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Cellulose acetate core-shell structured electrospun fiber: fabrication and characterization

机译:醋酸纤维素核壳结构电纺纤维:制备与表征

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摘要

This study explored the effect of type of core fluids on the fabrication of hollow and core-sheath cellulose acetate (CA) fiber. Tailoring the CA fiber with desirable features such as reinforced core, porous and hollow structure provides unique features for use in various applications. Fibers with such characteristics can be used for better controlled release drug delivery system or to promote cell adhesion in tissue engineering. Type of core material, tensile strength, and rheological properties were evaluated. DSC and FTIR analysis were performed to confirm the presence of core and sheath components. CA hollow structures were successfully obtained after selectively extracting the mineral oil. CA hollow fibers were twice the size of solid fiber despite similar solution and process conditions. Fiber morphologies indicated incomplete encapsulation by the CA when 80 kDa PCL molecular weight was used. This problem was not observed with 43 and 10 kDa PCL. DSC and FTIR analyses showed presence of both PCL and CA components. The rheology results suggest that the fibers could be formed when the viscosity of the core is less than that of sheath. Hydrated CA-43 kDa PCL fibers showed nearly ten-fold improvement in break point and stiffness. Human umbilical vein endothelial cells showed increased attachment and viability in both hollow CA and CA-PCL fibers relative to tissue culture plastic.
机译:这项研究探讨了芯液类型对中空和芯鞘醋酸纤维素(CA)纤维制造的影响。为CA纤维量身定制具有所需特征的材料,例如增强芯,多孔和中空结构,可为各种应用提供独特的功能。具有这种特性的纤维可用于更好的控释药物递送系统或促进组织工程中的细胞粘附。评价芯材的类型,抗张强度和流变性能。进行DSC和FTIR分析以确认核心和皮成分的存在。选择性提取矿物油后,成功获得了CA中空结构。尽管溶液和工艺条件相似,CA中空纤维的尺寸还是实心纤维的两倍。当使用80 kDa PCL分子量时,纤维形态表明CA不完全包封。使用43和10 kDa PCL时未观察到此问题。 DSC和FTIR分析表明同时存在PCL和CA成分。流变学结果表明,当芯的粘度小于皮的粘度时,可以形成纤维。水合的CA-43 kDa PCL纤维的断裂点和硬度提高了近十倍。相对于组织培养塑料,人脐静脉内皮细胞在中空CA和CA-PCL纤维中均显示出增加的附着力和活力。

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