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首页> 外文期刊>Biomaterials >Hydrodynamic spinning of hydrogel fibers.
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Hydrodynamic spinning of hydrogel fibers.

机译:水凝胶纤维的水力纺丝。

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摘要

Hydrogel scaffolds are highly hydrated polymer networks that allow cells to adhere, proliferate and differentiate in the treatment of diseased or injured tissues and organs. Using hydrodynamic shaping and in situ cross-linking of hydrogel precursors, we have developed a highly efficient "hydrodynamic spinning" approach for synthesizing hydrogel fibers of different diameters in a multiphase coaxial flow. A triple-orifice spinneret has been created, and three different types of hydrogel precursors have been examined. Without changing the spinning head, hollow and solid hydrogel fibers with different diameters have been spun by simply manipulating the ratio of input flow rates. Together with the ability of simultaneous cell-seeding in the hydrogel matrix, hydrodynamic spinning can be broadly applied to many hydrogel materials, providing a powerful technique in the preparation of fiber-like and tubule-like hydrogel constructs for tissue engineering.
机译:水凝胶支架是高度水合的聚合物网络,可在治疗患病或受伤的组织和器官时使细胞粘附,增殖和分化。使用水凝胶前体的流体动力学成形和原位交联,我们开发了一种高效的“流体动力学纺丝”方法,用于在多相同轴流中合成不同直径的水凝胶纤维。已经创建了三孔喷丝头,并检查了三种不同类型的水凝胶前体。在不改变纺丝头的情况下,通过简单地控制输入流速的比率就纺出了具有不同直径的中空和固体水凝胶纤维。结合在水凝胶基质中同时进行细胞播种的能力,水动力纺丝可广泛应用于许多水凝胶材料,为制备用于组织工程的纤维状和小管状水凝胶构建体提供了强大的技术。

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