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Controlled Fabrication of Bioactive Microfibers for Creating Tissue Constructs Using Microfluidic Techniques

机译:利用微流控技术控制制造生物活性微纤维的组织结构

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The fabrication of heterogeneous microstructures, which exert precise control over the distribution of different cell types within biocompatible constructs, is important for many tissue engineering applications. Here, bioactive microfibers with tunable morphologies, structures, and components are generated and employed for creating different tissue constructs. Multibarrel capillary microfluidics with multiple laminar flows are used for continuously spinning these microfibers. With an immediate gelation reaction of the cell dispersed alginate solutions, the cell-laden alginate microfibers with the tunable morphologies and structures as the designed multiple laminar flows can be generated. The performances of the microfibers in cell culture are improved by incorporating bioactive polymers, such as extracellular matrix (ECM) or methacrylated gelatin (GelMA), into the alginate. It is demonstrated that a series of complex three-dimensional (3D) architectural cellular buildings, including biomimic vessels and scaffolds, can be created using these bioactive microfibers.
机译:对于许多组织工程应用而言,异质微结构的制造对生物相容性构建体内不同细胞类型的分布具有精确的控制,这一点很重要。在这里,具有可调整的形态,结构和成分的生物活性微纤维被生成并用于创建不同的组织构造。具有多个层流的多桶毛细管微流体用于使这些微纤维连续纺丝。通过细胞分散的藻酸盐溶液的立即胶凝反应,可以产生具有可调节的形态和结构作为设计的多个层流的具有细胞的藻酸盐微纤维。通过将生物活性聚合物(例如细胞外基质(ECM)或甲基丙烯酸明胶(GelMA))掺入藻酸盐中,可以改善细胞培养中超细纤维的性能。结果表明,使用这些生物活性微纤维可以创建一系列复杂的三维(3D)建筑蜂窝建筑,包括仿生血管和支架。

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