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首页> 外文期刊>Angewandte Chemie >Biofabrication of Cell-Loaded 3D Spider Silk Constructs
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Biofabrication of Cell-Loaded 3D Spider Silk Constructs

机译:装有细胞的3D蜘蛛丝构造物的生物制造

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摘要

Biofabrication is an emerging and rapidly expanding field of research in which additive manufacturing techniques in combination with cell printing are exploited to generate hierarchical tissue-like structures. Materials that combine printability with cytocompatibility, so called bioinks, are currently the biggest bottleneck. Since recombinant spider silk proteins are non-immunogenic, cytocompatible, and exhibit physical crosslinking, their potential as a new bioink system was evaluated. Cell-loaded spider silk constructs can be printed by robotic dispensing without the need for crosslinking additives or thickeners for mechanical stabilization. Cells are able to adhere and proliferate with good viability over at least one week in such spider silk scaffolds. Introduction of a cell-binding motif to the spider silk protein further enables fine-tuned control over cell-material interactions. Spider silk hydrogels are thus a highly attractive novel bioink for biofabrication.
机译:生物制造是新兴且迅速扩展的研究领域,其中利用增材制造技术与细胞印刷相结合来产生分层的组织样结构。将可印刷性与细胞相容性相结合的材料,即所谓的生物墨水,目前是最大的瓶颈。由于重组蜘蛛丝蛋白是非免疫原性的,具有细胞相容性,并且表现出物理交联,因此评估了它们作为新型生物墨水系统的潜力。可以通过机械手分配来打印装载细胞的蜘蛛丝结构,而无需为了机械稳定而交联添加剂或增稠剂。在这种蜘蛛丝支架中,细胞能够在至少一周的时间内以良好的存活力粘附和增殖。将细胞结合基序引入蜘蛛丝蛋白中进一步实现了对细胞-材料相互作用的微调控制。因此,蜘蛛丝水凝胶是用于生物制造的极具吸引力的新型生物墨水。

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