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Fabrication of freestanding alginate microfibers and microstructures for tissue engineering applications

机译:用于组织工程应用的独立藻酸盐微纤维和微结构的制造

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摘要

Natural biopolymers such as alginate have become important materials for a variety of biotechnology applications including drug delivery, cell encapsulation and tissue engineering. This expanding use has spurred the development of new approaches to engineer these materials at the nano- and microscales to better control cell interactions. Here we describe a method to fabricate freestanding alginate-based microfibers and microstructures with tunable geometries down to approximately 3 μm. To do this, a polydimethylsiloxane stamp is used to micromold alginate or alginate-fibrin blends onto a sacrificial layer of thermally-sensitive poly(N-isopropylacrylamide) (PIPAAm). A warm calcium chloride solution is then used to crosslink the alginate and, upon cooling below the lower critical solution temperature (~32 ℃), the PIPAAm layer dissolves and releases the alginate or alginate-fibrin as freestanding microfibers and microstructures. Proof-of-concept experiments demonstrate that C2C12 myoblasts seeded onto the alginate-fibrin microfibers polarize along the fiber length forming interconnected cell strands. Thus, we have developed the ability to engineer alginate-based microstructured materials that can selectively bind cells and direct cellular assembly.
机译:天然生物聚合物(例如藻酸盐)已成为多种生物技术应用(包括药物输送,细胞封装和组织工程)的重要材料。这种不断扩大的用途刺激了新方法的开发,以在纳米级和微米级对这些材料进行工程设计以更好地控制细胞相互作用。在这里,我们描述了一种制造可独立调整的几何形状的藻酸盐基微纤维和微结构的方法。为此,使用聚二甲基硅氧烷印模将藻酸盐或藻酸盐-血纤蛋白共混物微模到热敏聚(N-异丙基丙烯酰胺)(PIPAAm)的牺牲层上。然后使用温热的氯化钙溶液使藻酸盐交联,并在冷却至较低的临界溶液温度(约32℃)以下时,PIPAAm层溶解并释放出藻酸盐或藻酸盐纤维蛋白,成为独立的微纤维和微结构。概念验证实验表明,接种到藻酸盐-纤维蛋白微纤维上的C2C12成肌细胞沿纤维长度极化,形成相互连接的细胞链。因此,我们已经开发出了工程设计基于藻酸盐的微结构材料的能力,该材料可以选择性地结合细胞并指导细胞组装。

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