss at the site of a wound in mammals is curtailed by the rapid formation of a hemostatic plug, i.e., a self-assembled network of the protein, fibrin that locally transforms liquid blood into a gelled clot. Here, we report an amphiphilic biopolymer that exhibits a similar ability to rapidly gel blood; moreover, the self-assembly underlying the gelation readily allows for reversibility back into the liquid state via introduction of a sugar-based supramolecule. The biopolymer is a hydrophobically modified (hm) derivative of the polysaccharide, chitosan. When hm-chitosan is contacted with heparinized human blood, it rapidly transforms the liquid into an elastic gel. In contrast, the native chitosan (without hydrophobes) does not gel blood. Gelation occurs because the hydrophobes on hm-chitosan insert into the membranes of blood cells and thereby connect the cells into a sample-spanning network. Gelation is reversed by the addition of alpha-cyclodextrin, a supramolecule having an inner hydrophobic pocket: polymer hydrophobes unbind from blood cells and embed within the cyclodextrins, thereby disrupting the cell network. We believe that hm-chitosan has the potential to serve as an effective, yet low-cost hemostatic dressing for use by trauma centers and the military. Preliminary tests with small and large animal injury models show its increased efficacy at achieving hemostasis - e.g., a 90% reduction in bleeding time over controls for femoral vein transections in a rat model.
机译:止血塞的快速形成减少了哺乳动物伤口部位的失血,止血塞即蛋白质的自组装网络,即纤维蛋白将液体血液局部转化为凝胶凝块。在这里,我们报道了一种两亲生物聚合物,它具有相似的快速凝结血液的能力。此外,在凝胶作用下的自组装很容易通过引入糖基超分子而使可逆性回到液态。生物聚合物是多糖壳聚糖的疏水改性(hm)衍生物。当hm-壳聚糖与肝素化的人类血液接触时,它会迅速将液体转变成弹性凝胶。相反,天然壳聚糖(无疏水性)不会使血液胶凝。发生胶凝是因为hm-壳聚糖上的疏水物插入血细胞膜,从而将细胞连接到跨样品的网络中。通过添加α-环糊精(一种具有内部疏水性口袋的超分子)来逆转胶凝作用:聚合物疏水物从血细胞中脱离并嵌入环糊精中,从而破坏了细胞网络。我们认为,hm-壳聚糖有潜力作为一种有效的,低成本的止血敷料,供创伤中心和军队使用。对小型和大型动物损伤模型的初步测试表明,其实现止血的功效有所提高-例如,在大鼠模型中,股静脉横断的出血时间比对照组减少了90%。

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