首页> 外文期刊>European Polymer Journal >Membranes of epitaxial-like packed, super aligned electrospun micron hollow poly(l-lactic acid) (PLLA) fibers
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Membranes of epitaxial-like packed, super aligned electrospun micron hollow poly(l-lactic acid) (PLLA) fibers

机译:类外延堆积,超定向电纺微米空心聚(l-乳酸)(PLLA)纤维的膜

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摘要

Novel epitaxial-like packed, super aligned, mono-layered hollow fibrous membranes were prepared by co-axial electrospinning technology. PLLA pellets were dissolved in solvent mixture of dichloromethane and dimethyl formamide (DCM/DMF = 9:1) to prepare sheath solution dope with various concentrations (from 8 to 19 wt.%). Aqueous solution of poly-ethylene glycol (PEG) was used as core solution dope. During the electrospinning process, dope concentrations and feed rate ratios were adjusted, separately, to evaluate the formation of resulting membranes. With lower shell solution concentration (from 8 to 15 wt.%), the collected, flattened film showed arrangement of lower order. A stood-up film was clearly seen when concentration increased to 17 wt.% and higher. As the collecting time went longer, these fibers piled up and eventually, stood up as a thin film from the surface of collector. Increasing flow rate ratio (FRR) also resulted similar outcomes and verify the cause of this phenomenon. After washing with water, scanning electron microscopy (SEM) revealed sheets of mono-layered, micron-sized hollow fiber arrays which were well aligned and tightly packed, just like the epitaxial growth of some semiconducting materials. These perfectly aligned and tightly packed hollow fiber arrays can be considered as highly anisotropic scaffolds that mimic tissue structures, such as nerve tissue, vascular structure as well as other application.
机译:通过同轴电纺丝技术制备了新型外延状堆积,超取向,单层中空纤维膜。将PLLA粒料溶解在二氯甲烷和二甲基甲酰胺(DCM / DMF = 9∶1)的溶剂混合物中以制备具有各种浓度(8至19重量%)的鞘溶液涂料。聚乙二醇(PEG)水溶液用作核心溶液涂料。在静电纺丝过程中,分别调整浓液浓度和进料速率比,以评估所得膜的形成。在较低的壳溶液浓度(8至15重量%)下,所收集的扁平膜显示较低级的排列。当浓度增加到17重量%或更高时,清楚地看到立起的膜。随着收集时间的延长,这些纤维堆积起来,最终以薄膜形式从收集器的表面竖立起来。流速比(FRR)的增加也导致了类似的结果,并证实了这种现象的原因。用水洗涤后,扫描电子显微镜(SEM)揭示了单层,微米级的中空纤维阵列片,它们排列整齐并紧密堆积,就像某些半导体材料的外延生长一样。这些完全对齐且紧密堆积的中空纤维阵列可被视为模仿组织结构(例如神经组织,血管结构以及其他应用)的高度各向异性支架。

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