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首页> 外文期刊>Biomacromolecules >Fabrication and Characterization of Electrospun Chitosan Nanofibers Formed via Templating with Polyethylene Oxide
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Fabrication and Characterization of Electrospun Chitosan Nanofibers Formed via Templating with Polyethylene Oxide

机译:聚环氧乙烷模板电纺制壳聚糖纳米纤维的制备与表征

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摘要

Chitosan is an abundantly common, naturally occurring, polysaccharide biopolymer. Its biocompatible, biodegradable, and antimicrobial properties have led to significant research toward biological applications such as drug delivery, artificial tissue scaffolds for functional tissue engineering, and wound-healing dressings. For applications such as tissue scaffolding, formation of highly porous mats of nanometer-sized fibers, such as those fabricated via electrospinning, may be quite important. Previously, strong acidic solvents and blending with synthetic polymers have been used to achieve electrospun nanofibers containing chitosan. As an alternative approach, in mis work, polyethylene oxide (PEO) has been used as a template to fabricate chitosan nanofibers by electrospinning in a core-sheath geometry, with the PEO sheath serving as a template for the chitosan core. Solutions of 3 wt % chitosan (in acetic acid) and 4 wt % PEO (in water) were found to have matching rheological properties that enabled efficient core-sheath fiber formation. After removing the PEO sheath by washing with deionized water, chitosan nanofibers were obtained. Electron microscopy confirmed nanofibers of ~250 nm diameter with a clear core-sheath geometry before sheath removal, and chitosan nanofibers of ~100 nm diameter after washing. The resultant fibers were characterized with IR spectroscopy and X-ray diffraction, and the mechanical and electrical properties were evaluated.
机译:壳聚糖是一种非常普遍的天然存在的多糖生物聚合物。它的生物相容性,可生物降解性和抗微生物特性导致了对生物学应用的重大研究,例如药物递送,用于功能组织工程的人造组织支架和伤口愈合敷料。对于诸如组织支架的应用,形成纳米级纤维的高度多孔的垫(例如通过静电纺丝制造的那些)可能是非常重要的。以前,强酸性溶剂并与合成聚合物共混已用于获得包含壳聚糖的电纺纳米纤维。作为一种替代方法,在工作中,聚环氧乙烷(PEO)已用作模板,通过在芯鞘几何结构中静电纺丝来制备壳聚糖纳米纤维,其中PEO护套用作壳聚糖核心的模板。发现3 wt%的壳聚糖(在乙酸中)和4 wt%的PEO(在水中)的溶液具有相匹配的流变性质,可以有效地形成芯鞘纤维。通过用去离子水洗涤除去PEO护套后,获得壳聚糖纳米纤维。电子显微镜检查证实,直径约250 nm的纳米纤维在去除鞘之前具有清晰的芯鞘几何形状,清洗后直径约100 nm的壳聚糖纳米纤维。用红外光谱和X射线衍射对所得纤维进行表征,并评价其机械和电性能。

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