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Chitosan-polyethylene glycol coated cotton membranes for wound dressings

机译:壳聚糖-聚乙二醇涂层的伤口护理棉膜

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Membranes have been developed by coating a blend of chitosan (CS) and polyethylene glycol (PEG) of different molecular weights (4000, 10,000 and 20,000) on cotton fabric followed by freeze drying. The influence of PEG molecular weight on the physical characteristics of the membranes has been investigated. The scanning electron microscopy of the coated fabric reveals porous structure. The porosity of the material is found to be 51-70% and the pore size in the range of 75-120 microns. The increase in the PEG content in the blend composition causes destabilization of pores, leading to an increase in the pore size with elongated morphology. There seems to be phase separation between the two components, which is an important factor for the observed behaviour of the porous structure. The air and water permeability of the membranes tends to increase with the increase in PEG molecular weight. The PEG addition to membrane leads to the development of a more flexible matrix depending on the amount of PEG.
机译:通过在棉织物上涂覆不同分子量(4000、10,000和20,000)的壳聚糖(CS)和聚乙二醇(PEG)的混合物,然后冷冻干燥,开发了膜。已经研究了PEG分子量对膜的物理特性的影响。涂层织物的扫描电子显微镜显示出多孔结构。发现材料的孔隙率为51-70%,孔径在75-120微米范围内。共混物组合物中PEG含量的增加引起孔的不稳定,从而导致具有延长形态的孔尺寸的增加。在两个组件之间似乎存在相分离,这是观察到的多孔结构行为的重要因素。膜的空气和水渗透性倾向于随着PEG分子量的增加而增加。将PEG添加到膜中会导致根据PEG的量形成更具柔韧性的基质。

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