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Fabrication of alginate fibers using a microporous membrane based molding technique

机译:使用基于微孔膜的成型技术制造藻酸盐纤维

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Tubular structures made of alginate and similar hydrogels have been extensively investigated for drug delivery, tissue engineering and other biomedical applications. Alginate fibers are usually fabricated using complicated techniques such as coaxial flow extrusion or electro-spinning. This paper discusses the fabrication of hollow and solid alginate fibers using a simple membrane based molding technique. A hollow-fiber rnicrofiltration membrane served both as the mold as well as reservoir for the cross-linking agent. The pores of the membrane were first filled with the cross-linker (i.e. calcium chloride) solution, after which the lumen was filled with sodium alginate solution. The calcium ions diffused from the membrane pores into the lumen, cross-linking the alginate in a radially inward direction. Solid alginate fibers were obtained by cross-linking all the alginate within the lumen, while hollow fibers were fabricated by pushing out un-cross-linked alginate from the central core using calcium chloride solution. The alginate fibers fabricated as described above were expelled from the membrane mold using water under pressure. These were then characterized by optical, fluorescence and scanning electron microscopy. The most attractive features of this fabrication method are its simplicity and flexibility with regards to alginate concentration. The fibers obtained were straight with excellent definition and uniform thickness, and could be fabricated in a highly reproducible manner. Other complicated solid and hollow 3-dimensional structures suitable for biomedical, and indeed other applications could also potentially be fabricated using similar membrane-based molding techniques.
机译:由藻酸盐和类似水凝胶制成的管状结构已被广泛研究用于药物输送,组织工程和其他生物医学应用。藻酸盐纤维通常是使用复杂的技术制造的,例如同轴流动挤出或电纺丝。本文讨论了使用简单的基于膜的成型技术制造空心和固态藻酸盐纤维的方法。中空纤维超滤膜既用作模具,又用作交联剂的储存器。首先用交联剂(即氯化钙)溶液填充膜的孔,然后用藻酸钠溶液填充内腔。钙离子从膜孔扩散到内腔中,使藻酸盐沿径向向内的方向交联。通过使内腔中的所有藻酸盐交联而获得固体藻酸盐纤维,而通过使用氯化钙溶液将未交联的藻酸盐从中心芯中推出来制造中空纤维。使用压力水将如上所述制造的藻酸盐纤维从膜模具中排出。然后通过光学,荧光和扫描电子显微镜对它们进行表征。这种制造方法最吸引人的特点是其藻酸盐浓度的简单性和灵活性。所获得的纤维是直的,具有优异的清晰度和均匀的厚度,并且可以以高度可再现的方式制造。适用于生物医学的其他复杂的实心和空心3维结构以及其他应用程序也有可能使用类似的基于膜的成型技术来制造。

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